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南大洋季节性不同的碳通量变化对南半球环状模的响应。

Seasonally different carbon flux changes in the Southern Ocean in response to the southern annular mode.

作者信息

Hauck J, Völker C, Wang T, Hoppema M, Losch M, Wolf-Gladrow D A

机构信息

Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research Bremerhaven, Germany.

出版信息

Global Biogeochem Cycles. 2013 Dec;27(4):1236-1245. doi: 10.1002/2013GB004600. Epub 2013 Dec 5.

Abstract

Stratospheric ozone depletion and emission of greenhouse gases lead to a trend of the southern annular mode (SAM) toward its high-index polarity. The positive phase of the SAM is characterized by stronger than usual westerly winds that induce changes in the physical carbon transport. Changes in the natural carbon budget of the upper 100 m of the Southern Ocean in response to a positive SAM phase are explored with a coupled ecosystem-general circulation model and regression analysis. Previously overlooked processes that are important for the upper ocean carbon budget during a positive SAM period are identified, namely, export production and downward transport of carbon north of the polar front (PF) as large as the upwelling in the south. The limiting micronutrient iron is brought into the surface layer by upwelling and stimulates phytoplankton growth and export production but only in summer. This leads to a drawdown of carbon and less summertime outgassing (or more uptake) of natural CO. In winter, biological mechanisms are inactive, and the surface ocean equilibrates with the atmosphere by releasing CO. In the annual mean, the upper ocean region south of the PF loses more carbon by additional export production than by the release of CO into the atmosphere, highlighting the role of the biological carbon pump in response to a positive SAM event.

摘要

平流层臭氧损耗和温室气体排放导致了南半球环状模(SAM)向高指数极性的趋势。SAM的正相位特征是西风比往常更强,这会引发物理碳输送的变化。利用耦合生态系统-大气环流模型和回归分析,探讨了南大洋上层100米自然碳收支对SAM正相位的响应。确定了在SAM正相位期间对上层海洋碳收支很重要但此前被忽视的过程,即极锋(PF)以北的碳输出生产和向下输送,其规模与南部的上升流相当。限制性微量营养元素铁通过上升流被带入表层,刺激浮游植物生长和输出生产,但仅在夏季如此。这导致碳的消耗以及夏季自然CO的逸出减少(或吸收增加)。在冬季,生物机制不活跃,表层海洋通过释放CO与大气达到平衡。在年平均值上,PF以南的上层海洋区域因额外的输出生产而损失的碳比向大气释放CO所损失的碳更多,这突出了生物碳泵在响应SAM正相位事件中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6ec/4461076/80965a9fbaa9/gbc0027-1236-f1.jpg

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