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涡旋在北极海洋生物泵中的作用增强。

Enhanced role of eddies in the Arctic marine biological pump.

作者信息

Watanabe Eiji, Onodera Jonaotaro, Harada Naomi, Honda Makio C, Kimoto Katsunori, Kikuchi Takashi, Nishino Shigeto, Matsuno Kohei, Yamaguchi Atsushi, Ishida Akio, Kishi Michio J

机构信息

1] Japan Agency for Marine-Earth Science and Technology, 3173-25 Showa-machi, Kanazawa-ku, Yokohama, Kanagawa 236-0001, Japan [2].

Japan Agency for Marine-Earth Science and Technology, 3173-25 Showa-machi, Kanazawa-ku, Yokohama, Kanagawa 236-0001, Japan.

出版信息

Nat Commun. 2014 May 27;5:3950. doi: 10.1038/ncomms4950.

Abstract

The future conditions of Arctic sea ice and marine ecosystems are of interest not only to climate scientists, but also to economic and governmental bodies. However, the lack of widespread, year-long biogeochemical observations remains an obstacle to understanding the complicated variability of the Arctic marine biological pump. Here we show an early winter maximum of sinking biogenic flux in the western Arctic Ocean and illustrate the importance of shelf-break eddies to biological pumping from wide shelves to adjacent deep basins using a combination of year-long mooring observations and three-dimensional numerical modelling. The sinking flux trapped in the present study included considerable fresh organic material with soft tissues and was an order of magnitude larger than previous estimates. We predict that further reductions in sea ice will promote the entry of Pacific-origin biological species into the Arctic basin and accelerate biogeochemical cycles connecting the Arctic and subarctic oceans.

摘要

北极海冰和海洋生态系统的未来状况不仅是气候科学家关注的焦点,经济和政府机构也颇为关心。然而,缺乏广泛的全年生物地球化学观测数据仍然是理解北极海洋生物泵复杂变化的一大障碍。在此,我们展示了北冰洋西部冬季早期下沉生物通量的最大值,并通过结合全年的系泊观测和三维数值模拟,阐明了陆架坡折涡对生物泵从广阔陆架向相邻深海盆地输送物质的重要性。本研究中捕获的下沉通量包含大量带有软组织的新鲜有机物质,比之前的估计值大一个数量级。我们预测,海冰的进一步减少将促使源自太平洋的生物物种进入北极盆地,并加速连接北极和亚北极海洋的生物地球化学循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3760/4055836/95b0c5baa436/ncomms4950-f1.jpg

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