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始新世-渐新世过渡开始时海平面下降的多指标证据。

Multi-proxy evidence for sea level fall at the onset of the Eocene-Oligocene transition.

作者信息

De Lira Mota Marcelo A, Dunkley Jones Tom, Sulaiman Nursufiah, Edgar Kirsty M, Yamaguchi Tatsuhiko, Leng Melanie J, Adloff Markus, Greene Sarah E, Norris Richard, Warren Bridget, Duffy Grace, Farrant Jennifer, Murayama Masafumi, Hall Jonathan, Bendle James

机构信息

School of Geography, Earth and Environmental Sciences, University of Birmingham, Birmingham, B15 2TT, UK.

Institute of Geosciences, University of São Paulo, Rua do Lago, 562 - Butantã, São Paulo, SP, 05508-080, Brazil.

出版信息

Nat Commun. 2023 Aug 8;14(1):4748. doi: 10.1038/s41467-023-39806-6.

Abstract

Continental-scale expansion of the East Antarctic Ice Sheet during the Eocene-Oligocene Transition (EOT) is one of the largest non-linear events in Earth's climate history. Declining atmospheric carbon dioxide concentrations and orbital variability triggered glacial expansion and strong feedbacks in the climate system. Prominent among these feedbacks was the repartitioning of biogeochemical cycles between the continental shelves and the deep ocean with falling sea level. Here we present multiple proxies from a shallow shelf location that identify a marked regression and an elevated flux of continental-derived organic matter at the earliest stage of the EOT, a time of deep ocean carbonate dissolution and the extinction of oligotrophic phytoplankton groups. We link these observations using an Earth System model, whereby this first regression delivers a pulse of organic carbon to the oceans that could drive the observed patterns of deep ocean dissolution and acts as a transient negative feedback to climate cooling.

摘要

始新世 - 渐新世过渡(EOT)期间东南极冰盖的大陆尺度扩张是地球气候历史上最大的非线性事件之一。大气二氧化碳浓度下降和轨道变化引发了冰川扩张以及气候系统中的强烈反馈。这些反馈中突出的是随着海平面下降,大陆架和深海之间生物地球化学循环的重新分配。在此,我们展示了来自一个浅海陆架位置的多个代理指标,这些指标表明在EOT的最早阶段出现了显著的海退以及大陆源有机物质通量的增加,这一时期也是深海碳酸盐溶解和贫营养浮游植物群灭绝的时期。我们使用地球系统模型将这些观测结果联系起来,据此,这第一次海退向海洋输送了一股有机碳脉冲,这可能推动了观测到的深海溶解模式,并作为对气候变冷的一种短暂负反馈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c424/10409788/3ed504534ef1/41467_2023_39806_Fig1_HTML.jpg

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