{"id":604,"date":"2017-05-09T00:00:00","date_gmt":"2017-05-08T22:00:00","guid":{"rendered":"https:\/\/site.uit.no\/cage\/2017\/05\/09\/ocean-waters-above-methane-seeps-absorb-large-amounts-of-co2\/"},"modified":"2023-04-04T10:33:18","modified_gmt":"2023-04-04T08:33:18","slug":"ocean-waters-above-methane-seeps-absorb-large-amounts-of-co2","status":"publish","type":"post","link":"https:\/\/site.uit.no\/cage\/2017\/05\/09\/ocean-waters-above-methane-seeps-absorb-large-amounts-of-co2\/","title":{"rendered":"Ocean waters above methane seeps absorb large amounts of CO2"},"content":{"rendered":"<h4><strong>Surface waters above methane seeps in the Arctic Ocean act as CO<sub>2<\/sub> sinks, new PNAS study shows. This may, surprisingly, mean that methane seeps can have a cooling effect on climate.<\/strong><\/h4>\n<h6>Text: Maja Sojtaric&nbsp;<\/h6>\n<p><!--more--><\/p>\n<p>Methane release from the ocean floor is feared to contribute to greenhouse gas budget, not mitigate it. But a new study shows that several sites of methane release in the Arctic Ocean are actually CO<sub>2 <\/sub>sinks. &nbsp;The results are published in <a href=\"http:\/\/www.pnas.org\/content\/early\/2017\/05\/02\/1618926114\">Proceedings of National Academy of Sciences of the United States of America (PNAS).<\/a><\/p>\n<blockquote><p><strong>Surface waters above Arctic methane seeps absorbed 2,000 times more carbon dioxide from the atmosphere than the amount of methane that escaped into the atmosphere from the same waters.<\/strong><\/p><\/blockquote>\n<figure id=\"attachment_3479\" aria-describedby=\"caption-attachment-3479\" style=\"width: 900px\" class=\"wp-caption aligncenter\"><img fetchpriority=\"high\" decoding=\"async\" class=\"wp-image-3479 size-large\" src=\"https:\/\/site.uit.no\/cage\/wp-content\/uploads\/2018\/12\/anna-silyakova.-rvhelmer-hanssen.-photo-randall-hyman.jpg\" alt=\"Anna Silyakova. RV\/Helmer Hanssen. Photo: Randall Hyman.\" width=\"900\" height=\"600\"><figcaption id=\"caption-attachment-3479\" class=\"wp-caption-text\">Chief scientist Anna Silyakova ( front left) during the RV\/Helmer Hanssen cruise during which much of the data for this study was collected. Photo: Randall Hyman.<\/figcaption><\/figure>\n<p>\u201cOn Svalbard shelf, we&nbsp;find profuse methane seepage,&nbsp;as well as oceanographic mechanisms&nbsp;that facilitate algae bloom above these seeps. Algae consume CO<sub>2<\/sub> as carbon source, which enhances CO<sub>2<\/sub> drawdown from the surface ocean and consequently from the atmosphere above.\u201d&nbsp;said CAGE researcher Anna Silyakova, &nbsp;co-author of the study.<\/p>\n<p><strong><br \/>\nCould have net cooling effect<br \/>\n<\/strong>CO<sub>2<\/sub>&nbsp;uptake in the area of elevated methane release was enhanced, compared to surrounding waters. The cooling resulting from CO<sub>2<\/sub>&nbsp;uptake overwhelmed the warming caused by methane output.<\/p>\n<blockquote><p><strong>The cooling effect resulting from carbon dioxide uptake is actually up to 230 times greater than the warming effect expected from the emitted methane.<\/strong><\/p><\/blockquote>\n<p>\u201cIf what we observed near Svalbard occurs more broadly at similar locations around the world, it could mean that methane seeps have a net cooling effect on climate, not a warming effect as we previously thought,\u201d said <a href=\"https:\/\/www.usgs.gov\/news\/ocean-absorption-carbon-dioxide-more-makes-methane-emissions-seafloor-methane-seeps\">USGS biogeochemist John Pohlman,<\/a> who is the paper\u2019s lead author. \u201cWe are looking forward to testing the hypothesis that shallow-water methane seeps are net greenhouse gas sinks in other locations.\u201d&nbsp;<\/p>\n<p><strong>First study of its kind<\/strong><\/p>\n<figure id=\"attachment_3482\" aria-describedby=\"caption-attachment-3482\" style=\"width: 300px\" class=\"wp-caption alignleft\"><img decoding=\"async\" class=\"wp-image-3482 lazyload\" data-src=\"https:\/\/site.uit.no\/cage\/wp-content\/uploads\/2018\/12\/john-pohlman.-photo-randall-hyman.jpg\" alt=\"John Pohlman. Photo: Randall Hyman\" width=\"300\" height=\"450\" src=\"data:image\/svg+xml;base64,PHN2ZyB3aWR0aD0iMSIgaGVpZ2h0PSIxIiB4bWxucz0iaHR0cDovL3d3dy53My5vcmcvMjAwMC9zdmciPjwvc3ZnPg==\" style=\"--smush-placeholder-width: 300px; --smush-placeholder-aspect-ratio: 300\/450;\"><figcaption id=\"caption-attachment-3482\" class=\"wp-caption-text\">USGS scientist John Pohlman in the laboratory on board RV Helmer Hanssen. Photo: Randall Hyman.<\/figcaption><\/figure>\n<p>Scientists continuously measured the concentrations of methane and carbon dioxide in near-surface waters off Svalbard and in the air just above the ocean surface. The measurements were taken over methane seeps at water depths ranging from 80 to 2600 meters.<\/p>\n<p>Analysis of the data confirmed that methane was entering the atmosphere above the shallowest waters. However, the data also showed that significant amounts of carbon dioxide were being absorbed by the waters near the ocean surface.<\/p>\n<p>Most previous studies have focused only on the sea-air flux of methane overlying seafloor seep sites. This is the first study that accounts for the drawdown of carbon dioxide, which could offset some of the atmospheric warming potential of the methane.<\/p>\n<p><strong>Not much methane escapes the ocean<\/strong><\/p>\n<p>A previous <a href=\"https:\/\/site.uit.no\/cage\/news\/methane-not-escaping-into-the-atmosphere-arctic-ocean\/\">study by CAGE and NILU<\/a> has shown that methane released from these areas of the Arctic seabed adds to the methane concentration in the ocean. But, also surprisingly, very little of the climate gas&nbsp;rising up through the sea&nbsp;reaches&nbsp;the atmosphere.<\/p>\n<blockquote><p><strong>&nbsp;\u201cThese studies seem to be adding up to a different story than previously expected. Natural release of methane from the ocean floor may not be as influential on climate change as before.&#8221;<\/strong><\/p><\/blockquote>\n<p>&#8220;But we do need to keep in mind that these studies are very local to this area of Svalbard. More global research and international collaboration is needed to see if these are global trends.\u201d said&nbsp;CAGE director J\u00fcrgen Mienert, the director of the Centre for Arctic Gas Hydrate, Environment and Climate (CAGE) at the University of Troms\u00f8.<\/p>\n<figure id=\"attachment_3029\" aria-describedby=\"caption-attachment-3029\" style=\"width: 900px\" class=\"wp-caption aligncenter\"><img decoding=\"async\" class=\"wp-image-3029 size-large lazyload\" data-src=\"https:\/\/site.uit.no\/cage\/wp-content\/uploads\/2018\/12\/illustration-moca.jpg\" alt=\"Illustration: Torger Gryt\u00e5\" width=\"900\" height=\"900\" src=\"data:image\/svg+xml;base64,PHN2ZyB3aWR0aD0iMSIgaGVpZ2h0PSIxIiB4bWxucz0iaHR0cDovL3d3dy53My5vcmcvMjAwMC9zdmciPjwvc3ZnPg==\" style=\"--smush-placeholder-width: 900px; --smush-placeholder-aspect-ratio: 900\/900;\"><figcaption id=\"caption-attachment-3029\" class=\"wp-caption-text\">The shallow area of the Arctic Ocean referred to in this study has been one of the main study areas for CAGE. Ocean floor observatories, research ship and airplane were deployed to a area of 250 active methane gas flares in the Arctic Ocean. Illustration: Torger Gryt\u00e5.<\/figcaption><\/figure>\n<p>&nbsp;<\/p>\n<p>\u201cAt&nbsp;<a href=\"https:\/\/site.uit.no\/cage\/\">CAGE<\/a>, we are fortunate to have access to expertise, equipment, and a ship platform that allow us to launch sustained research focused on the Arctic Ocean. Collaborating with colleagues in US and Germany on the important issue of sea-air flux of greenhouse gases above seafloor methane seeps has been rewarding for all of the researchers involved.\u201d&nbsp;<\/p>\n<p>The study is a collaboration between USGS, and GEOMAR.<\/p>\n<p>&nbsp;<\/p>\n<p><strong>Reference:<\/strong> Pohlman, J et. al.,&nbsp;Enhanced CO<sub>2<\/sub> uptake at a shallow Arctic Ocean seep field overwhelms the positive warming potential of emitted methane.&nbsp;<abbr class=\"slug-jnl-abbrev\" title=\"Proceedings of the National Academy of Sciences\">PNAS<\/abbr><span class=\"slug-pub-date\"> May 8, 2017.&nbsp;<\/span>doi:&nbsp;<span class=\"slug-metadata-note ahead-of-print\"><span class=\"slug-doi\" title=\"10.1073\/pnas.1618926114\">10.1073\/pnas.1618926114<br \/>\n<\/span><\/span><strong>Press release, USGS:<\/strong>&nbsp;<a href=\"https:\/\/www.usgs.gov\/news\/ocean-absorption-carbon-dioxide-more-makes-methane-emissions-seafloor-methane-seeps\">Ocean Absorption of Carbon Dioxide More than Makes Up for Methane Emissions from Seafloor Methane Seeps<\/a><\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Surface waters above methane seeps in the Arctic Ocean act as CO2 sinks, new PNAS &hellip; <\/p>\n<p class=\"read-more-link\"><a href=\"https:\/\/site.uit.no\/cage\/2017\/05\/09\/ocean-waters-above-methane-seeps-absorb-large-amounts-of-co2\/\">Read more<span class=\"screen-reader-text\"> \u00abOcean waters above methane seeps absorb large amounts of CO2\u00bb<\/span><\/a><\/p>\n","protected":false},"author":123546,"featured_media":607,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[9],"tags":[],"class_list":["post-604","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-news"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - 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