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南大洋海冰/碳循环反馈的时间和幅度。

Timing and magnitude of Southern Ocean sea ice/carbon cycle feedbacks.

机构信息

Center for Climate Physics, Institute for Basic Science, Busan, Republic of Korea, 46241;

Pusan National University, Busan, Republic of Korea, 46241.

出版信息

Proc Natl Acad Sci U S A. 2020 Mar 3;117(9):4498-4504. doi: 10.1073/pnas.1908670117. Epub 2020 Feb 18.

Abstract

The Southern Ocean (SO) played a prominent role in the exchange of carbon between ocean and atmosphere on glacial timescales through its regulation of deep ocean ventilation. Previous studies indicated that SO sea ice could dynamically link several processes of carbon sequestration, but these studies relied on models with simplified ocean and sea ice dynamics or snapshot simulations with general circulation models. Here, we use a transient run of an intermediate complexity climate model, covering the past eight glacial cycles, to investigate the orbital-scale dynamics of deep ocean ventilation changes due to SO sea ice. Cold climates increase sea ice cover, sea ice export, and Antarctic Bottom Water formation, which are accompanied by increased SO upwelling, stronger poleward export of Circumpolar Deep Water, and a reduction of the atmospheric exposure time of surface waters by a factor of 10. Moreover, increased brine formation around Antarctica enhances deep ocean stratification, which could act to decrease vertical mixing by a factor of four compared with the current climate. Sensitivity tests with a steady-state carbon cycle model indicate that the two mechanisms combined can reduce atmospheric carbon by 40 ppm, with ocean stratification acting early within a glacial cycle to amplify the carbon cycle response.

摘要

南大洋(SO)在冰川时期通过调节深海通风,在海洋和大气之间的碳交换中发挥了重要作用。先前的研究表明,SO 海冰可以动态地连接碳封存的几个过程,但这些研究依赖于简化海洋和海冰动力学的模型或使用一般环流模型进行的快照模拟。在这里,我们使用一个中等复杂气候模型的瞬态运行,涵盖过去八个冰川周期,来研究由于 SO 海冰导致的深海通风变化的轨道尺度动力学。寒冷的气候会增加海冰覆盖、海冰输出和南极底层水的形成,这伴随着 SO 上涌的增加、环极深层水向极地的更强输出,以及表层水暴露于大气的时间减少了 10 倍。此外,南极洲周围盐水的形成增加了深海的分层,与当前气候相比,这可能会使垂直混合减少四倍。使用稳态碳循环模型进行的敏感性测试表明,这两种机制结合可以使大气中的碳减少 40ppm,海洋分层在冰川周期内早期作用,放大了碳循环的响应。

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Timing and magnitude of Southern Ocean sea ice/carbon cycle feedbacks.南大洋海冰/碳循环反馈的时间和幅度。
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