海洋酸化
文石
海洋学
海冰
环境科学
北极的
碱度
气候变化
北极海冰下降
北极冰盖
海水
北极地球工程
全球变暖对海洋的影响
二氧化碳
全球变暖
气候学
加拿大盆地
地质学
南极海冰
生态学
化学
方解石
生物
矿物学
有机化学
作者
Di Qi,Zhangxian Ouyang,Liqi Chen,Yingxu Wu,Ruibo Lei,Baoshan Chen,Richard A. Feely,Leif G. Anderson,Wenli Zhong,Hongmei Lin,A. A. Polukhin,Yixing Zhang,Yongli Zhang,Haibo Bi,Xinyu Lin,Yiming Luo,Yanpei Zhuang,Jianfeng He,Jianfang Chen,Wei‐Jun Cai
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2022-09-29
卷期号:377 (6614): 1544-1550
被引量:94
标识
DOI:10.1126/science.abo0383
摘要
The Arctic Ocean has experienced rapid warming and sea ice loss in recent decades, becoming the first open-ocean basin to experience widespread aragonite undersaturation [saturation state of aragonite (Ωarag) < 1]. However, its trend toward long-term ocean acidification and the underlying mechanisms remain undocumented. Here, we report rapid acidification there, with rates three to four times higher than in other ocean basins, and attribute it to changing sea ice coverage on a decadal time scale. Sea ice melt exposes seawater to the atmosphere and promotes rapid uptake of atmospheric carbon dioxide, lowering its alkalinity and buffer capacity and thus leading to sharp declines in pH and Ωarag. We predict a further decrease in pH, particularly at higher latitudes where sea ice retreat is active, whereas Arctic warming may counteract decreases in Ωarag in the future.
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