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An increasing CO2 sink in the Arctic Ocean due to sea-ice loss

机译:由于海冰的流失,北冰洋中二氧化碳的吸收增加

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摘要

The Arctic Ocean and adjacent continental shelf seas such as the Chukchi and Beaufort Seas are particularly sensitive to long-term change and low-frequency modes of atmosphere-ocean-sea-ice forcing. The cold, low salinity surface waters of the Canada Basin of the Arctic Ocean are undersaturated with respect to CO2 in the atmosphere and the region has the potential to take up atmospheric CO2, although presently suppressed by sea-ice cover. Undersaturated seawater CO2 conditions of the Arctic Ocean are maintained by export of water with low dissolved inorganic carbon content and modified by intense seasonal shelf primary production. Sea-ice extent and volume in the Arctic Ocean has decreased over the last few decades, and we estimate that the Arctic Ocean sink for CO2 has tripled over the last 3 decades ( 24 Tg yr(-1) to 66 Tg yr(-1)) due to sea-ice retreat with future sea-ice melting enhancing air-to-sea CO2 flux by similar to 28% per decade.
机译:北冰洋和邻近的陆架海如楚科奇海和波弗特海对大气-海洋-海冰强迫的长期变化和低频模式特别敏感。北冰洋加拿大盆地的冷,低盐度地表水相对于大气中的CO2饱和度较低,尽管目前受到海冰覆盖的抑制,但该地区具有吸收大气CO2的潜力。通过输出溶解性无机碳含量低的水来维持北冰洋的不饱和海水CO2条件,并通过强烈的季节性陆架初级生产来改变这一状况。在过去的几十年中,北冰洋的海冰范围和数量有所减少,我们估计,在过去的三十年中,北冰洋的二氧化碳汇已经增加了两倍(从24 Tg yr(-1)到66 Tg yr(-1 )),这是由于海冰撤退和未来的海冰融化使空海二氧化碳通量每十年增加约28%。

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