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"slug": "its-not-about-the-facts-the-irrational-fight-over-climate-change-explained-in-one-cartoon",
"title": "The Irrational Fight Over Climate Change Explained in One Cartoon",
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"content": "\u003cp>\u003ca href=\"https://www.kqed.org/futureofyou/428460/want-to-cut-your-carbon-footprint-get-liquefied-when-youre-dead\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_01_V03.jpg\" alt=\"\" width=\"1920\" height=\"3307\">\u003c/a>\u003c/p>\n\u003cp>\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_02_V02.jpg\" alt=\"\" width=\"1920\" height=\"2756\">\u003c/p>\n\u003cp>\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_03_V02Clean.jpg\" alt=\"\" width=\"1920\" height=\"3200\">\u003c/p>\n\u003ctable id=\"Table_04\" border=\"0\" width=\"100%\" cellspacing=\"0\" cellpadding=\"0\">\n\u003ctbody>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"16\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ABlank.jpg\" alt=\"\" width=\"1920\" height=\"446\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"11\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_B01Blank.jpg\" alt=\"\" width=\"1073\" height=\"80\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"2\" rowspan=\"1\">\u003ca href=\"https://climate.nasa.gov/evidence\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_B02.jpg\" alt=\"NASA\" width=\"198\" height=\"80\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"3\" rowspan=\"1\">\u003ca href=\"http://www.noaa.gov/climate\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_B03Blank.jpg\" alt=\"NOAA\" width=\"649\" height=\"80\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"11\" rowspan=\"1\">\u003ca href=\"https://www.un.org/sustainabledevelopment/climatechange\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_C01Blank.jpg\" alt=\"The United Nations\" width=\"1073\" height=\"78\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"5\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_C02Blank.jpg\" alt=\"\" width=\"847\" height=\"78\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"11\" rowspan=\"1\">\u003ca href=\"http://iopscience.iop.org/article/10.1088/1748-9326/11/4/048002\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_D01ClimateBlank.jpg\" alt=\"scientists\" width=\"1073\" height=\"80\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"5\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_D02Blank.jpg\" alt=\"\" width=\"847\" height=\"80\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"16\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_EBlank02.jpg\" alt=\"\" width=\"1920\" height=\"822\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" colspan=\"7\" rowspan=\"1\">\u003ca href=\"https://www.bp.com/en/global/corporate/sustainability/climate-change.html\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_F01Blank.jpg\" alt=\"BP\" width=\"887\" height=\"83\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" colspan=\"9\" rowspan=\"1\">\u003ca href=\"http://corporate.exxonmobil.com/en/current-issues/climate-policy/climate-perspectives/engagement-to-address-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_F02Blank02.jpg\" alt=\"ExxonMobil\" width=\"1033\" height=\"83\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" colspan=\"9\" rowspan=\"1\">\u003ca href=\"https://www.shell.com/sustainability/environment/climate-change.html\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_G01Blank02.jpg\" alt=\"Shell\" width=\"960\" height=\"73\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" colspan=\"7\" rowspan=\"1\">\u003ca href=\"https://www.chevron.com/corporate-responsibility/climate-change/policy-principles\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_G2Blank.jpg\" alt=\"Chevron\" width=\"960\" height=\"73\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"16\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_H01Blank02.jpg\" alt=\"\" width=\"1920\" height=\"900\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"3\" rowspan=\"1\">\u003ca href=\"https://www.reuters.com/article/us-usa-climatechange-military/climate-change-threatens-half-of-u-s-military-sites-pentagon-idUSKBN1FK2T8\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_I01.jpg\" alt=\"U.S. Military\" width=\"548\" height=\"69\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"11\" rowspan=\"1\">\u003ca href=\"https://www.bloomberg.com/news/articles/2017-11-29/moody-s-warns-cities-to-address-climate-risks-or-face-downgrades\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_I02B.jpg\" alt=\"Moody's\" width=\"787\" height=\"69\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"2\" rowspan=\"1\">\u003ca href=\"https://catholicclimatemovement.global/statements-on-climate-change-from-the-popes\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_I03.jpg\" alt=\"Popes\" width=\"585\" height=\"69\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"3\" rowspan=\"1\">\u003ca href=\"https://www.usclimatealliance.org\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_J01.jpg\" alt=\"cities and states\" width=\"548\" height=\"55\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"9\" rowspan=\"1\">\u003ca href=\"http://www.under2coalition.org\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_J02_V02.jpg\" alt=\"\" width=\"561\" height=\"55\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"4\" rowspan=\"1\">\u003ca href=\"http://dels.nas.edu/resources/static-assets/exec-office-other/climate-change-full.pdf\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_J03.jpg\" alt=\"U.S. National Academy\" width=\"811\" height=\"55\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\">\u003ca href=\"http://dels.nas.edu/resources/static-assets/exec-office-other/climate-change-full.pdf\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_K01.jpg\" alt=\"Sciences\" width=\"356\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"2\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_K02.jpg\" alt=\"\" width=\"192\" height=\"54\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"7\" rowspan=\"1\">\u003ca href=\"http://dels.nas.edu/resources/static-assets/exec-office-other/climate-change-full.pdf\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_K03.jpg\" alt=\"U.K. Royal Society\" width=\"499\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"6\" rowspan=\"1\">\u003ca href=\"http://fortune.com/2017/10/23/trump-climate-change-us-companies\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_K04.jpg\" alt=\"Fortune 500\" width=\"873\" height=\"54\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"2\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L01.jpg\" alt=\"Methodist\" width=\"489\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"3\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L02.jpg\" alt=\"Lutheran\" width=\"261\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"5\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L03.jpg\" alt=\"Episcopal\" width=\"297\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"5\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L04.jpg\" alt=\"Presbyterian\" width=\"317\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L05.jpg\" alt=\"\" width=\"556\" height=\"54\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"4\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_M01.jpg\" alt=\"Eastern Orthodox\" width=\"567\" height=\"63\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"4\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_M02.jpg\" alt=\"\" width=\"363\" height=\"63\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"8\" rowspan=\"1\">\u003ca href=\"https://www.rand.org/topics/global-climate-change.html\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_M03.jpg\" alt=\"RAND\" width=\"990\" height=\"63\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"6\" rowspan=\"1\">\u003ca href=\"http://www.opr.ca.gov/facts/list-of-scientific-organizations.html\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_N01.jpg\" alt=\"scientific organizations\" width=\"818\" height=\"60\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"10\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_N02.jpg\" alt=\"\" width=\"1102\" height=\"60\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"16\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_O.jpg\" alt=\"\" width=\"1920\" height=\"1\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"356\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"133\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"59\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"19\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"183\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"68\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"69\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"43\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"30\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"87\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"26\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"36\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"162\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"64\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"29\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"556\" height=\"1\">\u003c/td>\n\u003c/tr>\n\u003c/tbody>\n\u003c/table>\n\u003ctable id=\"Table_05\" border=\"0\" width=\"100%\" cellspacing=\"0\" cellpadding=\"0\">\n\u003ctbody>\n\u003ctr>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003ca href=\"https://news.gallup.com/poll/231530/global-warming-concern-steady-despite-partisan-shifts.aspx\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_A01.jpg\" alt=\"A Gallup Poll\" width=\"752\" height=\"86\">\u003c/a>\u003c/td>\n\u003ctd colspan=\"2\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_A02.jpg\" alt=\"\" width=\"1168\" height=\"86\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"3\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_B.jpg\" alt=\"\" width=\"1920\" height=\"1302\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"2\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_C01Blank.jpg\" alt=\"\" width=\"1229\" height=\"84\">\u003c/td>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003ca href=\"https://www.ucsusa.org/sites/default/files/attach/2015/07/The-Climate-Deception-Dossiers.pdf\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_C02Blank.jpg\" alt=\"campaign\" width=\"691\" height=\"84\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"3\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_DBlank03.jpg\" alt=\"\" width=\"1920\" height=\"1391\">\u003c/td>\n\u003c/tr>\n\u003c/tbody>\n\u003c/table>\n\u003ctable id=\"Table_06\" border=\"0\" width=\"100%\" cellspacing=\"0\" cellpadding=\"0\">\n\u003ctbody>\n\u003ctr>\n\u003ctd colspan=\"3\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_A_V02.jpg\" alt=\"\" width=\"1920\" height=\"823\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_B01.jpg\" alt=\"\" width=\"597\" height=\"81\">\u003c/td>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003ca href=\"https://www.vox.com/energy-and-environment/2017/11/10/16627256/conservatives-climate-change-persuasion\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_B02.jpg\" alt=\"synthesized\" width=\"417\" height=\"81\">\u003c/a>\u003c/td>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_B03.jpg\" alt=\"\" width=\"906\" height=\"81\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"3\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_C.jpg\" alt=\"\" width=\"1920\" height=\"2972\">\u003c/td>\n\u003c/tr>\n\u003c/tbody>\n\u003c/table>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1921434/climates-day-in-court-maybe-not-the-great-debate-but-still-a-big-deal\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_07_V04.jpg\" alt=\"\" width=\"1920\" height=\"4886\">\u003c/a>\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\u003cp>\u003c/p>\n",
"blocks": [],
"excerpt": "Our story on eco-friendly cremation got slammed by Drudge Report readers after it appeared on the site. So we wondered: How is it that so many people reject what is known to be true?",
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"headData": {
"title": "The Irrational Fight Over Climate Change Explained in One Cartoon | KQED",
"description": "Our story on eco-friendly cremation got slammed by Drudge Report readers after it appeared on the site. So we wondered: How is it that so many people reject what is known to be true?",
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"headline": "The Irrational Fight Over Climate Change Explained in One Cartoon",
"datePublished": "2018-06-20T13:52:45-07:00",
"dateModified": "2024-09-05T16:16:43-07:00",
"image": "https://cdn.kqed.org/wp-content/uploads/2020/02/KQED-OG-Image@1x.png"
}
},
"source": "Climate Change",
"sticky": false,
"nprByline": "Mark Fiore, Jon Brooks and Lesley McClurg",
"path": "/science/1924974/its-not-about-the-facts-the-irrational-fight-over-climate-change-explained-in-one-cartoon",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>\u003ca href=\"https://www.kqed.org/futureofyou/428460/want-to-cut-your-carbon-footprint-get-liquefied-when-youre-dead\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_01_V03.jpg\" alt=\"\" width=\"1920\" height=\"3307\">\u003c/a>\u003c/p>\n\u003cp>\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_02_V02.jpg\" alt=\"\" width=\"1920\" height=\"2756\">\u003c/p>\n\u003cp>\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_03_V02Clean.jpg\" alt=\"\" width=\"1920\" height=\"3200\">\u003c/p>\n\u003ctable id=\"Table_04\" border=\"0\" width=\"100%\" cellspacing=\"0\" cellpadding=\"0\">\n\u003ctbody>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"16\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ABlank.jpg\" alt=\"\" width=\"1920\" height=\"446\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"11\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_B01Blank.jpg\" alt=\"\" width=\"1073\" height=\"80\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"2\" rowspan=\"1\">\u003ca href=\"https://climate.nasa.gov/evidence\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_B02.jpg\" alt=\"NASA\" width=\"198\" height=\"80\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"3\" rowspan=\"1\">\u003ca href=\"http://www.noaa.gov/climate\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_B03Blank.jpg\" alt=\"NOAA\" width=\"649\" height=\"80\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"11\" rowspan=\"1\">\u003ca href=\"https://www.un.org/sustainabledevelopment/climatechange\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_C01Blank.jpg\" alt=\"The United Nations\" width=\"1073\" height=\"78\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"5\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_C02Blank.jpg\" alt=\"\" width=\"847\" height=\"78\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"11\" rowspan=\"1\">\u003ca href=\"http://iopscience.iop.org/article/10.1088/1748-9326/11/4/048002\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_D01ClimateBlank.jpg\" alt=\"scientists\" width=\"1073\" height=\"80\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"5\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_D02Blank.jpg\" alt=\"\" width=\"847\" height=\"80\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"16\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_EBlank02.jpg\" alt=\"\" width=\"1920\" height=\"822\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" colspan=\"7\" rowspan=\"1\">\u003ca href=\"https://www.bp.com/en/global/corporate/sustainability/climate-change.html\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_F01Blank.jpg\" alt=\"BP\" width=\"887\" height=\"83\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" colspan=\"9\" rowspan=\"1\">\u003ca href=\"http://corporate.exxonmobil.com/en/current-issues/climate-policy/climate-perspectives/engagement-to-address-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_F02Blank02.jpg\" alt=\"ExxonMobil\" width=\"1033\" height=\"83\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" colspan=\"9\" rowspan=\"1\">\u003ca href=\"https://www.shell.com/sustainability/environment/climate-change.html\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_G01Blank02.jpg\" alt=\"Shell\" width=\"960\" height=\"73\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" colspan=\"7\" rowspan=\"1\">\u003ca href=\"https://www.chevron.com/corporate-responsibility/climate-change/policy-principles\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left;border-collapse: collapse\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_G2Blank.jpg\" alt=\"Chevron\" width=\"960\" height=\"73\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"16\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_H01Blank02.jpg\" alt=\"\" width=\"1920\" height=\"900\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"3\" rowspan=\"1\">\u003ca href=\"https://www.reuters.com/article/us-usa-climatechange-military/climate-change-threatens-half-of-u-s-military-sites-pentagon-idUSKBN1FK2T8\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_I01.jpg\" alt=\"U.S. Military\" width=\"548\" height=\"69\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"11\" rowspan=\"1\">\u003ca href=\"https://www.bloomberg.com/news/articles/2017-11-29/moody-s-warns-cities-to-address-climate-risks-or-face-downgrades\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_I02B.jpg\" alt=\"Moody's\" width=\"787\" height=\"69\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"2\" rowspan=\"1\">\u003ca href=\"https://catholicclimatemovement.global/statements-on-climate-change-from-the-popes\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_I03.jpg\" alt=\"Popes\" width=\"585\" height=\"69\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"3\" rowspan=\"1\">\u003ca href=\"https://www.usclimatealliance.org\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_J01.jpg\" alt=\"cities and states\" width=\"548\" height=\"55\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"9\" rowspan=\"1\">\u003ca href=\"http://www.under2coalition.org\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_J02_V02.jpg\" alt=\"\" width=\"561\" height=\"55\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"4\" rowspan=\"1\">\u003ca href=\"http://dels.nas.edu/resources/static-assets/exec-office-other/climate-change-full.pdf\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_J03.jpg\" alt=\"U.S. National Academy\" width=\"811\" height=\"55\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\">\u003ca href=\"http://dels.nas.edu/resources/static-assets/exec-office-other/climate-change-full.pdf\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_K01.jpg\" alt=\"Sciences\" width=\"356\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"2\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_K02.jpg\" alt=\"\" width=\"192\" height=\"54\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"7\" rowspan=\"1\">\u003ca href=\"http://dels.nas.edu/resources/static-assets/exec-office-other/climate-change-full.pdf\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_K03.jpg\" alt=\"U.K. Royal Society\" width=\"499\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"6\" rowspan=\"1\">\u003ca href=\"http://fortune.com/2017/10/23/trump-climate-change-us-companies\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_K04.jpg\" alt=\"Fortune 500\" width=\"873\" height=\"54\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"2\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L01.jpg\" alt=\"Methodist\" width=\"489\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"3\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L02.jpg\" alt=\"Lutheran\" width=\"261\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"5\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L03.jpg\" alt=\"Episcopal\" width=\"297\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"5\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L04.jpg\" alt=\"Presbyterian\" width=\"317\" height=\"54\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_L05.jpg\" alt=\"\" width=\"556\" height=\"54\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"4\" rowspan=\"1\">\u003ca href=\"http://www.interfaithpowerandlight.org/religious-statements-on-climate-change\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_M01.jpg\" alt=\"Eastern Orthodox\" width=\"567\" height=\"63\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"4\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_M02.jpg\" alt=\"\" width=\"363\" height=\"63\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"8\" rowspan=\"1\">\u003ca href=\"https://www.rand.org/topics/global-climate-change.html\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_M03.jpg\" alt=\"RAND\" width=\"990\" height=\"63\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"6\" rowspan=\"1\">\u003ca href=\"http://www.opr.ca.gov/facts/list-of-scientific-organizations.html\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_N01.jpg\" alt=\"scientific organizations\" width=\"818\" height=\"60\">\u003c/a>\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"10\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_N02.jpg\" alt=\"\" width=\"1102\" height=\"60\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"16\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_04R_ALT_O.jpg\" alt=\"\" width=\"1920\" height=\"1\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"356\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"133\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"59\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"19\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"183\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"68\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"69\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"43\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"30\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"87\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"26\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"36\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"162\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"64\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"29\" height=\"1\">\u003c/td>\n\u003ctd style=\"padding: 0;border: none;vertical-align: top;text-align: left\" colspan=\"1\" rowspan=\"1\" width=\"556\" height=\"1\">\u003c/td>\n\u003c/tr>\n\u003c/tbody>\n\u003c/table>\n\u003ctable id=\"Table_05\" border=\"0\" width=\"100%\" cellspacing=\"0\" cellpadding=\"0\">\n\u003ctbody>\n\u003ctr>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003ca href=\"https://news.gallup.com/poll/231530/global-warming-concern-steady-despite-partisan-shifts.aspx\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_A01.jpg\" alt=\"A Gallup Poll\" width=\"752\" height=\"86\">\u003c/a>\u003c/td>\n\u003ctd colspan=\"2\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_A02.jpg\" alt=\"\" width=\"1168\" height=\"86\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"3\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_B.jpg\" alt=\"\" width=\"1920\" height=\"1302\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"2\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_C01Blank.jpg\" alt=\"\" width=\"1229\" height=\"84\">\u003c/td>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003ca href=\"https://www.ucsusa.org/sites/default/files/attach/2015/07/The-Climate-Deception-Dossiers.pdf\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_C02Blank.jpg\" alt=\"campaign\" width=\"691\" height=\"84\">\u003c/a>\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"3\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_05R_V02_DBlank03.jpg\" alt=\"\" width=\"1920\" height=\"1391\">\u003c/td>\n\u003c/tr>\n\u003c/tbody>\n\u003c/table>\n\u003ctable id=\"Table_06\" border=\"0\" width=\"100%\" cellspacing=\"0\" cellpadding=\"0\">\n\u003ctbody>\n\u003ctr>\n\u003ctd colspan=\"3\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_A_V02.jpg\" alt=\"\" width=\"1920\" height=\"823\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_B01.jpg\" alt=\"\" width=\"597\" height=\"81\">\u003c/td>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003ca href=\"https://www.vox.com/energy-and-environment/2017/11/10/16627256/conservatives-climate-change-persuasion\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_B02.jpg\" alt=\"synthesized\" width=\"417\" height=\"81\">\u003c/a>\u003c/td>\n\u003ctd colspan=\"1\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_B03.jpg\" alt=\"\" width=\"906\" height=\"81\">\u003c/td>\n\u003c/tr>\n\u003ctr>\n\u003ctd colspan=\"3\" rowspan=\"1\">\u003cimg loading=\"lazy\" decoding=\"async\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_06_C.jpg\" alt=\"\" width=\"1920\" height=\"2972\">\u003c/td>\n\u003c/tr>\n\u003c/tbody>\n\u003c/table>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1921434/climates-day-in-court-maybe-not-the-great-debate-but-still-a-big-deal\" target=\"_blank\" rel=\"noopener\">\u003cimg loading=\"lazy\" decoding=\"async\" class=\"alignnone\" style=\"padding: 0;border: none;vertical-align: top;text-align: left\" src=\"https://ww2.kqed.org/science/wp-content/uploads/sites/35/2018/06/KQED_Cremation_07_V04.jpg\" alt=\"\" width=\"1920\" height=\"4886\">\u003c/a>\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"title": "By 2045, Rising Seas Could Flood Thousands of Coastal Bay Area Homes",
"headTitle": "By 2045, Rising Seas Could Flood Thousands of Coastal Bay Area Homes | KQED",
"content": "\u003cp>Sea-level rise could swamp thousands of homes in the San Francisco Bay Area, most in Silicon Valley and Marin, within 30 years. A new study from the \u003ca href=\"https://ucsusa.maps.arcgis.com/apps/MapSeries/index.html?appid=cf07ebe0a4c9439ab2e7e346656cb239\">Union of Concerned Scientists\u003c/a>, relying on federal government projections for climate change, found that more than 20,000 homes across California would chronically flood by 2045. That is about a mortgage-length’s-time from now.\u003c/p>\n\u003cp>[contextly_sidebar id=”pBabVtnXK8s0QM2QG6TRFgeMZivDTIuN”]UCS climate scientist Kristy Dahl, an author of the new report, says she noticed that the Bay Area homes most vulnerable to rising seas are in San Mateo, Santa Clara, and Marin counties. These are suburbs where people have typically moved to feel safe, says Dahl.\u003c/p>\n\u003cp>“The very suburbs people flocked to because they were affordable, you know we think of as being kind of safe havens,” Dahl says.\u003c/p>\n\u003cp>In one East Palo Alto zip code\u003cstrong>,\u003c/strong> more than a quarter of houses could see chronic inundation, on 26 or more days a year.\u003c/p>\n\u003cp>“That’s on par for example with the number of homes that are at risk in Key West Florida,” Dahl says.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>[contextly_sidebar id=”U5pgThP0v80FPqzl8jAOH5zreoILpNgU”]Dahl says one conclusion is that coastal property in the Bay Area is overvalued.\u003c/p>\n\u003cp>The Bay Area’s sea-level related risks aren’t limited to homes. Critical communal assets like power plants, water treatment plants, transit stations, highways and airports line the shoreline. Previous regional studies estimate, if a freeway floods five times as many people as the affected homeowners will feel the pain.\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>Local counties say they’re aware of these risks — and they’re now starting to plan for them. Marin County \u003ca href=\"https://www.marincounty.org/depts/ad/divisions/management-and-budget/budget-overview\">will consider\u003c/a> spending on climate change planning as part of its budget process this week. And in San Mateo County, supervisors next week \u003ca href=\"https://cmo.smcgov.org/sites/cmo.smcgov.org/files/documents/files/FY%202018-19%20Recommended%20Budget.pdf\">will consider whether\u003c/a> to spend $429,500 of state money on climate vulnerability assessments over the next fiscal year.\u003c/p>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>Sea-level rise could swamp thousands of homes in the San Francisco Bay Area, most in Silicon Valley and Marin, within 30 years. A new study from the \u003ca href=\"https://ucsusa.maps.arcgis.com/apps/MapSeries/index.html?appid=cf07ebe0a4c9439ab2e7e346656cb239\">Union of Concerned Scientists\u003c/a>, relying on federal government projections for climate change, found that more than 20,000 homes across California would chronically flood by 2045. That is about a mortgage-length’s-time from now.\u003c/p>\n\u003cp>\u003c/p>\u003cp>\u003c/p>\u003cp>UCS climate scientist Kristy Dahl, an author of the new report, says she noticed that the Bay Area homes most vulnerable to rising seas are in San Mateo, Santa Clara, and Marin counties. These are suburbs where people have typically moved to feel safe, says Dahl.\u003c/p>\n\u003cp>“The very suburbs people flocked to because they were affordable, you know we think of as being kind of safe havens,” Dahl says.\u003c/p>\n\u003cp>In one East Palo Alto zip code\u003cstrong>,\u003c/strong> more than a quarter of houses could see chronic inundation, on 26 or more days a year.\u003c/p>\n\u003cp>“That’s on par for example with the number of homes that are at risk in Key West Florida,” Dahl says.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>\u003c/p>\u003cp>\u003c/p>\u003cp>Dahl says one conclusion is that coastal property in the Bay Area is overvalued.\u003c/p>\n\u003cp>The Bay Area’s sea-level related risks aren’t limited to homes. Critical communal assets like power plants, water treatment plants, transit stations, highways and airports line the shoreline. Previous regional studies estimate, if a freeway floods five times as many people as the affected homeowners will feel the pain.\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>Local counties say they’re aware of these risks — and they’re now starting to plan for them. Marin County \u003ca href=\"https://www.marincounty.org/depts/ad/divisions/management-and-budget/budget-overview\">will consider\u003c/a> spending on climate change planning as part of its budget process this week. And in San Mateo County, supervisors next week \u003ca href=\"https://cmo.smcgov.org/sites/cmo.smcgov.org/files/documents/files/FY%202018-19%20Recommended%20Budget.pdf\">will consider whether\u003c/a> to spend $429,500 of state money on climate vulnerability assessments over the next fiscal year.\u003c/p>\n\n\u003c/div>\u003c/p>",
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"content": "\u003cp>James Hansen wishes he was wrong. He wasn’t.[contextly_sidebar id=”6WMcRN0nmxMf0PcjwhPaC5o3BRVUKI9k”]\u003c/p>\n\u003cp>NASA’s top climate scientist in 1988, Hansen warned the world on a record hot June day 30 years ago that global warming was here and worsening. In a scientific study that came out a couple months later, he even forecast how warm it would get, depending on emissions of heat-trapping gases.\u003c/p>\n\u003cp>The hotter world that Hansen envisioned in 1988 has pretty much come true so far, more or less. Three decades later, most climate scientists interviewed rave about the accuracy of Hansen’s predictions given the technology of the time.\u003c/p>\n\u003cp>Hansen won’t say, “I told you so.”\u003c/p>\n\u003cp>“I don’t want to be right in that sense,” Hansen told The Associated Press, in an interview is his New York penthouse apartment. That’s because being right means the world is warming at an unprecedented pace and ice sheets in Antarctica and Greenland are melting.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>Hansen said what he really wishes happened is “that the warning be heeded and actions be taken.”\u003c/p>\n\u003cp>They weren’t. Hansen, now 77, regrets not being “able to make this story clear enough for the public.”[contextly_sidebar id=”jUCTxsyugjWjlt4W8NjVjYKxNAKLh71F”]\u003c/p>\n\u003cp>Global warming was not what Hansen set out to study when he joined NASA in 1972. The Iowa native studied Venus — a planet with a runaway greenhouse-effect run — when he got interested in Earth’s ozone hole. As he created computer simulations, he realized that “this planet was more interesting than Venus.” And more important.\u003c/p>\n\u003cp>In his 1988 study, Hansen and colleagues used three different scenarios for emissions of heat-trapping gases — high, low and medium. Hansen and other scientists concentrated on the middle scenario.\u003c/p>\n\u003cp>Hansen projected that by 2017, the globe’s five-year average temperature would be about 1.85 degrees (1.03 degree Celsius) higher than the 1950 to 1980 NASA-calculated average. NASA’s five-year average global temperature ending in 2017 was 1.48 degrees above the 30-year average. (He did not take into account that the sun would be cooling a tad, which would reduce warming nearly two-tenths of a degree Fahrenheit, said the Scripps Institution of Oceanography’s Jeff Severinghaus.)\u003c/p>\n\u003cp>Hansen also predicted a certain number of days of extreme weather — temperature above 95 degrees, freezing days, and nights when the temperatures that don’t drop below 75 — per year for four U.S. cities in the decade of the 2010s.\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>Hansen’s forecast generally underestimated this decade’s warming in Washington, overestimated it in Omaha, was about right in New York and mixed in Memphis.\u003c/p>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>James Hansen wishes he was wrong. He wasn’t.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>NASA’s top climate scientist in 1988, Hansen warned the world on a record hot June day 30 years ago that global warming was here and worsening. In a scientific study that came out a couple months later, he even forecast how warm it would get, depending on emissions of heat-trapping gases.\u003c/p>\n\u003cp>The hotter world that Hansen envisioned in 1988 has pretty much come true so far, more or less. Three decades later, most climate scientists interviewed rave about the accuracy of Hansen’s predictions given the technology of the time.\u003c/p>\n\u003cp>Hansen won’t say, “I told you so.”\u003c/p>\n\u003cp>“I don’t want to be right in that sense,” Hansen told The Associated Press, in an interview is his New York penthouse apartment. That’s because being right means the world is warming at an unprecedented pace and ice sheets in Antarctica and Greenland are melting.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>Hansen said what he really wishes happened is “that the warning be heeded and actions be taken.”\u003c/p>\n\u003cp>They weren’t. Hansen, now 77, regrets not being “able to make this story clear enough for the public.”\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>Global warming was not what Hansen set out to study when he joined NASA in 1972. The Iowa native studied Venus — a planet with a runaway greenhouse-effect run — when he got interested in Earth’s ozone hole. As he created computer simulations, he realized that “this planet was more interesting than Venus.” And more important.\u003c/p>\n\u003cp>In his 1988 study, Hansen and colleagues used three different scenarios for emissions of heat-trapping gases — high, low and medium. Hansen and other scientists concentrated on the middle scenario.\u003c/p>\n\u003cp>Hansen projected that by 2017, the globe’s five-year average temperature would be about 1.85 degrees (1.03 degree Celsius) higher than the 1950 to 1980 NASA-calculated average. NASA’s five-year average global temperature ending in 2017 was 1.48 degrees above the 30-year average. (He did not take into account that the sun would be cooling a tad, which would reduce warming nearly two-tenths of a degree Fahrenheit, said the Scripps Institution of Oceanography’s Jeff Severinghaus.)\u003c/p>\n\u003cp>Hansen also predicted a certain number of days of extreme weather — temperature above 95 degrees, freezing days, and nights when the temperatures that don’t drop below 75 — per year for four U.S. cities in the decade of the 2010s.\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>Hansen’s forecast generally underestimated this decade’s warming in Washington, overestimated it in Omaha, was about right in New York and mixed in Memphis.\u003c/p>\n\n\u003c/div>\u003c/p>",
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"content": "\u003cp>Insurers can calculate how likely your home is to burn down in a wildfire, or flood in a high tide, and for some time now they’ve been using climate science to shape those estimates.\u003c/p>\n\u003caside class=\"pullquote alignright\">‘Areas that were thought to be lower risk like Santa Rosa are now understood to be at a higher risk.’\u003ccite>Dave Jones,\u003cbr>\nCalifornia Insurance Commissioner\u003c/cite>\u003c/aside>\n\u003cp>KQED Science Reporter Molly Peterson spoke with state Insurance Commissioner Dave Jones. He told her the growing risk of climate-related disasters is already hitting the insurance market.\u003c/p>\n\u003cp>\u003cstrong>DAVE JONES:\u003c/strong> So one measure of this is the incidence of nonrenewals between 2015 and 2016 in these wildland urban interface counties. We’ve seen about a 15 percent increase in nonrenewals. Now, that doesn’t mean that those 15 percent can’t find any insurance. But the company they did have decided it was too risky to write insurance for them and decided not to renew them.\u003c/p>\n\u003cp>\u003cstrong>MOLLY PETERSON:\u003c/strong> How can Californians know that the insurance industry is pricing the risk of climate change correctly?\u003c/p>\n\u003cp>\u003cstrong>Percent of California Housing in High-Risk Fire Zones\u003c/strong>\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>\u003c!-- iframe plugin v.4.3 wordpress.org/plugins/iframe/ -->\u003cbr>\n\u003ciframe loading=\"lazy\" src=\"https://kqednews.carto.com/builder/4d933281-119d-401a-b29a-739d8844de95/embed\" width=\"100%\" height=\"500\" scrolling=\"yes\" class=\"iframe-class\" frameborder=\"0\">\u003c/iframe>\u003c/p>\n\u003cp>\u003cem>SOURCE: California Department of Insurance;\u003cbr>\nCREDIT: Lisa Pickoff-White, Teodros Hailye/KQED\u003c/em>\u003c/p>\n\u003cp>\u003cstrong>DJ:\u003c/strong> Fundamentally what they’re rating on is their experience in historic losses. So the fires that occured in 2017 — which caused some $12.3 billion in losses — they’re not allowed to take those $12.3 billion and shove them into next year’s rate. But there is a catastrophic load in the rate development that allows them to, over time, get rate increases accordingly.\u003c/p>\n\u003cp>So as climate change drives more catastrophic weather events, property and casualty insurers are thinking about these sorts of risks. For example, they’re starting to use ever more sophisticated fire risk models. So they look at things like topography, slope, wind direction. It used to be that insurers had more generic approaches to try to figure out these risks. They would look at whole zip codes or whole counties or whole area codes. But now they’re able to do it on a home-by-home basis.\u003c/p>\n\u003cp>[contextly_sidebar id=”5g5CbqXmALdCjZt9Y3YSQuRIanjEl0Kt”]\u003cstrong>MP:\u003c/strong> If fires are getting bigger because of climate change, past experience only tells you so much about what that experience is going to be in the future.\u003c/p>\n\u003cp>\u003cstrong>DJ:\u003c/strong> But the forward-looking science isn’t fully developed enough to be able to rely on. There is a gap between the climate modeling versus the kind of modeling insurance companies need (in order) to decide what risk to write. And I think we are going to see rates go up. We’re already getting rate filings that reflect the losses that the carriers experienced in 2017.\u003c/p>\n\u003cp>The other thing that’s occurring too — areas that were thought to be lower risk like Santa Rosa are now understood to be at a higher risk. And so what that means is that the rate that they’re entitled to get in certain areas is going to change, because those areas now demonstrably are at higher risk, too.\u003c/p>\n\u003cp>\u003cstrong>MP:\u003c/strong> What do we know about how insurance companies use climate science?\u003c/p>\n\u003cp>[emailsignup newslettername='science' align='right']\u003cstrong>DJ:\u003c/strong> Where the big deficit has occurred is in insurance companies thinking about climate-related risk on the investment side of what they do. So, what’s an example of this? Coal. Well, what’s happened with regard to coal over the past couple of years? Some 35 coal companies went bankrupt. The Dow Jones stock indices for coal dropped some 92 percent in value. Major U.S. banks said they’re no longer going to invest in coal infrastructure because it’s not a good investment. I want insurance companies, as their regulator, to be invested in things that retain value, not things that drop in value. And I want them, at a minimum, to be thinking about this, and I concluded that they weren’t.\u003c/p>\n\u003cp>\u003cstrong>MP:\u003c/strong> We’re talking about property owners around California who are vulnerable to a flood, vulnerable to fire, vulnerable to sea level rise in ways that weren’t true in the past. Do you think the state should increase that burden on property owners to prepare for that vulnerability?\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>\u003cstrong>DJ:\u003c/strong> There’s no question that the state of California, like every other state, does a lousy job of making land-use decisions. One of the big disconnects that’s resulting in more businesses and people living in harm’s way is that decisions about whether to put new subdivisions or new homes, new businesses, into a floodplain or a high-risk fire area or on top of an earthquake fault, are made by local governments. And those local governments are not required, nor do they have any financial liability for, those decisions. Probably the biggest single improvement we could make is saying, look, we’re going to require local governments to bear some of the cost of those decisions.\u003c/p>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>Insurers can calculate how likely your home is to burn down in a wildfire, or flood in a high tide, and for some time now they’ve been using climate science to shape those estimates.\u003c/p>\n\u003caside class=\"pullquote alignright\">‘Areas that were thought to be lower risk like Santa Rosa are now understood to be at a higher risk.’\u003ccite>Dave Jones,\u003cbr>\nCalifornia Insurance Commissioner\u003c/cite>\u003c/aside>\n\u003cp>KQED Science Reporter Molly Peterson spoke with state Insurance Commissioner Dave Jones. He told her the growing risk of climate-related disasters is already hitting the insurance market.\u003c/p>\n\u003cp>\u003cstrong>DAVE JONES:\u003c/strong> So one measure of this is the incidence of nonrenewals between 2015 and 2016 in these wildland urban interface counties. We’ve seen about a 15 percent increase in nonrenewals. Now, that doesn’t mean that those 15 percent can’t find any insurance. But the company they did have decided it was too risky to write insurance for them and decided not to renew them.\u003c/p>\n\u003cp>\u003cstrong>MOLLY PETERSON:\u003c/strong> How can Californians know that the insurance industry is pricing the risk of climate change correctly?\u003c/p>\n\u003cp>\u003cstrong>Percent of California Housing in High-Risk Fire Zones\u003c/strong>\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>\u003c!-- iframe plugin v.4.3 wordpress.org/plugins/iframe/ -->\u003cbr>\n\u003ciframe loading=\"lazy\" src=\"https://kqednews.carto.com/builder/4d933281-119d-401a-b29a-739d8844de95/embed\" width=\"100%\" height=\"500\" scrolling=\"yes\" class=\"iframe-class\" frameborder=\"0\">\u003c/iframe>\u003c/p>\n\u003cp>\u003cem>SOURCE: California Department of Insurance;\u003cbr>\nCREDIT: Lisa Pickoff-White, Teodros Hailye/KQED\u003c/em>\u003c/p>\n\u003cp>\u003cstrong>DJ:\u003c/strong> Fundamentally what they’re rating on is their experience in historic losses. So the fires that occured in 2017 — which caused some $12.3 billion in losses — they’re not allowed to take those $12.3 billion and shove them into next year’s rate. But there is a catastrophic load in the rate development that allows them to, over time, get rate increases accordingly.\u003c/p>\n\u003cp>So as climate change drives more catastrophic weather events, property and casualty insurers are thinking about these sorts of risks. For example, they’re starting to use ever more sophisticated fire risk models. So they look at things like topography, slope, wind direction. It used to be that insurers had more generic approaches to try to figure out these risks. They would look at whole zip codes or whole counties or whole area codes. But now they’re able to do it on a home-by-home basis.\u003c/p>\n\u003cp>\u003c/p>\u003cp>\u003c/p>\u003cp>\u003cstrong>MP:\u003c/strong> If fires are getting bigger because of climate change, past experience only tells you so much about what that experience is going to be in the future.\u003c/p>\n\u003cp>\u003cstrong>DJ:\u003c/strong> But the forward-looking science isn’t fully developed enough to be able to rely on. There is a gap between the climate modeling versus the kind of modeling insurance companies need (in order) to decide what risk to write. And I think we are going to see rates go up. We’re already getting rate filings that reflect the losses that the carriers experienced in 2017.\u003c/p>\n\u003cp>The other thing that’s occurring too — areas that were thought to be lower risk like Santa Rosa are now understood to be at a higher risk. And so what that means is that the rate that they’re entitled to get in certain areas is going to change, because those areas now demonstrably are at higher risk, too.\u003c/p>\n\u003cp>\u003cstrong>MP:\u003c/strong> What do we know about how insurance companies use climate science?\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cstrong>DJ:\u003c/strong> Where the big deficit has occurred is in insurance companies thinking about climate-related risk on the investment side of what they do. So, what’s an example of this? Coal. Well, what’s happened with regard to coal over the past couple of years? Some 35 coal companies went bankrupt. The Dow Jones stock indices for coal dropped some 92 percent in value. Major U.S. banks said they’re no longer going to invest in coal infrastructure because it’s not a good investment. I want insurance companies, as their regulator, to be invested in things that retain value, not things that drop in value. And I want them, at a minimum, to be thinking about this, and I concluded that they weren’t.\u003c/p>\n\u003cp>\u003cstrong>MP:\u003c/strong> We’re talking about property owners around California who are vulnerable to a flood, vulnerable to fire, vulnerable to sea level rise in ways that weren’t true in the past. Do you think the state should increase that burden on property owners to prepare for that vulnerability?\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>\u003cstrong>DJ:\u003c/strong> There’s no question that the state of California, like every other state, does a lousy job of making land-use decisions. One of the big disconnects that’s resulting in more businesses and people living in harm’s way is that decisions about whether to put new subdivisions or new homes, new businesses, into a floodplain or a high-risk fire area or on top of an earthquake fault, are made by local governments. And those local governments are not required, nor do they have any financial liability for, those decisions. Probably the biggest single improvement we could make is saying, look, we’re going to require local governments to bear some of the cost of those decisions.\u003c/p>\n\n\u003c/div>\u003c/p>",
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"title": "Antarctica Has Lost More Than 3 Trillion Tons Of Ice In 25 Years",
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"content": "\u003cp>Scientists have completed the most exhaustive assessment of changes in Antarctica’s ice sheet to date. And they found that it’s melting faster than they thought.[contextly_sidebar id=”z99Sivlx9eVZ5dNVpnDqhORco4XkaD6X”]\u003c/p>\n\u003cp>Ice losses totaling 3 trillion tonnes (or more than 3.3 trillion tons) since 1992 have caused global sea levels to rise by 7.6 mm, nearly one third of an inch, according to a study \u003ca href=\"https://www.nature.com/articles/s41586-018-0179-y\" target=\"_blank\" rel=\"noopener\">published in Nature\u003c/a> on Wednesday.\u003c/p>\n\u003cp>Before 2010, Antarctica was contributing a relatively small proportion of the melting that is causing global sea levels to rise, says study co-leader \u003ca href=\"http://www.see.leeds.ac.uk/people/a.shepherd\" target=\"_blank\" rel=\"noopener\">Andrew Shepherd of the University of Leeds\u003c/a>.\u003c/p>\n\u003cp>But that has changed. “Since around 2010, 2012, we can see that there’s been a sharp increase in the rate of ice loss from Antarctica. And the ice sheet is now losing three times as much ice,” Shepherd adds.\u003c/p>\n\u003cp>The annual sea level rise that’s attributed to Antarctica has tripled, from 0.2mm to 0.6mm, he says.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>“That’s a big jump, and it did catch us all by surprise,” Shepherd says.\u003c/p>\n\u003cp>The melting is caused by rising ocean temperatures due to climate change.\u003c/p>\n\u003cp>Shepherd says they’ve seen the most dramatic effects in West Antarctica, where the ice sheet rests on the sea bed. “When we look into the ocean we find that it’s too warm and the ice sheet can’t withstand the temperatures that are surrounding it in the sea,” he says. That’s causing glaciers to flow more quickly into the sea.[contextly_sidebar id=”9wO7jBGuAtFyFodqyKBdH39yIDxejDIg”]\u003c/p>\n\u003cp>East Antarctica, which is home to the South Pole, has seen considerably less melting because most of its ice is above sea level. That’s “an important distinction, because it means it’s insulated from changes in the ocean’s temperature.”\u003c/p>\n\u003cp>This assessment, conducted by 84 scientists from 44 international organizations, is known as the Ice Sheet Mass Balance Inter-comparison Exercise (IMBIE).\u003c/p>\n\u003cp>There have been many other estimates of how much ice has melted in Antarctica. And many of those papers showed different results.\u003c/p>\n\u003cp>“Some of the estimates covered different proportions of the ice sheets, some of them covered different time periods, and all of them used different methods and so it became difficult for people who are not specialists to try to pick them apart,” says Shepherd. “So that was the motivation for originally setting up the project.”\u003c/p>\n\u003cp>The scientists combined 24 different satellite surveys, which Shepherd says provides a more complete picture of the overall ice sheet change than previous studies. “We believe that we’ve captured all of the different satellite records that exist on the planet,” he says.\u003c/p>\n\u003cp>To analyze the ice, the researchers use three different kinds of measurements. Satellite altimeters measure the height of the ice sheets, to see how much they are thinning or thickening over time. Another measurement records the speed of the glaciers and how they’re moving into the ocean.\u003c/p>\n\u003cp>Finally, the scientists are recording gravity measurements for Antarctica. These “tell us about changes in the earth’s gravitational attraction over time and that can be related to the mass of the ice sheets overall,” Shepherd says, “and they are really powerful measurements because they can add up everything across Antarctica.”[contextly_sidebar id=”eUQPZA3bgd7aPP1WzwXjFcrlNWtocdb4”]\u003c/p>\n\u003cp>So what accounts for the apparent three-fold speed up in Antarctica’s melting in the last five years?\u003c/p>\n\u003cp>Shepherd says that actually, their data shows a “a progressive increase in ice loss throughout the whole 25 year time period.” However, a period of heavy snowfall between 2005 and 2010 masked some of the immediate effects of the ice loss, accounting for the sudden, steep increase in more recent years.\u003c/p>\n\u003cp>This new data creates a much starker picture of the future than previous estimates. Shepherd says until 2010, the data had been tracking a lower scenario which estimated that Antarctica “wouldn’t make much of a contribution to sea level rise at all” because of the effects of higher snowfall. However, he says that now the data is tracking a higher scenario, which could mean nearly 6 inches of additional sea level rise in the next century.\u003c/p>\n\u003cp>That could be a big deal, he says, “for anybody who lives, works and governs a coastal region.”\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>Understanding the rate of Antarctica’s melting is crucial for these communities. If all of the ice in Antarctica melted, global sea levels would rise by more than 190 feet.\u003c/p>\n\u003cdiv class=\"fullattribution\">Copyright 2018 NPR. To see more, visit http://www.npr.org/.\u003cimg decoding=\"async\" src=\"https://www.google-analytics.com/__utm.gif?utmac=UA-5828686-4&utmdt=Antarctica+Has+Lost+More+Than+3+Trillion+Tons+Of+Ice+In+25+Years+&utme=8(APIKey)9(MDAxOTAwOTE4MDEyMTkxMDAzNjczZDljZA004)\">\u003c/div>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>Scientists have completed the most exhaustive assessment of changes in Antarctica’s ice sheet to date. And they found that it’s melting faster than they thought.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>Ice losses totaling 3 trillion tonnes (or more than 3.3 trillion tons) since 1992 have caused global sea levels to rise by 7.6 mm, nearly one third of an inch, according to a study \u003ca href=\"https://www.nature.com/articles/s41586-018-0179-y\" target=\"_blank\" rel=\"noopener\">published in Nature\u003c/a> on Wednesday.\u003c/p>\n\u003cp>Before 2010, Antarctica was contributing a relatively small proportion of the melting that is causing global sea levels to rise, says study co-leader \u003ca href=\"http://www.see.leeds.ac.uk/people/a.shepherd\" target=\"_blank\" rel=\"noopener\">Andrew Shepherd of the University of Leeds\u003c/a>.\u003c/p>\n\u003cp>But that has changed. “Since around 2010, 2012, we can see that there’s been a sharp increase in the rate of ice loss from Antarctica. And the ice sheet is now losing three times as much ice,” Shepherd adds.\u003c/p>\n\u003cp>The annual sea level rise that’s attributed to Antarctica has tripled, from 0.2mm to 0.6mm, he says.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>“That’s a big jump, and it did catch us all by surprise,” Shepherd says.\u003c/p>\n\u003cp>The melting is caused by rising ocean temperatures due to climate change.\u003c/p>\n\u003cp>Shepherd says they’ve seen the most dramatic effects in West Antarctica, where the ice sheet rests on the sea bed. “When we look into the ocean we find that it’s too warm and the ice sheet can’t withstand the temperatures that are surrounding it in the sea,” he says. That’s causing glaciers to flow more quickly into the sea.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>East Antarctica, which is home to the South Pole, has seen considerably less melting because most of its ice is above sea level. That’s “an important distinction, because it means it’s insulated from changes in the ocean’s temperature.”\u003c/p>\n\u003cp>This assessment, conducted by 84 scientists from 44 international organizations, is known as the Ice Sheet Mass Balance Inter-comparison Exercise (IMBIE).\u003c/p>\n\u003cp>There have been many other estimates of how much ice has melted in Antarctica. And many of those papers showed different results.\u003c/p>\n\u003cp>“Some of the estimates covered different proportions of the ice sheets, some of them covered different time periods, and all of them used different methods and so it became difficult for people who are not specialists to try to pick them apart,” says Shepherd. “So that was the motivation for originally setting up the project.”\u003c/p>\n\u003cp>The scientists combined 24 different satellite surveys, which Shepherd says provides a more complete picture of the overall ice sheet change than previous studies. “We believe that we’ve captured all of the different satellite records that exist on the planet,” he says.\u003c/p>\n\u003cp>To analyze the ice, the researchers use three different kinds of measurements. Satellite altimeters measure the height of the ice sheets, to see how much they are thinning or thickening over time. Another measurement records the speed of the glaciers and how they’re moving into the ocean.\u003c/p>\n\u003cp>Finally, the scientists are recording gravity measurements for Antarctica. These “tell us about changes in the earth’s gravitational attraction over time and that can be related to the mass of the ice sheets overall,” Shepherd says, “and they are really powerful measurements because they can add up everything across Antarctica.”\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>So what accounts for the apparent three-fold speed up in Antarctica’s melting in the last five years?\u003c/p>\n\u003cp>Shepherd says that actually, their data shows a “a progressive increase in ice loss throughout the whole 25 year time period.” However, a period of heavy snowfall between 2005 and 2010 masked some of the immediate effects of the ice loss, accounting for the sudden, steep increase in more recent years.\u003c/p>\n\u003cp>This new data creates a much starker picture of the future than previous estimates. Shepherd says until 2010, the data had been tracking a lower scenario which estimated that Antarctica “wouldn’t make much of a contribution to sea level rise at all” because of the effects of higher snowfall. However, he says that now the data is tracking a higher scenario, which could mean nearly 6 inches of additional sea level rise in the next century.\u003c/p>\n\u003cp>That could be a big deal, he says, “for anybody who lives, works and governs a coastal region.”\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>Understanding the rate of Antarctica’s melting is crucial for these communities. If all of the ice in Antarctica melted, global sea levels would rise by more than 190 feet.\u003c/p>\n\u003cdiv class=\"fullattribution\">Copyright 2018 NPR. To see more, visit http://www.npr.org/.\u003cimg decoding=\"async\" src=\"https://www.google-analytics.com/__utm.gif?utmac=UA-5828686-4&utmdt=Antarctica+Has+Lost+More+Than+3+Trillion+Tons+Of+Ice+In+25+Years+&utme=8(APIKey)9(MDAxOTAwOTE4MDEyMTkxMDAzNjczZDljZA004)\">\u003c/div>\n\n\u003c/div>\u003c/p>",
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"title": "Record-Low Clarity in Lake Tahoe Blamed on Unusual Weather Events",
"headTitle": "Record-Low Clarity in Lake Tahoe Blamed on Unusual Weather Events | KQED",
"content": "\u003cp>A bizarre confluence of weather events led to the average clarity of Lake Tahoe last year falling to its lowest level on record.[contextly_sidebar id=”JNSz6zz0TpEKsJfo8i0IASU0tgr9fDuY”]\u003c/p>\n\u003cp>The\u003ca href=\"http://tahoe.ucdavis.edu/research/monitoring/water-clarity.html\" target=\"_blank\" rel=\"noopener\"> report\u003c/a> issued by the \u003ca href=\"http://tahoe.ucdavis.edu/\" target=\"_blank\" rel=\"noopener\">Tahoe Environmental Research Center\u003c/a> at UC Davis, is a preview of its annual State of the Lake report, due out next month. It points to historic drought, followed by record precipitation and warm temperatures. Lake clarity is a key indicator used to track the degradation and restoration of the iconic lake.\u003c/p>\n\u003cp>“It was more than just a bizarre sequence of events,” says the center’s director, Geoffrey Schladow, “it was a sequence of extremely extreme events.”\u003c/p>\n\u003cp>Data released by the center on Wednesday shows that the average annual clarity level for 2017 was 59.7 feet, which marks the deepest point at which a standardized measuring disk is visible. That’s a 9.5 -ft. decrease in depth from the previous year. The five-year average for lake clarity is about 70 feet.\u003c/p>\n\u003cp>Researchers say heavy rains in early 2017 sent sediment that had been gathering in streambeds through five years of drought, into the lake.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>“These two events came together,” recalls Schladow. “The drought let lots of sediment build up in the streams over that 5-yr period and then finally this event — this really extreme winter — washed it all into the lake, literally in that one year.”\u003c/p>\n\u003cp>Schladow estimates that 12,000 tons of fresh sediment ended up in the lake last year, whereas none of the previous five years has seen more than 1,000.\u003c/p>\n\u003cp>The center has been monitoring Tahoe for over a half-century and uses the research to assess how freshwater ecosystems are responding to change. The center’s stated goal is to restore lake clarity back to its historic level of nearly 100 feet, which gave rise to its legendary reputation as a jewel among alpine lakes.\u003c/p>\n\u003cp>[emailsignup newslettername='science' align='right']\u003c/p>\n\u003cp>According to the center, most pollutants that contribute to reduced clarity come from urban runoff.\u003c/p>\n\u003cp>A joint statement issued by the California Natural Resources Secretary John Laird and Nevada Director of Conservation and Natural Resources Bradley Cowell urged the scientific community to take note of the report’s findings.\u003c/p>\n\u003cp>\u003cspan style=\"color: black\">“While annual clarity declines are not unusual, the record decline experienced last year warrants an in-depth review to further understand the causes and impacts, and to help ensure the 2017 decrease is an anomaly, and not a trend,” it read.\u003c/span>\u003c/p>\n\u003cp>While Schladow says the lake is already recovering, the one-year pulse raises important questions about the future.\u003c/p>\n\u003cp>“We all believe that there will be more extreme events,” he says, “maybe not as extreme as what we saw, but more intense rainfall, more rain, less snow — things like that we haven’t dealt with before. How do we cope with those sorts of extremes?”\u003c/p>\n\u003cp>In February, the federal Department of Interior announced that it \u003ca href=\"https://www.scribd.com/document/344033461/FY2017-Reduction-Options\" target=\"_blank\" rel=\"noopener\">might slash the budget\u003c/a> for conservation projects throughout Nevada, including those that serve the Lake Tahoe region.\u003c/p>\n\u003cp class=\"speakable-p-1 p-text\">The majority of the funding has been used for projects at Lake Tahoe, according to Julie Regan, spokesperson at the Tahoe Regional Planning Agency.\u003c/p>\n\u003cp>“If this funding were to be cut,” warns Regan, “that would potentially compromise forest health projects that would protect the region from catastrophic wildfires.”\u003c/p>\n\u003cp>\u003c/p>\n\u003cp class=\"p-text\">\n\u003c/p>\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>A bizarre confluence of weather events led to the average clarity of Lake Tahoe last year falling to its lowest level on record.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>The\u003ca href=\"http://tahoe.ucdavis.edu/research/monitoring/water-clarity.html\" target=\"_blank\" rel=\"noopener\"> report\u003c/a> issued by the \u003ca href=\"http://tahoe.ucdavis.edu/\" target=\"_blank\" rel=\"noopener\">Tahoe Environmental Research Center\u003c/a> at UC Davis, is a preview of its annual State of the Lake report, due out next month. It points to historic drought, followed by record precipitation and warm temperatures. Lake clarity is a key indicator used to track the degradation and restoration of the iconic lake.\u003c/p>\n\u003cp>“It was more than just a bizarre sequence of events,” says the center’s director, Geoffrey Schladow, “it was a sequence of extremely extreme events.”\u003c/p>\n\u003cp>Data released by the center on Wednesday shows that the average annual clarity level for 2017 was 59.7 feet, which marks the deepest point at which a standardized measuring disk is visible. That’s a 9.5 -ft. decrease in depth from the previous year. The five-year average for lake clarity is about 70 feet.\u003c/p>\n\u003cp>Researchers say heavy rains in early 2017 sent sediment that had been gathering in streambeds through five years of drought, into the lake.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>“These two events came together,” recalls Schladow. “The drought let lots of sediment build up in the streams over that 5-yr period and then finally this event — this really extreme winter — washed it all into the lake, literally in that one year.”\u003c/p>\n\u003cp>Schladow estimates that 12,000 tons of fresh sediment ended up in the lake last year, whereas none of the previous five years has seen more than 1,000.\u003c/p>\n\u003cp>The center has been monitoring Tahoe for over a half-century and uses the research to assess how freshwater ecosystems are responding to change. The center’s stated goal is to restore lake clarity back to its historic level of nearly 100 feet, which gave rise to its legendary reputation as a jewel among alpine lakes.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>According to the center, most pollutants that contribute to reduced clarity come from urban runoff.\u003c/p>\n\u003cp>A joint statement issued by the California Natural Resources Secretary John Laird and Nevada Director of Conservation and Natural Resources Bradley Cowell urged the scientific community to take note of the report’s findings.\u003c/p>\n\u003cp>\u003cspan style=\"color: black\">“While annual clarity declines are not unusual, the record decline experienced last year warrants an in-depth review to further understand the causes and impacts, and to help ensure the 2017 decrease is an anomaly, and not a trend,” it read.\u003c/span>\u003c/p>\n\u003cp>While Schladow says the lake is already recovering, the one-year pulse raises important questions about the future.\u003c/p>\n\u003cp>“We all believe that there will be more extreme events,” he says, “maybe not as extreme as what we saw, but more intense rainfall, more rain, less snow — things like that we haven’t dealt with before. How do we cope with those sorts of extremes?”\u003c/p>\n\u003cp>In February, the federal Department of Interior announced that it \u003ca href=\"https://www.scribd.com/document/344033461/FY2017-Reduction-Options\" target=\"_blank\" rel=\"noopener\">might slash the budget\u003c/a> for conservation projects throughout Nevada, including those that serve the Lake Tahoe region.\u003c/p>\n\u003cp class=\"speakable-p-1 p-text\">The majority of the funding has been used for projects at Lake Tahoe, according to Julie Regan, spokesperson at the Tahoe Regional Planning Agency.\u003c/p>\n\u003cp>“If this funding were to be cut,” warns Regan, “that would potentially compromise forest health projects that would protect the region from catastrophic wildfires.”\u003c/p>\n\u003cp>\u003c/p>\n\u003cp class=\"p-text\">\n\u003c/p>\n\u003c/div>\u003c/p>",
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"content": "\u003cp>Scientists and engineers have been underscoring for some time the need for carbon-capture technologies to help reverse the course of climate change. A solution of last resort, it relies on technology to strip the atmosphere of the most prevalent greenhouse gas — a process referred to as “direct air capture.”\u003c/p>\n\u003cp>From \u003ca href=\"https://news.nationalgeographic.com/2018/06/carbon-engineering-liquid-fuel-carbon-capture-neutral-science/\" target=\"_blank\" rel=\"noopener\">National Geographic:\u003c/a>\u003c/p>\n\u003cblockquote>\u003cp>Keeping global warming to less than 2 degrees C (the international target to avoid the most dangerous impacts) will likely require \u003ca href=\"https://www.nature.com/articles/d41586-018-02184-x\">“negative emissions”\u003c/a>—some way of taking lots of CO2 out of the atmosphere and storing it permanently, according to the Intergovernmental Panel on Climate Change (IPCC).\u003c/p>\u003c/blockquote>\n\u003cp>Until now, the concept has remained elusive due to the exorbitant costs involved and few takers. But one Canadian company, \u003ca href=\"http://carbonengineering.com/\" target=\"_blank\" rel=\"noopener\">Carbon Engineering\u003c/a>, has been running a pilot facility since 2015 and says it has successfully developed a cost-effective technology for DAC.\u003c/p>\n\u003cp>National Geographic called it an “engineering breakthrough.” The founders recently published a paper detailing the costs of the ambitious project in the\u003ca href=\"https://www.cell.com/joule/home\"> journal Joule\u003c/a>.\u003c/p>\n\u003cp>“Our paper shows the costs and engineering for a full-scale plant that could capture one million tons of CO2 a year,” \u003ca href=\"https://www.seas.harvard.edu/directory/dkeith\">David Keith\u003c/a>, a physicist at Harvard University and founder of Carbon Engineering, told National Geographic.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>The quest for direct capture has been frought with failure. Last year, a Swiss company called Climeworks launched a DAC pilot facility. The plant contains massive fans that blow air into a solution that contains a carbon-capturing chemical.\u003c/p>\n\u003cp>But the American Physical Society found that the procedure would likely cost about $600 per metric ton of captured CO\u003csub>2\u003c/sub>. With our addiction to fossil fuel contributing \u003ca href=\"https://news.nationalgeographic.com/2017/11/climate-change-carbon-emissions-rising-environment/?beta=true\">close to 40 billion metric tons of CO2 a year,\u003c/a> which doesn’t “pencil.”\u003c/p>\n\u003cp>Similarly, the technology developed by Carbon Engineering works by capturing the CO\u003csub>2\u003c/sub> in a solution that reacts with the carbon and converts it into a solid — and at lower cost. From the journal \u003ca href=\"https://www.nature.com/articles/d41586-018-05357-w\" target=\"_blank\" rel=\"noopener\">Nature\u003c/a>\u003cem>:\u003c/em>\u003c/p>\n\u003cblockquote>\u003cp>Carbon Engineering’s design blows air through towers that contain a solution of potassium hydroxide, which reacts with CO2 to form potassium carbonate. The result, after further processing, is a calcium carbonate pellet that can be heated to release the CO2. That CO2 could then be pressurized, put into a pipeline and disposed of underground, but the company is planning instead to use the gas to make synthetic, low-carbon fuels. Keith says that the company can produce these at a cost of about $1 per litre. When Carbon Engineering configured the air-capture plant for this purpose, they were able to bring costs down to as low as $94 per tonne of CO2.\u003c/p>\u003c/blockquote>\n\u003cp>Keith and his team used their findings to project the costs of an actual commercial plant with the same technology. They claim their \u003ca href=\"https://www.cell.com/joule/fulltext/S2542-4351(18)30225-3\" target=\"_blank\" rel=\"noopener\">technology can capture CO\u003csub>2\u003c/sub> for between $94 and $232 per metric ton\u003c/a>.\u003c/p>\n\u003cp>“This isn’t going to save the world from the impacts of climate change, but it’s going to be a big step on the path to a low-carbon economy,” \u003ca href=\"https://www.seas.harvard.edu/directory/dkeith\">Keith\u003c/a> told National Geographic.\u003c/p>\n\u003cp>The company uses a separate pilot project to convert the captured carbon into liquid fuels, including gasoline. From \u003ca href=\"http://www.sciencemag.org/news/2018/06/cost-plunges-capturing-carbon-dioxide-air\" target=\"_blank\" rel=\"noopener\">Science Magazine\u003c/a>:\u003c/p>\n\u003cblockquote>\u003cp>[B]ecause the process recycles carbon from the air, it would constitute a low-carbon fuel, something that places such as California are increasingly requiring in their fuel mixes, and which command a premium price.\u003c/p>\u003c/blockquote>\n\u003cp>\u003c/p>\n\u003cp>The eventual demand could further drive down costs. But for the technology to truly succeed in making a dent in international climate recovery goals, it will require widespread adoption, according to Klaus Lackner, director at the Center for Negative Carbon Emissions at Arizona State University.\u003c/p>\n\u003cdiv class=\"parbase smartbody section text\">\n\u003cp>“We will need a trillion-dollar industry to [keep warming below 2 degrees C]. That seems like a lot, but today’s airline industry is larger,” Lackner \u003ca href=\"https://news.nationalgeographic.com/2018/06/carbon-engineering-liquid-fuel-carbon-capture-neutral-science/\" target=\"_blank\" rel=\"noopener\">told\u003c/a> National Geographic.\u003c/p>\n\u003cp>The Economist magazine \u003ca href=\"https://www.economist.com/science-and-technology/2018/06/09/extracting-carbon-dioxide-from-the-air-is-possible.-but-at-what-cost\" target=\"_blank\" rel=\"noopener\">reports\u003c/a> that the founders of Carbon Engineering want to eventually license their technology to fuel manufacturers. They hope to begin construction of their first commercial plant before the end of the year.\u003c/p>\n\u003c/div>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>Scientists and engineers have been underscoring for some time the need for carbon-capture technologies to help reverse the course of climate change. A solution of last resort, it relies on technology to strip the atmosphere of the most prevalent greenhouse gas — a process referred to as “direct air capture.”\u003c/p>\n\u003cp>From \u003ca href=\"https://news.nationalgeographic.com/2018/06/carbon-engineering-liquid-fuel-carbon-capture-neutral-science/\" target=\"_blank\" rel=\"noopener\">National Geographic:\u003c/a>\u003c/p>\n\u003cblockquote>\u003cp>Keeping global warming to less than 2 degrees C (the international target to avoid the most dangerous impacts) will likely require \u003ca href=\"https://www.nature.com/articles/d41586-018-02184-x\">“negative emissions”\u003c/a>—some way of taking lots of CO2 out of the atmosphere and storing it permanently, according to the Intergovernmental Panel on Climate Change (IPCC).\u003c/p>\u003c/blockquote>\n\u003cp>Until now, the concept has remained elusive due to the exorbitant costs involved and few takers. But one Canadian company, \u003ca href=\"http://carbonengineering.com/\" target=\"_blank\" rel=\"noopener\">Carbon Engineering\u003c/a>, has been running a pilot facility since 2015 and says it has successfully developed a cost-effective technology for DAC.\u003c/p>\n\u003cp>National Geographic called it an “engineering breakthrough.” The founders recently published a paper detailing the costs of the ambitious project in the\u003ca href=\"https://www.cell.com/joule/home\"> journal Joule\u003c/a>.\u003c/p>\n\u003cp>“Our paper shows the costs and engineering for a full-scale plant that could capture one million tons of CO2 a year,” \u003ca href=\"https://www.seas.harvard.edu/directory/dkeith\">David Keith\u003c/a>, a physicist at Harvard University and founder of Carbon Engineering, told National Geographic.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>The quest for direct capture has been frought with failure. Last year, a Swiss company called Climeworks launched a DAC pilot facility. The plant contains massive fans that blow air into a solution that contains a carbon-capturing chemical.\u003c/p>\n\u003cp>But the American Physical Society found that the procedure would likely cost about $600 per metric ton of captured CO\u003csub>2\u003c/sub>. With our addiction to fossil fuel contributing \u003ca href=\"https://news.nationalgeographic.com/2017/11/climate-change-carbon-emissions-rising-environment/?beta=true\">close to 40 billion metric tons of CO2 a year,\u003c/a> which doesn’t “pencil.”\u003c/p>\n\u003cp>Similarly, the technology developed by Carbon Engineering works by capturing the CO\u003csub>2\u003c/sub> in a solution that reacts with the carbon and converts it into a solid — and at lower cost. From the journal \u003ca href=\"https://www.nature.com/articles/d41586-018-05357-w\" target=\"_blank\" rel=\"noopener\">Nature\u003c/a>\u003cem>:\u003c/em>\u003c/p>\n\u003cblockquote>\u003cp>Carbon Engineering’s design blows air through towers that contain a solution of potassium hydroxide, which reacts with CO2 to form potassium carbonate. The result, after further processing, is a calcium carbonate pellet that can be heated to release the CO2. That CO2 could then be pressurized, put into a pipeline and disposed of underground, but the company is planning instead to use the gas to make synthetic, low-carbon fuels. Keith says that the company can produce these at a cost of about $1 per litre. When Carbon Engineering configured the air-capture plant for this purpose, they were able to bring costs down to as low as $94 per tonne of CO2.\u003c/p>\u003c/blockquote>\n\u003cp>Keith and his team used their findings to project the costs of an actual commercial plant with the same technology. They claim their \u003ca href=\"https://www.cell.com/joule/fulltext/S2542-4351(18)30225-3\" target=\"_blank\" rel=\"noopener\">technology can capture CO\u003csub>2\u003c/sub> for between $94 and $232 per metric ton\u003c/a>.\u003c/p>\n\u003cp>“This isn’t going to save the world from the impacts of climate change, but it’s going to be a big step on the path to a low-carbon economy,” \u003ca href=\"https://www.seas.harvard.edu/directory/dkeith\">Keith\u003c/a> told National Geographic.\u003c/p>\n\u003cp>The company uses a separate pilot project to convert the captured carbon into liquid fuels, including gasoline. From \u003ca href=\"http://www.sciencemag.org/news/2018/06/cost-plunges-capturing-carbon-dioxide-air\" target=\"_blank\" rel=\"noopener\">Science Magazine\u003c/a>:\u003c/p>\n\u003cblockquote>\u003cp>[B]ecause the process recycles carbon from the air, it would constitute a low-carbon fuel, something that places such as California are increasingly requiring in their fuel mixes, and which command a premium price.\u003c/p>\u003c/blockquote>\n\u003cp>\u003c/p>\n\u003cp>The eventual demand could further drive down costs. But for the technology to truly succeed in making a dent in international climate recovery goals, it will require widespread adoption, according to Klaus Lackner, director at the Center for Negative Carbon Emissions at Arizona State University.\u003c/p>\n\u003cdiv class=\"parbase smartbody section text\">\n\u003cp>“We will need a trillion-dollar industry to [keep warming below 2 degrees C]. That seems like a lot, but today’s airline industry is larger,” Lackner \u003ca href=\"https://news.nationalgeographic.com/2018/06/carbon-engineering-liquid-fuel-carbon-capture-neutral-science/\" target=\"_blank\" rel=\"noopener\">told\u003c/a> National Geographic.\u003c/p>\n\u003cp>The Economist magazine \u003ca href=\"https://www.economist.com/science-and-technology/2018/06/09/extracting-carbon-dioxide-from-the-air-is-possible.-but-at-what-cost\" target=\"_blank\" rel=\"noopener\">reports\u003c/a> that the founders of Carbon Engineering want to eventually license their technology to fuel manufacturers. They hope to begin construction of their first commercial plant before the end of the year.\u003c/p>\n\u003c/div>\n\n\u003c/div>\u003c/p>",
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"content": "\u003cp>Southern California agencies are field-testing equipment intended to enable helicopters to more quickly fill with water while battling wildfires.[contextly_sidebar id=”hOTJzcw3rv7xb5EzqaplZSRcT7JPe1ZD”]\u003c/p>\n\u003cp>Anaheim Fire & Rescue, the Orange County Fire Authority and OC Parks demonstrated the Remotely Activated Snorkel Site technology on Monday.\u003c/p>\n\u003cp>Snorkels are hoses that allow hovering helicopters to suck loads of water out of natural and man-made sources.\u003c/p>\n\u003cp>The experimental system involves strategically placing portable open-top tanks or permanent basins in the environment and connecting them to municipal water sources.\u003c/p>\n\u003cp>A helicopter pilot uses a radio signal to activate valves and fill a basin near a fire, reducing the need for ground crews and cutting the time spent flying to load up with more water.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\u003cp>\u003c/p>\n",
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"title": "Dozens of Water Systems Consolidate in California’s Farming Heartland",
"headTitle": "Dozens of Water Systems Consolidate in California’s Farming Heartland | KQED",
"content": "\u003cp>Joaquin Valley, one of the most productive farming regions in the nation, an estimated 150,000 people are stuck living with contaminated drinking water. When they open a tap to fill a cooking pot or take a shower, the water that gushes out is contaminated with nitrates, hexavalent chromium, arsenic and other nasties from polluted wells.[contextly_sidebar id=”BXxHEiwGfcQkkmUN7w7VU8pQHE73VUWT”]\u003c/p>\n\u003cp>\u003cspan class=\"s1\">The good news: Help is available to many of these small community water systems, provided they can merge with a neighboring utility that has clean water.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">Estimating how many such mergers are under way is difficult, because they are at different stages and some may not have reached the attention of state regulators yet. A \u003ca class=\"preview-link\" href=\"http://innovation.luskin.ucla.edu/content/adopting-county-policies-which-limit-public-water-system-sprawl-and-promote-small-system-con\" target=\"_blank\" rel=\"noopener\">\u003cspan class=\"s2\">University of California, Los Angeles study\u003c/span>\u003c/a> released last year estimated 32 mergers are in progress. Camille Pannu, director of the Water Justice Center at the University of California, Davis, said there are probably more than 50 mergers in the works in the San Joaquin Valley alone. \u003c/span>\u003c/p>\n\u003cp>Whatever the number, the process can be expensive and laborious, despite state laws meant to ease the way.\u003c/p>\n\u003cp>\u003cspan class=\"s1\">“It’s definitely a multiyear – often many-year – process,” said Nell Green Nylen, a senior research fellow at the Wheeler Water Institute at \u003cspan class=\"caps\">U.C.\u003c/span> Davis. “A big part of it is funding. And there can be a number of different agencies at different levels that need to be involved.”\u003c/span>\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>\u003cspan class=\"s1\">Green Nylen is coauthor of a \u003ca class=\"preview-link\" href=\"https://www.law.berkeley.edu/research/clee/research/wheeler/learning-from-consolidations/\" target=\"_blank\" rel=\"noopener\">\u003cspan class=\"s2\">new report\u003c/span>\u003c/a> summarizing the challenges of water system consolidation. They range from financing problems to a lack of basic data needed to understand the water-quality problems that need solving.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">There are legal and bureaucratic challenges, as well. For instance, in the unincorporated town of Tooleville in Tulare County, groundwater wells are contaminated by hexavalent chromium, also known as chromium-6 (the chemical made famous by the 2000 film “Erin Brockovich”). The town of fewer than 400 people has been trying to merge its tiny mutual water company with the municipal water system in the neighboring city of Exeter, which has more than 10,000 residents.[contextly_sidebar id=”5x6EMoTNwScXLen0hWQSc4sC4m8oo3uH”]\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">“We can’t cook with the water. We can’t drink it,” said Maria Olivera, a board member of the Tooleville water system and a resident of the town since 1974. “We really need help. Everybody is hoping it will be solved.”\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">An agreement for the merger finally appears close at hand. But now a financing problem has emerged. \u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">The state’s water-quality standard for hexavalent chromium was struck down by a May 2017 court ruling. The lawsuit was filed by the California Manufacturers and Technology Association and the Solano County Taxpayers Association. The court agreed with the plaintiffs that the state failed to investigate whether compliance with the standard is economically feasible.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">As a result, the State Water Resources Control Board was forced to withdraw its water-quality standard for hexavalent chromium while it works on revisions. With no standard in place, water systems trying to solve hexavalent chromium problems are not eligible for state grant funding. Which means Tooleville must seek another source of money to pay for the construction to connect with Exeter’s system.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">In the meantime, the \u003c/span>state is providing Tooleville with bottled water for drinking and cooking. The tainted well water is still used for cleaning, irrigating and everything else that people need water for. But recently the pump burned out at one of the town’s two wells. If the same should happen at Tooleville’s other well, the town’s water emergency will worsen considerably.\u003c/p>\n\u003cp>\u003cspan class=\"s1\">“We don’t have any money to buy a pump and then to hire a person to manage it, and then to pay the electricity bill for the water pumps,” Olivera said. “We are in a big problem right now because there’s no money.”[contextly_sidebar id=”xHtF69SRn5Ztvx5jGx3yCqAMHCppO19V”]\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">A state law passed in 2015, \u003ca class=\"preview-link\" href=\"https://www.waterboards.ca.gov/drinking_water/programs/compliance/\" target=\"_blank\" rel=\"noopener\">\u003cspan class=\"s2\">Senate Bill 88\u003c/span>\u003c/a>, authorized the State Water Resources Control Board to require water system consolidations to fix water quality or reliability problems. Since the law passed, the water board has notified 25 water agencies they must consolidate – all in the San Joaquin Valley.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">Fortunately, the construction required to physically connect one water agency with another may be fairly easy in many cases. A \u003cspan class=\"caps\">U.C.\u003c/span> Davis \u003ca class=\"preview-link\" href=\"https://regionalchange.ucdavis.edu/publication/water-justice\" target=\"_blank\" rel=\"noopener\">\u003cspan class=\"s2\">study\u003c/span>\u003c/a> released in February found that 66 percent of disadvantaged communities in the San Joaquin Valley are within 500ft of another water utility that meets drinking water standards. For the rest, the distance is 3 or more miles, which could make a connection too expensive.\u003c/span>\u003c/p>\n\u003cdiv id=\"attachment_132038\" class=\"wp-caption alignnone\">\n\u003cp>\u003cimg loading=\"lazy\" decoding=\"async\" class=\"size-full wp-image-132038\" src=\"https://newsdeeply.imgix.net/20180607135056/EastPorterville21.jpg\" alt=\"\" width=\"1027\" height=\"574\">\u003c/p>\n\u003cp class=\"wp-caption-text\">Peter Aranzazu, left, and Benny Zurita install new water lines in East Porterville, Calif., so homes can connect to a new water supply provided by the city of Porterville. East Porterville lived with groundwater problems for years until the connection was finally made in 2016. (Florence Low, California Department of Water Resources)\u003c/p>\n\u003c/div>\n\u003cp>\u003cspan class=\"s1\">Not all water system mergers involve full consolidation. Sometimes, water agencies might want to work together without merging completely. Neighboring water agencies might want to build an intertie, for example, in order to share water resources. But Green Nylen said state assistance programs tend to be available only for full mergers – another weakness in the regulatory process.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">One possibility of a partial merger is unfolding in Sacramento County, where the San Juan Water District and Sacramento Suburban Water District have talked for several years about combining resources.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">San Juan is primarily a surface-water agency, with water rights in the American River. Sacramento Suburban primarily relies on groundwater. Combined, the agencies serve around 340,000 people.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">If the two could agree to work together and build the necessary plumbing connections, San Juan could use Sacramento Suburban’s groundwater during drought years when American River water might be in short supply. Then, in wet years, it could use American River water to recharge Sacramento Suburban’s aquifers.[contextly_sidebar id=”dzHxoRfmqkHnJJ7XbCTWkFBX7rliqlAf”]\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">“On the face of it, it would seem to give us more opportunity to optimize use of our water supply,” said Paul Helliker, general manager of San Juan Water District. “This is particularly important as we look at what the future holds with climate change and changing regulatory requirements.”\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">In 2015, board members of the two agencies held a joint meeting to discuss moving ahead with some kind of cooperating agreement. It could range from a full merger to simply collaborating on joint projects. San Juan’s board of directors voted unanimously in favor of proceeding with further negotiations. But the Sacramento Suburban board voted 3-2 against it.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">The two agencies recently restarted discussions, Helliker said. Each board has formed a two-member subcommittee for more joint meetings to discuss what form of cooperation to pursue.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">In any merger, some of the trickiest issues do not involve money or laws at all, Green Nylen said. Rather, the sticky issues are about who will be in charge, which employees will be retained and deciding whose operating rules are best.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">Also, ratepayers often have a variety of concerns. They may fear losing control of “their” water supply. And they may worry about rate increases under a newly consolidated water utility.\u003c/span>\u003c/p>\n\u003cp class=\"fin\">\u003cspan class=\"s1\">“The current round of consolidations has focused on systems where water treatment is just not affordable or financially sustainable unless systems merge,” said Pannu at \u003cspan class=\"caps\">U.C.\u003c/span> Davis. “My understanding is that the state is triaging cases based on the public health impact.”\u003c/span>\u003c/p>\n\u003cp>[ad floatright]\u003c/p>\n\u003cp>\u003ci>\u003cspan style=\"font-weight: 400\">This article originally appeared on \u003c/span>\u003c/i>\u003ca href=\"https://www.newsdeeply.com/water/articles/2018/06/11/dozens-of-water-systems-consolidate-in-californias-farming-heartland\" target=\"_blank\" rel=\"noopener\">\u003ci>\u003cspan style=\"font-weight: 400\">Water Deeply\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\">, and you can find it \u003c/span>\u003c/i>\u003ca href=\"https://mail.kqed.org/owa/redir.aspx?C=9e4bb0e1a7d74f24ba4684ef2533053d&URL=https%3a%2f%2fwww.newsdeeply.com%2fwater%2farticles%2f2016%2f07%2f07%2fnine-experts-to-watch-on-california-water-policy\">\u003ci>\u003cspan style=\"font-weight: 400\">here\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\">. For important news about the California drought, you can \u003c/span>\u003c/i>\u003ca href=\"http://waterdeeply.us5.list-manage.com/subscribe?u=8b78e9a34ff7443ec1e8c62c6&id=2947becb78\">\u003ci>\u003cspan style=\"font-weight: 400\">sign up\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\"> to the Water Deeply email list.\u003c/span>\u003c/i>\u003c/p>\n\n",
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"excerpt": "Many small community water systems in California’s San Joaquin Valley suffer from polluted wells and financial challenges. To fix these problems, some are moving to connect with a neighboring water system. It’s not an easy process.",
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"description": "Many small community water systems in California’s San Joaquin Valley suffer from polluted wells and financial challenges. To fix these problems, some are moving to connect with a neighboring water system. It’s not an easy process.",
"title": "Dozens of Water Systems Consolidate in California’s Farming Heartland | KQED",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>Joaquin Valley, one of the most productive farming regions in the nation, an estimated 150,000 people are stuck living with contaminated drinking water. When they open a tap to fill a cooking pot or take a shower, the water that gushes out is contaminated with nitrates, hexavalent chromium, arsenic and other nasties from polluted wells.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">The good news: Help is available to many of these small community water systems, provided they can merge with a neighboring utility that has clean water.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">Estimating how many such mergers are under way is difficult, because they are at different stages and some may not have reached the attention of state regulators yet. A \u003ca class=\"preview-link\" href=\"http://innovation.luskin.ucla.edu/content/adopting-county-policies-which-limit-public-water-system-sprawl-and-promote-small-system-con\" target=\"_blank\" rel=\"noopener\">\u003cspan class=\"s2\">University of California, Los Angeles study\u003c/span>\u003c/a> released last year estimated 32 mergers are in progress. Camille Pannu, director of the Water Justice Center at the University of California, Davis, said there are probably more than 50 mergers in the works in the San Joaquin Valley alone. \u003c/span>\u003c/p>\n\u003cp>Whatever the number, the process can be expensive and laborious, despite state laws meant to ease the way.\u003c/p>\n\u003cp>\u003cspan class=\"s1\">“It’s definitely a multiyear – often many-year – process,” said Nell Green Nylen, a senior research fellow at the Wheeler Water Institute at \u003cspan class=\"caps\">U.C.\u003c/span> Davis. “A big part of it is funding. And there can be a number of different agencies at different levels that need to be involved.”\u003c/span>\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">Green Nylen is coauthor of a \u003ca class=\"preview-link\" href=\"https://www.law.berkeley.edu/research/clee/research/wheeler/learning-from-consolidations/\" target=\"_blank\" rel=\"noopener\">\u003cspan class=\"s2\">new report\u003c/span>\u003c/a> summarizing the challenges of water system consolidation. They range from financing problems to a lack of basic data needed to understand the water-quality problems that need solving.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">There are legal and bureaucratic challenges, as well. For instance, in the unincorporated town of Tooleville in Tulare County, groundwater wells are contaminated by hexavalent chromium, also known as chromium-6 (the chemical made famous by the 2000 film “Erin Brockovich”). The town of fewer than 400 people has been trying to merge its tiny mutual water company with the municipal water system in the neighboring city of Exeter, which has more than 10,000 residents.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">“We can’t cook with the water. We can’t drink it,” said Maria Olivera, a board member of the Tooleville water system and a resident of the town since 1974. “We really need help. Everybody is hoping it will be solved.”\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">An agreement for the merger finally appears close at hand. But now a financing problem has emerged. \u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">The state’s water-quality standard for hexavalent chromium was struck down by a May 2017 court ruling. The lawsuit was filed by the California Manufacturers and Technology Association and the Solano County Taxpayers Association. The court agreed with the plaintiffs that the state failed to investigate whether compliance with the standard is economically feasible.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">As a result, the State Water Resources Control Board was forced to withdraw its water-quality standard for hexavalent chromium while it works on revisions. With no standard in place, water systems trying to solve hexavalent chromium problems are not eligible for state grant funding. Which means Tooleville must seek another source of money to pay for the construction to connect with Exeter’s system.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">In the meantime, the \u003c/span>state is providing Tooleville with bottled water for drinking and cooking. The tainted well water is still used for cleaning, irrigating and everything else that people need water for. But recently the pump burned out at one of the town’s two wells. If the same should happen at Tooleville’s other well, the town’s water emergency will worsen considerably.\u003c/p>\n\u003cp>\u003cspan class=\"s1\">“We don’t have any money to buy a pump and then to hire a person to manage it, and then to pay the electricity bill for the water pumps,” Olivera said. “We are in a big problem right now because there’s no money.”\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">A state law passed in 2015, \u003ca class=\"preview-link\" href=\"https://www.waterboards.ca.gov/drinking_water/programs/compliance/\" target=\"_blank\" rel=\"noopener\">\u003cspan class=\"s2\">Senate Bill 88\u003c/span>\u003c/a>, authorized the State Water Resources Control Board to require water system consolidations to fix water quality or reliability problems. Since the law passed, the water board has notified 25 water agencies they must consolidate – all in the San Joaquin Valley.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">Fortunately, the construction required to physically connect one water agency with another may be fairly easy in many cases. A \u003cspan class=\"caps\">U.C.\u003c/span> Davis \u003ca class=\"preview-link\" href=\"https://regionalchange.ucdavis.edu/publication/water-justice\" target=\"_blank\" rel=\"noopener\">\u003cspan class=\"s2\">study\u003c/span>\u003c/a> released in February found that 66 percent of disadvantaged communities in the San Joaquin Valley are within 500ft of another water utility that meets drinking water standards. For the rest, the distance is 3 or more miles, which could make a connection too expensive.\u003c/span>\u003c/p>\n\u003cdiv id=\"attachment_132038\" class=\"wp-caption alignnone\">\n\u003cp>\u003cimg loading=\"lazy\" decoding=\"async\" class=\"size-full wp-image-132038\" src=\"https://newsdeeply.imgix.net/20180607135056/EastPorterville21.jpg\" alt=\"\" width=\"1027\" height=\"574\">\u003c/p>\n\u003cp class=\"wp-caption-text\">Peter Aranzazu, left, and Benny Zurita install new water lines in East Porterville, Calif., so homes can connect to a new water supply provided by the city of Porterville. East Porterville lived with groundwater problems for years until the connection was finally made in 2016. (Florence Low, California Department of Water Resources)\u003c/p>\n\u003c/div>\n\u003cp>\u003cspan class=\"s1\">Not all water system mergers involve full consolidation. Sometimes, water agencies might want to work together without merging completely. Neighboring water agencies might want to build an intertie, for example, in order to share water resources. But Green Nylen said state assistance programs tend to be available only for full mergers – another weakness in the regulatory process.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">One possibility of a partial merger is unfolding in Sacramento County, where the San Juan Water District and Sacramento Suburban Water District have talked for several years about combining resources.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">San Juan is primarily a surface-water agency, with water rights in the American River. Sacramento Suburban primarily relies on groundwater. Combined, the agencies serve around 340,000 people.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">If the two could agree to work together and build the necessary plumbing connections, San Juan could use Sacramento Suburban’s groundwater during drought years when American River water might be in short supply. Then, in wet years, it could use American River water to recharge Sacramento Suburban’s aquifers.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">“On the face of it, it would seem to give us more opportunity to optimize use of our water supply,” said Paul Helliker, general manager of San Juan Water District. “This is particularly important as we look at what the future holds with climate change and changing regulatory requirements.”\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">In 2015, board members of the two agencies held a joint meeting to discuss moving ahead with some kind of cooperating agreement. It could range from a full merger to simply collaborating on joint projects. San Juan’s board of directors voted unanimously in favor of proceeding with further negotiations. But the Sacramento Suburban board voted 3-2 against it.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">The two agencies recently restarted discussions, Helliker said. Each board has formed a two-member subcommittee for more joint meetings to discuss what form of cooperation to pursue.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">In any merger, some of the trickiest issues do not involve money or laws at all, Green Nylen said. Rather, the sticky issues are about who will be in charge, which employees will be retained and deciding whose operating rules are best.\u003c/span>\u003c/p>\n\u003cp>\u003cspan class=\"s1\">Also, ratepayers often have a variety of concerns. They may fear losing control of “their” water supply. And they may worry about rate increases under a newly consolidated water utility.\u003c/span>\u003c/p>\n\u003cp class=\"fin\">\u003cspan class=\"s1\">“The current round of consolidations has focused on systems where water treatment is just not affordable or financially sustainable unless systems merge,” said Pannu at \u003cspan class=\"caps\">U.C.\u003c/span> Davis. “My understanding is that the state is triaging cases based on the public health impact.”\u003c/span>\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>\u003ci>\u003cspan style=\"font-weight: 400\">This article originally appeared on \u003c/span>\u003c/i>\u003ca href=\"https://www.newsdeeply.com/water/articles/2018/06/11/dozens-of-water-systems-consolidate-in-californias-farming-heartland\" target=\"_blank\" rel=\"noopener\">\u003ci>\u003cspan style=\"font-weight: 400\">Water Deeply\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\">, and you can find it \u003c/span>\u003c/i>\u003ca href=\"https://mail.kqed.org/owa/redir.aspx?C=9e4bb0e1a7d74f24ba4684ef2533053d&URL=https%3a%2f%2fwww.newsdeeply.com%2fwater%2farticles%2f2016%2f07%2f07%2fnine-experts-to-watch-on-california-water-policy\">\u003ci>\u003cspan style=\"font-weight: 400\">here\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\">. For important news about the California drought, you can \u003c/span>\u003c/i>\u003ca href=\"http://waterdeeply.us5.list-manage.com/subscribe?u=8b78e9a34ff7443ec1e8c62c6&id=2947becb78\">\u003ci>\u003cspan style=\"font-weight: 400\">sign up\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\"> to the Water Deeply email list.\u003c/span>\u003c/i>\u003c/p>\n\n\u003c/div>\u003c/p>",
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"title": "In Berry Country, California Farmers Get Innovative to Save Groundwater",
"headTitle": "In Berry Country, California Farmers Get Innovative to Save Groundwater | KQED",
"content": "\u003cp>Driscoll’s Berries and its farmers in Ventura County are working to save water and tackle sustainable management of the local groundwater, writes Kirsten James of Ceres.[contextly_sidebar id=”TwM9Y8AIMIDbsQECfmESK79c9TZATwKs”]\u003c/p>\n\u003cp>Red and purple berries ripening in vast fields. The sun shining in a blue sky as workers in broad-brimmed hats pluck the best berries from the strawberry tufts and blackberry vines.\u003c/p>\n\u003cp>The bucolic scene in Ventura County along the Southern California coast belies the exacting science and sharp business decisions involved in the farming underway here, where many grow for Driscoll’s Berries and water availability can make or break a season.\u003c/p>\n\u003cp>Driscoll’s and its farmers don’t leave much to chance, having weathered drought conditions through much of this decade. And now they’re working on the next big challenge – implementing the Sustainable Groundwater Management Act (SGMA) and working to recharge the aquifer through a water recycling program.\u003c/p>\n\u003cp>Among a variety of studies and data collection efforts to inform better farming techniques, Driscoll’s research station located among the fields looks for the best methods for irrigating and careful use of water, with an eye on adapting to climate impacts.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>For instance, given the increased evaporation of surface water in a warming climate, some area farmers now use micro sprinklers – tiny, precise sprinklers that deliver water to a part of the plant near its roots to establish transplants. Other farmers are moving berry growing to substrate farming or tabletop planters in controlled settings such as high tunnel greenhouses.[contextly_sidebar id=”OPDypQt5RhslKMXrziqvA81qHMOBeCWe”]\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>On a recent visit to Driscoll’s research station, I listened as James duBois, senior manager of Global Environmental Impact for Driscoll’s, explained how substrate farming has environmental and water-saving benefits. Substrate farming reduces water needs by 30 percent and often allows for lower pesticide and fertilizer use, he said. I was visiting because Driscoll’s is a member of Ceres’ \u003ca href=\"https://www.ceres.org/campaigns/connect-the-drops\" target=\"_blank\" rel=\"noopener\">Connect the Drops campaign\u003c/a>, a group of 35 companies that advocate for smart water management policies in California.\u003c/p>\n\u003cdiv id=\"attachment_131960\" class=\"wp-caption aligncenter\">\n\u003cp>\u003cspan style=\"color: #000000\"> Water has long been top-of-mind for Driscoll’s and Ventura County growers. In fact, area farmers established a groundwater management plan for the Oxnard Plain in the early 1990s, long before SGMA was passed in 2014.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">Still, during the recent drought that left many farmers in Ventura and around the state with reduced water supplies, they realized the Oxnard basin was still in severe overdraft and more needed to be done. Many in the community, including Driscoll’s and its largest grower in the area, Reiter Affiliated Companies, welcomed SGMA.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">“Water management within the Oxnard basin is very complex. This is one of the reasons we supported SGMA,” duBois said, adding that because local users have the most knowledge of a water basin, Driscoll’s and its growers particularly “supported the local control and consensus-building spirit of SGMA.”\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">With SGMA guidelines, the farmers and communities in the region started on the path to formalize and fortify their groundwater management plan. The Oxnard Plain and Pleasant Valley Agricultural Overliers Group, of which duBois is an advisory member, has developed a draft proposal that calls for allocations based on growers’ historical needs over the past three years, as well as replenishment of the groundwater basin and the development of lower-impact, recycled water supplies. They hope the proposal will be approved by the governing body for SGMA implementation, the Groundwater Sustainability Agency, in the near future.[contextly_sidebar id=”DB3L5XESX6QaXCztOlOlpBhl0q2nBkC4″]\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">“We want the allocation to be real and relevant,” duBois said. In accordance with SGMA – and the spirit of sharing in the community – they also hope their groundwater management plan will address the environmental and water scarcity issues that could threaten the way of life in this region.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">And the proposed plan allows water districts to enter water transfer and pumping agreements with each other. DuBois estimates there are currently eight to 10 such transfer transactions in the works in Ventura County at any one time, and this could increase under the new proposal.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">\u003cstrong>Beyond Managing Water\u003c/strong>\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">The growers realize, however, that allocating and trading finite amounts of water from an overdrafted groundwater basin isn’t going to solve their water shortage problems.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">So the Oxnard groundwater management plan integrates groundwater allocation with a plan to develop “new” water resources through recycling water. Oxnard’s water recycling plan was christened the Oxnard Groundwater Recovery Enhancement and Treatment program (GREAT). The system includes tertiary-level wastewater treatment through an advanced water-purification facility and then groundwater injection to help replenish the aquifers.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">The GREAT plan calls for making recycled water available for both groundwater replenishment and irrigating agricultural fields. Although the program has had hiccups, farmers are on board and already using this water.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">The efforts around management in the Oxnard groundwater basin appear to be shaping up as a very detailed and advanced example of how California’s groundwater sustainability agencies are developing long-term sustainability plans.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">Agriculture is a mainstay of the economy here and careful management of water resources through SGMA implementation is key to keeping it this way, while ensuring the needs of the community and environment are maintained.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">Other groundwater sustainability agencies could pull ideas and strategies from the Oxnard Basin’s playbook – not only the content in the plan but also the lessons learned on how to reach this stage successfully.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">\u003ci>\u003cspan style=\"font-weight: 400\">This article originally appeared on \u003c/span>\u003c/i>\u003ca style=\"color: #000000\" href=\"https://mail.kqed.org/owa/redir.aspx?C=9e4bb0e1a7d74f24ba4684ef2533053d&URL=https%3a%2f%2fwww.newsdeeply.com%2fwater\">\u003ci>\u003cspan style=\"font-weight: 400\">Water Deeply\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\">, and you can find it \u003c/span>\u003c/i>\u003ca style=\"color: #000000\" href=\"https://www.newsdeeply.com/water/community/2018/06/07/in-berry-country-california-farmers-get-innovative-to-save-groundwater\" target=\"_blank\" rel=\"noopener\">\u003ci>\u003cspan style=\"font-weight: 400\">here\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\">. For important news about the California drought, you can \u003c/span>\u003c/i>\u003ca style=\"color: #000000\" href=\"http://waterdeeply.us5.list-manage.com/subscribe?u=8b78e9a34ff7443ec1e8c62c6&id=2947becb78\">\u003ci>\u003cspan style=\"font-weight: 400\">sign up\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\"> to the Water Deeply email list. The views expressed in this article belong to the author and do not necessarily reflect the editorial policy of Water Deeply.\u003c/span>\u003c/i>\u003c/span>\u003c/p>\n\u003c/div>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>Driscoll’s Berries and its farmers in Ventura County are working to save water and tackle sustainable management of the local groundwater, writes Kirsten James of Ceres.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>Red and purple berries ripening in vast fields. The sun shining in a blue sky as workers in broad-brimmed hats pluck the best berries from the strawberry tufts and blackberry vines.\u003c/p>\n\u003cp>The bucolic scene in Ventura County along the Southern California coast belies the exacting science and sharp business decisions involved in the farming underway here, where many grow for Driscoll’s Berries and water availability can make or break a season.\u003c/p>\n\u003cp>Driscoll’s and its farmers don’t leave much to chance, having weathered drought conditions through much of this decade. And now they’re working on the next big challenge – implementing the Sustainable Groundwater Management Act (SGMA) and working to recharge the aquifer through a water recycling program.\u003c/p>\n\u003cp>Among a variety of studies and data collection efforts to inform better farming techniques, Driscoll’s research station located among the fields looks for the best methods for irrigating and careful use of water, with an eye on adapting to climate impacts.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>For instance, given the increased evaporation of surface water in a warming climate, some area farmers now use micro sprinklers – tiny, precise sprinklers that deliver water to a part of the plant near its roots to establish transplants. Other farmers are moving berry growing to substrate farming or tabletop planters in controlled settings such as high tunnel greenhouses.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>On a recent visit to Driscoll’s research station, I listened as James duBois, senior manager of Global Environmental Impact for Driscoll’s, explained how substrate farming has environmental and water-saving benefits. Substrate farming reduces water needs by 30 percent and often allows for lower pesticide and fertilizer use, he said. I was visiting because Driscoll’s is a member of Ceres’ \u003ca href=\"https://www.ceres.org/campaigns/connect-the-drops\" target=\"_blank\" rel=\"noopener\">Connect the Drops campaign\u003c/a>, a group of 35 companies that advocate for smart water management policies in California.\u003c/p>\n\u003cdiv id=\"attachment_131960\" class=\"wp-caption aligncenter\">\n\u003cp>\u003cspan style=\"color: #000000\"> Water has long been top-of-mind for Driscoll’s and Ventura County growers. In fact, area farmers established a groundwater management plan for the Oxnard Plain in the early 1990s, long before SGMA was passed in 2014.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">Still, during the recent drought that left many farmers in Ventura and around the state with reduced water supplies, they realized the Oxnard basin was still in severe overdraft and more needed to be done. Many in the community, including Driscoll’s and its largest grower in the area, Reiter Affiliated Companies, welcomed SGMA.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">“Water management within the Oxnard basin is very complex. This is one of the reasons we supported SGMA,” duBois said, adding that because local users have the most knowledge of a water basin, Driscoll’s and its growers particularly “supported the local control and consensus-building spirit of SGMA.”\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">With SGMA guidelines, the farmers and communities in the region started on the path to formalize and fortify their groundwater management plan. The Oxnard Plain and Pleasant Valley Agricultural Overliers Group, of which duBois is an advisory member, has developed a draft proposal that calls for allocations based on growers’ historical needs over the past three years, as well as replenishment of the groundwater basin and the development of lower-impact, recycled water supplies. They hope the proposal will be approved by the governing body for SGMA implementation, the Groundwater Sustainability Agency, in the near future.\u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">“We want the allocation to be real and relevant,” duBois said. In accordance with SGMA – and the spirit of sharing in the community – they also hope their groundwater management plan will address the environmental and water scarcity issues that could threaten the way of life in this region.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">And the proposed plan allows water districts to enter water transfer and pumping agreements with each other. DuBois estimates there are currently eight to 10 such transfer transactions in the works in Ventura County at any one time, and this could increase under the new proposal.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">\u003cstrong>Beyond Managing Water\u003c/strong>\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">The growers realize, however, that allocating and trading finite amounts of water from an overdrafted groundwater basin isn’t going to solve their water shortage problems.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">So the Oxnard groundwater management plan integrates groundwater allocation with a plan to develop “new” water resources through recycling water. Oxnard’s water recycling plan was christened the Oxnard Groundwater Recovery Enhancement and Treatment program (GREAT). The system includes tertiary-level wastewater treatment through an advanced water-purification facility and then groundwater injection to help replenish the aquifers.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">The GREAT plan calls for making recycled water available for both groundwater replenishment and irrigating agricultural fields. Although the program has had hiccups, farmers are on board and already using this water.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">The efforts around management in the Oxnard groundwater basin appear to be shaping up as a very detailed and advanced example of how California’s groundwater sustainability agencies are developing long-term sustainability plans.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">Agriculture is a mainstay of the economy here and careful management of water resources through SGMA implementation is key to keeping it this way, while ensuring the needs of the community and environment are maintained.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">Other groundwater sustainability agencies could pull ideas and strategies from the Oxnard Basin’s playbook – not only the content in the plan but also the lessons learned on how to reach this stage successfully.\u003c/span>\u003c/p>\n\u003cp>\u003cspan style=\"color: #000000\">\u003ci>\u003cspan style=\"font-weight: 400\">This article originally appeared on \u003c/span>\u003c/i>\u003ca style=\"color: #000000\" href=\"https://mail.kqed.org/owa/redir.aspx?C=9e4bb0e1a7d74f24ba4684ef2533053d&URL=https%3a%2f%2fwww.newsdeeply.com%2fwater\">\u003ci>\u003cspan style=\"font-weight: 400\">Water Deeply\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\">, and you can find it \u003c/span>\u003c/i>\u003ca style=\"color: #000000\" href=\"https://www.newsdeeply.com/water/community/2018/06/07/in-berry-country-california-farmers-get-innovative-to-save-groundwater\" target=\"_blank\" rel=\"noopener\">\u003ci>\u003cspan style=\"font-weight: 400\">here\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\">. For important news about the California drought, you can \u003c/span>\u003c/i>\u003ca style=\"color: #000000\" href=\"http://waterdeeply.us5.list-manage.com/subscribe?u=8b78e9a34ff7443ec1e8c62c6&id=2947becb78\">\u003ci>\u003cspan style=\"font-weight: 400\">sign up\u003c/span>\u003c/i>\u003c/a>\u003ci>\u003cspan style=\"font-weight: 400\"> to the Water Deeply email list. The views expressed in this article belong to the author and do not necessarily reflect the editorial policy of Water Deeply.\u003c/span>\u003c/i>\u003c/span>\u003c/p>\n\u003c/div>\n\n\u003c/div>\u003c/p>",
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"title": "Report Finds Record-Breaking Coastal Flooding Around the U.S.",
"headTitle": "Report Finds Record-Breaking Coastal Flooding Around the U.S. | KQED",
"content": "\u003cp>\u003ca href=\"http://www.noaa.gov/news/coastal-communities-saw-record-number-of-high-tide-flooding-days-last-year\" target=\"_blank\" rel=\"noopener\">High-tide flooding\u003c/a> driven by climate change is breaking records on all coasts of the United States, occurring at twice the rate from just 30 years ago, according to a new federal \u003ca href=\"https://www.ncdc.noaa.gov/monitoring-content/sotc/national/2018/may/2017_State_of_US_High_Tide_Flooding.pdf\" target=\"_blank\" rel=\"noopener\">report. [contextly_sidebar id=”lcEC3bZenOqJwJnQ5s5KmWNuUYubI0yv”]\u003c/a>\u003c/p>\n\u003cp>And as sea levels rise, coastal flooding will continue to break records over the next few decades at an accelerated rate, according to the \u003ca style=\"color: #41a62a\" href=\"http://www.noaa.gov/\" target=\"_blank\" rel=\"noopener\">National Oceanic and Atmospheric Administration\u003c/a>.\u003c/p>\n\u003cp>“The U.S. average high tide flood frequency is now 50 percent greater since 2000 and 100 percent greater than it was 30 years ago,” the NOAA report said.\u003c/p>\n\u003cp>Several cities faced more than 20 days of coastal flooding over the last year even outside of big storms. The top five cities that saw the highest number of flood days and broke records are Boston; Atlantic City, New Jersey; Sandy Hook, New Jersey; Sabine Pass, Texas; and Galveston, Texas.\u003c/p>\n\u003cp>In California, Sa\u003cspan class=\"highlight selected\">n Die\u003c/span>go established itself as the state’s coastal flooding hotspot with a record‐breaking 13 days of coastal flooding.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>The agency measured rates of high-tide flooding at 98 locations along the U.S. coastline. More than a quarter of the locations tied or broke their previous records, according to the report.\u003c/p>\n\u003cp>“As relative sea level increases, it no longer takes a strong storm or a hurricane to cause coastal high tide flooding,” the report said. “High tide flooding causes frequent road closures, overwhelmed storm drains, and compromised infrastructure.”\u003c/p>\n\u003cp>As noted in recent \u003ca href=\"https://www.kqed.org/science/1924579/like-it-or-not-the-water-is-coming-will-the-bay-area-defend-against-rising-seas-or-embrace-them\" target=\"_blank\" rel=\"noopener\">reports by KQED, \u003c/a>global warming could cause San Francisco Bay to rise 5 feet by 2100:\u003c/p>\n\u003cblockquote>\u003cp>Now the state of California is warning nine Bay Area counties that climate change means the bay is rising faster. Extreme tides, whipped by storms, have become both more frequent and more extreme. California’s latest and best word on sea levels, a report issued last spring, \u003ca href=\"http://www.oceansciencetrust.org/wp-content/uploads/2017/04/OST-Sea-Level-Rising-Report-Final_Amended.pdf\">predicts\u003c/a> that San Francisco Bay could rise from five to 15 times faster this century than the last one.\u003c/p>\u003c/blockquote>\n\u003cp>Despite all this, the NOAA report finds that some cities are ill-prepared for what’s to come. In Boston for instance, a recent city-backed study criticized a plan to protect the city from rising sea levels. From \u003ca href=\"https://insideclimatenews.org/news/06062018/coastal-flooding-data-sea-level-rise-climate-change-noaa-report-high-tide-risk\" target=\"_blank\" rel=\"noopener\">Inside Climate News\u003c/a>:\u003c/p>\n\u003cblockquote>\u003cp>Another proposal envisions a harbor-wide barrier system that would close during major storms and cost billions of dollars. But last week, a city-backed study \u003ca href=\"http://www.wbur.org/news/2018/05/30/boston-harbor-barrier-flooding-umass-study\">recommended against building a barrier\u003c/a>, saying the money would be better spent on smaller-scale measures, such as flood walls or green infrastructure.\u003c/p>\u003c/blockquote>\n\u003cp>And in New York City, a major coastal barrier that was planned for lower Manhattan has run into significant obstacles. Also from \u003ca href=\"https://insideclimatenews.org/news/06062018/coastal-flooding-data-sea-level-rise-climate-change-noaa-report-high-tide-risk\" target=\"_blank\" rel=\"noopener\">Inside Climate News:\u003c/a>\u003c/p>\n\u003cblockquote>\u003cp>New York, which also tied its record of 15 days of tidal flooding, has launched various initiatives…But a signature coastal project that would erect berms and walls to protect lower Manhattan—known as “The Big U”—has \u003ca href=\"https://www.wnyc.org/story/five-years-later-sandy-project-grinding/\">faced delays and been scaled back\u003c/a> due to its high costs.\u003c/p>\u003c/blockquote>\n\u003cp>“Across the whole of the U.S. coastline, we are in dire need of action,” Ben Horton, a Rutgers University researcher,\u003ca href=\"https://www.cbsnews.com/news/high-tide-flooding-in-the-u-s-is-twice-what-it-was-30-years-ago-noaa/\" target=\"_blank\" rel=\"noopener\"> told CBS news.\u003c/a>\u003c/p>\n\u003cblockquote>\u003cp> \u003c/p>\u003c/blockquote>\n\u003cp>The \u003ca href=\"https://www.washingtonpost.com/news/capital-weather-gang/wp/2018/06/06/u-s-coastal-areas-flooded-more-than-ever-in-past-year-due-to-sea-level-rise-and-storms/?noredirect=on&utm_term=.027c47d21364\" target=\"_blank\" rel=\"noopener\">Washington Post\u003c/a> notes that nowhere in the NOAA report is the term “climate change” mentioned, something that has become a hallmark of the Trump administration:\u003c/p>\n\u003cblockquote>\u003cp>Neither the announcement of the high-tide flooding record, the accompanying summary nor the technical report mention the words “climate change,” which scientists widely believe is the underlying cause of sea-level rise and the increasing tides.\u003c/p>\u003c/blockquote>\n\u003cp>\u003c/p>\n\u003cp>But in a conference call this week, report co-author William Sweet of NOAA’s Center for Operational Oceanographic Products and Services, told reporters that a third of sea level rise is currently driven by thermal expansion of ocean water, and two-thirds is now caused by the melting of land-based ice around the world — both processes that are clearly symptoms of global warming.\u003c/p>\n\n",
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"excerpt": "Though you won't find the phrase \"climate change\" in it, a new federal report finds that coastal flooding across the U.S. has doubled in just 30 years.",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>\u003ca href=\"http://www.noaa.gov/news/coastal-communities-saw-record-number-of-high-tide-flooding-days-last-year\" target=\"_blank\" rel=\"noopener\">High-tide flooding\u003c/a> driven by climate change is breaking records on all coasts of the United States, occurring at twice the rate from just 30 years ago, according to a new federal \u003ca href=\"https://www.ncdc.noaa.gov/monitoring-content/sotc/national/2018/may/2017_State_of_US_High_Tide_Flooding.pdf\" target=\"_blank\" rel=\"noopener\">report. \u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/a>\u003c/p>\n\u003cp>And as sea levels rise, coastal flooding will continue to break records over the next few decades at an accelerated rate, according to the \u003ca style=\"color: #41a62a\" href=\"http://www.noaa.gov/\" target=\"_blank\" rel=\"noopener\">National Oceanic and Atmospheric Administration\u003c/a>.\u003c/p>\n\u003cp>“The U.S. average high tide flood frequency is now 50 percent greater since 2000 and 100 percent greater than it was 30 years ago,” the NOAA report said.\u003c/p>\n\u003cp>Several cities faced more than 20 days of coastal flooding over the last year even outside of big storms. The top five cities that saw the highest number of flood days and broke records are Boston; Atlantic City, New Jersey; Sandy Hook, New Jersey; Sabine Pass, Texas; and Galveston, Texas.\u003c/p>\n\u003cp>In California, Sa\u003cspan class=\"highlight selected\">n Die\u003c/span>go established itself as the state’s coastal flooding hotspot with a record‐breaking 13 days of coastal flooding.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>The agency measured rates of high-tide flooding at 98 locations along the U.S. coastline. More than a quarter of the locations tied or broke their previous records, according to the report.\u003c/p>\n\u003cp>“As relative sea level increases, it no longer takes a strong storm or a hurricane to cause coastal high tide flooding,” the report said. “High tide flooding causes frequent road closures, overwhelmed storm drains, and compromised infrastructure.”\u003c/p>\n\u003cp>As noted in recent \u003ca href=\"https://www.kqed.org/science/1924579/like-it-or-not-the-water-is-coming-will-the-bay-area-defend-against-rising-seas-or-embrace-them\" target=\"_blank\" rel=\"noopener\">reports by KQED, \u003c/a>global warming could cause San Francisco Bay to rise 5 feet by 2100:\u003c/p>\n\u003cblockquote>\u003cp>Now the state of California is warning nine Bay Area counties that climate change means the bay is rising faster. Extreme tides, whipped by storms, have become both more frequent and more extreme. California’s latest and best word on sea levels, a report issued last spring, \u003ca href=\"http://www.oceansciencetrust.org/wp-content/uploads/2017/04/OST-Sea-Level-Rising-Report-Final_Amended.pdf\">predicts\u003c/a> that San Francisco Bay could rise from five to 15 times faster this century than the last one.\u003c/p>\u003c/blockquote>\n\u003cp>Despite all this, the NOAA report finds that some cities are ill-prepared for what’s to come. In Boston for instance, a recent city-backed study criticized a plan to protect the city from rising sea levels. From \u003ca href=\"https://insideclimatenews.org/news/06062018/coastal-flooding-data-sea-level-rise-climate-change-noaa-report-high-tide-risk\" target=\"_blank\" rel=\"noopener\">Inside Climate News\u003c/a>:\u003c/p>\n\u003cblockquote>\u003cp>Another proposal envisions a harbor-wide barrier system that would close during major storms and cost billions of dollars. But last week, a city-backed study \u003ca href=\"http://www.wbur.org/news/2018/05/30/boston-harbor-barrier-flooding-umass-study\">recommended against building a barrier\u003c/a>, saying the money would be better spent on smaller-scale measures, such as flood walls or green infrastructure.\u003c/p>\u003c/blockquote>\n\u003cp>And in New York City, a major coastal barrier that was planned for lower Manhattan has run into significant obstacles. Also from \u003ca href=\"https://insideclimatenews.org/news/06062018/coastal-flooding-data-sea-level-rise-climate-change-noaa-report-high-tide-risk\" target=\"_blank\" rel=\"noopener\">Inside Climate News:\u003c/a>\u003c/p>\n\u003cblockquote>\u003cp>New York, which also tied its record of 15 days of tidal flooding, has launched various initiatives…But a signature coastal project that would erect berms and walls to protect lower Manhattan—known as “The Big U”—has \u003ca href=\"https://www.wnyc.org/story/five-years-later-sandy-project-grinding/\">faced delays and been scaled back\u003c/a> due to its high costs.\u003c/p>\u003c/blockquote>\n\u003cp>“Across the whole of the U.S. coastline, we are in dire need of action,” Ben Horton, a Rutgers University researcher,\u003ca href=\"https://www.cbsnews.com/news/high-tide-flooding-in-the-u-s-is-twice-what-it-was-30-years-ago-noaa/\" target=\"_blank\" rel=\"noopener\"> told CBS news.\u003c/a>\u003c/p>\n\u003cblockquote>\u003cp> \u003c/p>\u003c/blockquote>\n\u003cp>The \u003ca href=\"https://www.washingtonpost.com/news/capital-weather-gang/wp/2018/06/06/u-s-coastal-areas-flooded-more-than-ever-in-past-year-due-to-sea-level-rise-and-storms/?noredirect=on&utm_term=.027c47d21364\" target=\"_blank\" rel=\"noopener\">Washington Post\u003c/a> notes that nowhere in the NOAA report is the term “climate change” mentioned, something that has become a hallmark of the Trump administration:\u003c/p>\n\u003cblockquote>\u003cp>Neither the announcement of the high-tide flooding record, the accompanying summary nor the technical report mention the words “climate change,” which scientists widely believe is the underlying cause of sea-level rise and the increasing tides.\u003c/p>\u003c/blockquote>\n\u003cp>\u003c/p>\n\u003cp>But in a conference call this week, report co-author William Sweet of NOAA’s Center for Operational Oceanographic Products and Services, told reporters that a third of sea level rise is currently driven by thermal expansion of ocean water, and two-thirds is now caused by the melting of land-based ice around the world — both processes that are clearly symptoms of global warming.\u003c/p>\n\n\u003c/div>\u003c/p>",
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"title": "Election Results for Key Environmental Measures",
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"content": "\u003cp>Here are the latest results for statewide and local environmental measures in the Tuesday, June 5 election. [contextly_sidebar id=”eb4d011iERKs7EC9Sr4VsyAF9Bdehaqs”]\u003c/p>\n\u003ch3>\u003cstrong>Statewide Measures \u003c/strong>\u003c/h3>\n\u003cp>\u003cem>With 99.4 percent of statewide precincts reporting …\u003c/em>\u003c/p>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924321/proposition-68-money-for-parks-beaches-and-water-projects\" target=\"_blank\" rel=\"noopener\">Proposition 68: Money for Parks, Beaches, Water Projects\u003c/a>\u003c/p>\n\u003cp>\u003cem>Passed with 56 percent of the vote\u003c/em>\u003c/p>\n\u003cp>\u003cspan style=\"font-weight: 400\">This measure allocates 4.1 billion dollars to improve crumbling infrastructure at state beaches and parks, and pay for water projects, such as groundwater cleanup, flood protection, and water recycling. \u003c/span>\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924223/proposition-70-who-decides-how-to-spend-california-climate-funds\" target=\"_blank\" rel=\"noopener\">Proposition 70: Who Decides How to Spend California Climate Funds\u003c/a>\u003c/p>\n\u003cp>\u003cem>Failed with 36 percent of the vote\u003c/em>\u003c/p>\n\u003cp>This measure, which landed on the ballot as the result of a political trade-off, requires a two-thirds vote of the legislature to release revenues from the state’s cap-and-trade program, which helps regulate greenhouse gas pollution.\u003c/p>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924022/prop-72-encourages-homeowners-to-capture-rainwater\" target=\"_blank\" rel=\"noopener\">Proposition 72: Capture Rainwater, Get a Tax Break\u003c/a>\u003c/p>\n\u003cp>\u003cem>Passed with 83 percent of the vote\u003c/em>\u003c/p>\n\u003cp>Homeowners who install rainwater catchment systems would not have to pay property taxes on the home improvement. The value of the rainwater system would be added into the home’s value when the home sells.\u003c/p>\n\u003ch3>\u003cstrong>San Francisco \u003c/strong>\u003c/h3>\n\u003cp>\u003ca href=\"https://www.kqed.org/futureofyou/441395/sf-voters-may-ban-vape-flavors-menthol-cigarettes\">Proposition E Would Ban Menthol Cigarettes, Vape Flavors\u003c/a>\u003c/p>\n\u003cp>\u003cem>Passed with 68 percent of the vote (100 percent of precincts reporting)\u003c/em>\u003c/p>\n\u003cp style=\"text-align: left\">Proposition E would make San Francisco the first U.S. city to ban flavored tobacco products from all store shelves. This includes everything from gummi bear and other candy flavored e-cigarettes to conventional menthol smokes.\u003c/p>\n\u003ch3 style=\"text-align: left\">\u003cstrong>Foster City\u003cbr>\n\u003c/strong>\u003c/h3>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924576/measure-p-foster-citys-90-million-tax-to-defend-against-rising-seas\" target=\"_blank\" rel=\"noopener\">Measure P: Foster City’s $90 Million Tax to Defend Against Rising Seas\u003c/a>\u003c/p>\n\u003cp>\u003cem>Passed with 80 percent of the vote (15 of 15 precincts reporting)\u003c/em>\u003c/p>\n\u003cp>Just one thing stands between Foster City and the bay: an earthen levee. Voters in the San Mateo County city will decide whether to tax themselves to raise it, or run a higher risk of flooding.\u003c/p>\n\u003ch3>\u003cstrong>Napa Valley\u003c/strong>\u003c/h3>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924151/measure-c-has-fiercely-divided-napas-wine-industry-heres-whats-at-stake\" target=\"_blank\" rel=\"noopener\">Measure C Has Fiercely Divided Napa’s Wine Industry. Here’s What’s At Stake\u003c/a>\u003c/p>\n\u003cp>\u003cem>Too close to call: Yes 7,188 No 7,148 (170 of 170 precincts reporting) \u003ca href=\"https://www.countyofnapa.org/DocumentCenter/View/8722/Final-Unofficial-Election-Night-Report---Primary-Election-06052018-1039pm-PDF\" target=\"_blank\" rel=\"noopener\">Latest results from Napa County here\u003c/a>.\u003c/em>\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>A controversial environmental proposal in Napa County aims to protect oak woodlands and water quality by limiting how many trees can be cut to make room for vineyards.\u003c/p>\n\n",
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"excerpt": "State voters approve money for parks, beaches and water projects; San Francisco passes flavored tobacco ban; and Foster City votes to tax itself $90 million to defend against rising seas. Plus more ...",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>Here are the latest results for statewide and local environmental measures in the Tuesday, June 5 election. \u003c/p>\u003cp>\u003c/p>\u003cp>\u003c/p>\n\u003ch3>\u003cstrong>Statewide Measures \u003c/strong>\u003c/h3>\n\u003cp>\u003cem>With 99.4 percent of statewide precincts reporting …\u003c/em>\u003c/p>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924321/proposition-68-money-for-parks-beaches-and-water-projects\" target=\"_blank\" rel=\"noopener\">Proposition 68: Money for Parks, Beaches, Water Projects\u003c/a>\u003c/p>\n\u003cp>\u003cem>Passed with 56 percent of the vote\u003c/em>\u003c/p>\n\u003cp>\u003cspan style=\"font-weight: 400\">This measure allocates 4.1 billion dollars to improve crumbling infrastructure at state beaches and parks, and pay for water projects, such as groundwater cleanup, flood protection, and water recycling. \u003c/span>\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924223/proposition-70-who-decides-how-to-spend-california-climate-funds\" target=\"_blank\" rel=\"noopener\">Proposition 70: Who Decides How to Spend California Climate Funds\u003c/a>\u003c/p>\n\u003cp>\u003cem>Failed with 36 percent of the vote\u003c/em>\u003c/p>\n\u003cp>This measure, which landed on the ballot as the result of a political trade-off, requires a two-thirds vote of the legislature to release revenues from the state’s cap-and-trade program, which helps regulate greenhouse gas pollution.\u003c/p>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924022/prop-72-encourages-homeowners-to-capture-rainwater\" target=\"_blank\" rel=\"noopener\">Proposition 72: Capture Rainwater, Get a Tax Break\u003c/a>\u003c/p>\n\u003cp>\u003cem>Passed with 83 percent of the vote\u003c/em>\u003c/p>\n\u003cp>Homeowners who install rainwater catchment systems would not have to pay property taxes on the home improvement. The value of the rainwater system would be added into the home’s value when the home sells.\u003c/p>\n\u003ch3>\u003cstrong>San Francisco \u003c/strong>\u003c/h3>\n\u003cp>\u003ca href=\"https://www.kqed.org/futureofyou/441395/sf-voters-may-ban-vape-flavors-menthol-cigarettes\">Proposition E Would Ban Menthol Cigarettes, Vape Flavors\u003c/a>\u003c/p>\n\u003cp>\u003cem>Passed with 68 percent of the vote (100 percent of precincts reporting)\u003c/em>\u003c/p>\n\u003cp style=\"text-align: left\">Proposition E would make San Francisco the first U.S. city to ban flavored tobacco products from all store shelves. This includes everything from gummi bear and other candy flavored e-cigarettes to conventional menthol smokes.\u003c/p>\n\u003ch3 style=\"text-align: left\">\u003cstrong>Foster City\u003cbr>\n\u003c/strong>\u003c/h3>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924576/measure-p-foster-citys-90-million-tax-to-defend-against-rising-seas\" target=\"_blank\" rel=\"noopener\">Measure P: Foster City’s $90 Million Tax to Defend Against Rising Seas\u003c/a>\u003c/p>\n\u003cp>\u003cem>Passed with 80 percent of the vote (15 of 15 precincts reporting)\u003c/em>\u003c/p>\n\u003cp>Just one thing stands between Foster City and the bay: an earthen levee. Voters in the San Mateo County city will decide whether to tax themselves to raise it, or run a higher risk of flooding.\u003c/p>\n\u003ch3>\u003cstrong>Napa Valley\u003c/strong>\u003c/h3>\n\u003cp>\u003ca href=\"https://www.kqed.org/science/1924151/measure-c-has-fiercely-divided-napas-wine-industry-heres-whats-at-stake\" target=\"_blank\" rel=\"noopener\">Measure C Has Fiercely Divided Napa’s Wine Industry. Here’s What’s At Stake\u003c/a>\u003c/p>\n\u003cp>\u003cem>Too close to call: Yes 7,188 No 7,148 (170 of 170 precincts reporting) \u003ca href=\"https://www.countyofnapa.org/DocumentCenter/View/8722/Final-Unofficial-Election-Night-Report---Primary-Election-06052018-1039pm-PDF\" target=\"_blank\" rel=\"noopener\">Latest results from Napa County here\u003c/a>.\u003c/em>\u003c/p>\n\u003cp>\u003c/p>\n\u003cp>A controversial environmental proposal in Napa County aims to protect oak woodlands and water quality by limiting how many trees can be cut to make room for vineyards.\u003c/p>\n\n\u003c/div>\u003c/p>",
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},
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"title": "The California Report Magazine",
"tagline": "Your state, your stories",
"info": "Every week, The California Report Magazine takes you on a road trip for the ears: to visit the places and meet the people who make California unique. The in-depth storytelling podcast from the California Report.",
"airtime": "FRI 4:30pm-5pm, 6:30pm-7pm, 11pm-11:30pm",
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"officialWebsiteLink": "/californiareportmagazine",
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"order": 10
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"google": "https://podcasts.google.com/feed/aHR0cHM6Ly9mZWVkcy5tZWdhcGhvbmUuZm0vS1FJTkM3NjkwNjk1OTAz",
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},
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"info": "A one-hour radio program to hear celebrated writers, artists and thinkers address contemporary ideas and values, often discussing the creative process. Please note: tapes or transcripts are not available",
"imageSrc": "https://ww2.kqed.org/radio/wp-content/uploads/sites/50/2018/05/cityartsandlecture-300x300.jpg",
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"airtime": "SUN 1pm-2pm, TUE 10pm, WED 1am",
"meta": {
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"source": "City Arts & Lectures"
},
"link": "https://www.cityarts.net",
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"rss": "https://www.cityarts.net/feed/"
}
},
"closealltabs": {
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"order": 1
},
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"info": "\u003cem>Code Switch\u003c/em>, which listeners will hear in the first part of the hour, has fearless and much-needed conversations about race. Hosted by journalists of color, the show tackles the subject of race head-on, exploring how it impacts every part of society — from politics and pop culture to history, sports and more.\u003cbr />\u003cbr />\u003cem>Life Kit\u003c/em>, which will be in the second part of the hour, guides you through spaces and feelings no one prepares you for — from finances to mental health, from workplace microaggressions to imposter syndrome, from relationships to parenting. The show features experts with real world experience and shares their knowledge. Because everyone needs a little help being human.\u003cbr />\u003cbr />\u003ca href=\"https://www.npr.org/podcasts/510312/codeswitch\">\u003cem>Code Switch\u003c/em> offical site and podcast\u003c/a>\u003cbr />\u003ca href=\"https://www.npr.org/lifekit\">\u003cem>Life Kit\u003c/em> offical site and podcast\u003c/a>\u003cbr />",
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"id": "commonwealth-club",
"title": "Commonwealth Club of California Podcast",
"info": "The Commonwealth Club of California is the nation's oldest and largest public affairs forum. As a non-partisan forum, The Club brings to the public airwaves diverse viewpoints on important topics. The Club's weekly radio broadcast - the oldest in the U.S., dating back to 1924 - is carried across the nation on public radio stations and is now podcasting. Our website archive features audio of our recent programs, as well as selected speeches from our long and distinguished history. This podcast feed is usually updated twice a week and is always un-edited.",
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"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/Commonwealth-Club-Podcast-Tile-360x360-1.jpg",
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"source": "Commonwealth Club of California"
},
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"google": "https://podcasts.google.com/feed/aHR0cDovL3d3dy5jb21tb253ZWFsdGhjbHViLm9yZy9hdWRpby9wb2RjYXN0L3dlZWtseS54bWw",
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"title": "Forum",
"tagline": "The conversation starts here",
"info": "KQED’s live call-in program discussing local, state, national and international issues, as well as in-depth interviews.",
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"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/Forum-Podcast-Tile-703x703-1.jpg",
"imageAlt": "KQED Forum with Mina Kim and Alexis Madrigal",
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"source": "kqed",
"order": 9
},
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"google": "https://podcasts.google.com/feed/aHR0cHM6Ly9mZWVkcy5tZWdhcGhvbmUuZm0vS1FJTkM5NTU3MzgxNjMz",
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"officialWebsiteLink": "http://freakonomics.com/",
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"meta": {
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"source": "WNYC"
},
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"apple": "https://itunes.apple.com/us/podcast/freakonomics-radio/id354668519",
"tuneIn": "https://tunein.com/podcasts/WNYC-Podcasts/Freakonomics-Radio-p272293/",
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},
"fresh-air": {
"id": "fresh-air",
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"apple": "https://itunes.apple.com/WebObjects/MZStore.woa/wa/viewPodcast?s=143441&mt=2&id=214089682&at=11l79Y&ct=nprdirectory",
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"info": "A live production of NPR and WBUR Boston, in collaboration with stations across the country, Here & Now reflects the fluid world of news as it's happening in the middle of the day, with timely, in-depth news, interviews and conversation. Hosted by Robin Young, Jeremy Hobson and Tonya Mosley.",
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"hidden-brain": {
"id": "hidden-brain",
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"info": "Shankar Vedantam uses science and storytelling to reveal the unconscious patterns that drive human behavior, shape our choices and direct our relationships.",
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"airtime": "SUN 7pm-8pm",
"meta": {
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"source": "NPR"
},
"link": "/radio/program/hidden-brain",
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"how-i-built-this": {
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"title": "How I Built This with Guy Raz",
"info": "Guy Raz dives into the stories behind some of the world's best known companies. How I Built This weaves a narrative journey about innovators, entrepreneurs and idealists—and the movements they built.",
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"airtime": "SUN 7:30pm-8pm",
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},
"link": "/radio/program/how-i-built-this",
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"npr": "https://rpb3r.app.goo.gl/3zxy",
"apple": "https://itunes.apple.com/us/podcast/how-i-built-this-with-guy-raz/id1150510297?mt=2",
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"hyphenacion": {
"id": "hyphenacion",
"title": "Hyphenación",
"tagline": "Where conversation and cultura meet",
"info": "What kind of no sabo word is Hyphenación? For us, it’s about living within a hyphenation. Like being a third-gen Mexican-American from the Texas border now living that Bay Area Chicano life. Like Xorje! Each week we bring together a couple of hyphenated Latinos to talk all about personal life choices: family, careers, relationships, belonging … everything is on the table. ",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2025/03/Hyphenacion_FinalAssets_PodcastTile.png",
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"officialWebsiteLink": "/podcasts/hyphenacion",
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"order": 15
},
"link": "/podcasts/hyphenacion",
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},
"jerrybrown": {
"id": "jerrybrown",
"title": "The Political Mind of Jerry Brown",
"tagline": "Lessons from a lifetime in politics",
"info": "The Political Mind of Jerry Brown brings listeners the wisdom of the former Governor, Mayor, and presidential candidate. Scott Shafer interviewed Brown for more than 40 hours, covering the former governor's life and half-century in the political game and Brown has some lessons he'd like to share. ",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/The-Political-Mind-of-Jerry-Brown-Podcast-Tile-703x703-1.jpg",
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"officialWebsiteLink": "/podcasts/jerrybrown",
"meta": {
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"order": 18
},
"link": "/podcasts/jerrybrown",
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}
},
"latino-usa": {
"id": "latino-usa",
"title": "Latino USA",
"airtime": "MON 1am-2am, SUN 6pm-7pm",
"info": "Latino USA, the radio journal of news and culture, is the only national, English-language radio program produced from a Latino perspective.",
"imageSrc": "https://ww2.kqed.org/radio/wp-content/uploads/sites/50/2018/04/latinoUsa.jpg",
"officialWebsiteLink": "http://latinousa.org/",
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},
"link": "/radio/program/latino-usa",
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"apple": "https://itunes.apple.com/WebObjects/MZStore.woa/wa/viewPodcast?s=143441&mt=2&id=79681317&at=11l79Y&ct=nprdirectory",
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"rss": "https://feeds.npr.org/510016/podcast.xml"
}
},
"marketplace": {
"id": "marketplace",
"title": "Marketplace",
"info": "Our flagship program, helmed by Kai Ryssdal, examines what the day in money delivered, through stories, conversations, newsworthy numbers and more. Updated Monday through Friday at about 3:30 p.m. PT.",
"airtime": "MON-FRI 4pm-4:30pm, MON-WED 6:30pm-7pm",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/Marketplace-Podcast-Tile-360x360-1.jpg",
"officialWebsiteLink": "https://www.marketplace.org/",
"meta": {
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"source": "American Public Media"
},
"link": "/radio/program/marketplace",
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"rss": "https://feeds.publicradio.org/public_feeds/marketplace-pm/rss/rss"
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},
"masters-of-scale": {
"id": "masters-of-scale",
"title": "Masters of Scale",
"info": "Masters of Scale is an original podcast in which LinkedIn co-founder and Greylock Partner Reid Hoffman sets out to describe and prove theories that explain how great entrepreneurs take their companies from zero to a gazillion in ingenious fashion.",
"airtime": "Every other Wednesday June 12 through October 16 at 8pm (repeats Thursdays at 2am)",
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"officialWebsiteLink": "https://mastersofscale.com/",
"meta": {
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"source": "WaitWhat"
},
"link": "/radio/program/masters-of-scale",
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"rss": "https://rss.art19.com/masters-of-scale"
}
},
"mindshift": {
"id": "mindshift",
"title": "MindShift",
"tagline": "A podcast about the future of learning and how we raise our kids",
"info": "The MindShift podcast explores the innovations in education that are shaping how kids learn. Hosts Ki Sung and Katrina Schwartz introduce listeners to educators, researchers, parents and students who are developing effective ways to improve how kids learn. We cover topics like how fed-up administrators are developing surprising tactics to deal with classroom disruptions; how listening to podcasts are helping kids develop reading skills; the consequences of overparenting; and why interdisciplinary learning can engage students on all ends of the traditional achievement spectrum. This podcast is part of the MindShift education site, a division of KQED News. KQED is an NPR/PBS member station based in San Francisco. You can also visit the MindShift website for episodes and supplemental blog posts or tweet us \u003ca href=\"https://twitter.com/MindShiftKQED\">@MindShiftKQED\u003c/a> or visit us at \u003ca href=\"/mindshift\">MindShift.KQED.org\u003c/a>",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/Mindshift-Podcast-Tile-703x703-1.jpg",
"imageAlt": "KQED MindShift: How We Will Learn",
"officialWebsiteLink": "/mindshift/",
"meta": {
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"source": "kqed",
"order": 12
},
"link": "/podcasts/mindshift",
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"google": "https://podcasts.google.com/feed/aHR0cHM6Ly9mZWVkcy5tZWdhcGhvbmUuZm0vS1FJTkM1NzY0NjAwNDI5",
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}
},
"morning-edition": {
"id": "morning-edition",
"title": "Morning Edition",
"info": "\u003cem>Morning Edition\u003c/em> takes listeners around the country and the world with multi-faceted stories and commentaries every weekday. Hosts Steve Inskeep, David Greene and Rachel Martin bring you the latest breaking news and features to prepare you for the day.",
"airtime": "MON-FRI 3am-9am",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/Morning-Edition-Podcast-Tile-360x360-1.jpg",
"officialWebsiteLink": "https://www.npr.org/programs/morning-edition/",
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"link": "/radio/program/morning-edition"
},
"onourwatch": {
"id": "onourwatch",
"title": "On Our Watch",
"tagline": "Deeply-reported investigative journalism",
"info": "For decades, the process for how police police themselves has been inconsistent – if not opaque. In some states, like California, these proceedings were completely hidden. After a new police transparency law unsealed scores of internal affairs files, our reporters set out to examine these cases and the shadow world of police discipline. On Our Watch brings listeners into the rooms where officers are questioned and witnesses are interrogated to find out who this system is really protecting. Is it the officers, or the public they've sworn to serve?",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/On-Our-Watch-Podcast-Tile-703x703-1.jpg",
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"officialWebsiteLink": "/podcasts/onourwatch",
"meta": {
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"source": "kqed",
"order": 11
},
"link": "/podcasts/onourwatch",
"subscribe": {
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"google": "https://podcasts.google.com/feed/aHR0cHM6Ly9mZWVkcy5ucHIub3JnLzUxMDM2MC9wb2RjYXN0LnhtbD9zYz1nb29nbGVwb2RjYXN0cw",
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},
"on-the-media": {
"id": "on-the-media",
"title": "On The Media",
"info": "Our weekly podcast explores how the media 'sausage' is made, casts an incisive eye on fluctuations in the marketplace of ideas, and examines threats to the freedom of information and expression in America and abroad. For one hour a week, the show tries to lift the veil from the process of \"making media,\" especially news media, because it's through that lens that we see the world and the world sees us",
"airtime": "SUN 2pm-3pm, MON 12am-1am",
"imageSrc": "https://ww2.kqed.org/radio/wp-content/uploads/sites/50/2018/04/onTheMedia.png",
"officialWebsiteLink": "https://www.wnycstudios.org/shows/otm",
"meta": {
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"source": "wnyc"
},
"link": "/radio/program/on-the-media",
"subscribe": {
"apple": "https://itunes.apple.com/us/podcast/on-the-media/id73330715?mt=2",
"tuneIn": "https://tunein.com/radio/On-the-Media-p69/",
"rss": "http://feeds.wnyc.org/onthemedia"
}
},
"pbs-newshour": {
"id": "pbs-newshour",
"title": "PBS NewsHour",
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