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古新世/始新世温暖期海洋翻转的突然逆转。

Abrupt reversal in ocean overturning during the Palaeocene/Eocene warm period.

作者信息

Nunes Flavia, Norris Richard D

机构信息

Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California 92092-0208, USA.

出版信息

Nature. 2006 Jan 5;439(7072):60-3. doi: 10.1038/nature04386.

Abstract

An exceptional analogue for the study of the causes and consequences of global warming occurs at the Palaeocene/Eocene Thermal Maximum, 55 million years ago. A rapid rise of global temperatures during this event accompanied turnovers in both marine and terrestrial biota, as well as significant changes in ocean chemistry and circulation. Here we present evidence for an abrupt shift in deep-ocean circulation using carbon isotope records from fourteen sites. These records indicate that deep-ocean circulation patterns changed from Southern Hemisphere overturning to Northern Hemisphere overturning at the start of the Palaeocene/Eocene Thermal Maximum. This shift in the location of deep-water formation persisted for at least 40,000 years, but eventually recovered to original circulation patterns. These results corroborate climate model inferences that a shift in deep-ocean circulation would deliver relatively warmer waters to the deep sea, thus producing further warming. Greenhouse conditions can thus initiate abrupt deep-ocean circulation changes in less than a few thousand years, but may have lasting effects; in this case taking 100,000 years to revert to background conditions.

摘要

5500万年前的古新世/始新世极热事件是研究全球变暖原因及后果的一个特殊实例。在该事件中,全球气温迅速上升,同时海洋和陆地生物群发生更替,海洋化学和环流也出现显著变化。在此,我们利用来自14个地点的碳同位素记录,给出了深海环流突然转变的证据。这些记录表明,在古新世/始新世极热事件开始时,深海环流模式从南半球翻转变为北半球翻转。深水形成位置的这种转变持续了至少4万年,但最终恢复到原来的环流模式。这些结果证实了气候模型的推断,即深海环流的转变会将相对温暖的海水输送到深海,从而导致进一步变暖。因此,温室条件可在不到几千年的时间内引发深海环流的突然变化,但可能会产生持久影响;在这种情况下,需要10万年才能恢复到背景条件。

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