上升流
冰消
海洋学
透光带
地质学
极地锋
大气(单位)
二氧化碳
深海
地球大气中的二氧化碳
全新世
气候学
环境科学
浮游植物
气候变化
气象学
地理
生态学
营养物
有机化学
生物
化学
作者
Robert F. Anderson,Sheikh Nawaz Ali,Louisa I Bradtmiller,Simon H.H. Nielsen,Martin Q. Fleisher,B. E. Anderson,Lloyd H. Burckle
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2009-03-13
卷期号:323 (5920): 1443-1448
被引量:979
标识
DOI:10.1126/science.1167441
摘要
Wind-driven upwelling in the ocean around Antarctica helps regulate the exchange of carbon dioxide (CO2) between the deep sea and the atmosphere, as well as the supply of dissolved silicon to the euphotic zone of the Southern Ocean. Diatom productivity south of the Antarctic Polar Front and the subsequent burial of biogenic opal in underlying sediments are limited by this silicon supply. We show that opal burial rates, and thus upwelling, were enhanced during the termination of the last ice age in each sector of the Southern Ocean. In the record with the greatest temporal resolution, we find evidence for two intervals of enhanced upwelling concurrent with the two intervals of rising atmospheric CO2 during deglaciation. These results directly link increased ventilation of deep water to the deglacial rise in atmospheric CO2.
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