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轨道强迫和大气二氧化碳对中新世冰盖扩张的影响。

Impacts of orbital forcing and atmospheric carbon dioxide on Miocene ice-sheet expansion.

作者信息

Holbourn Ann, Kuhnt Wolfgang, Schulz Michael, Erlenkeuser Helmut

机构信息

Institute of Geosciences, Christian-Albrechts-University, D-24118 Kiel, Germany.

出版信息

Nature. 2005 Nov 24;438(7067):483-7. doi: 10.1038/nature04123.

Abstract

The processes causing the middle Miocene global cooling, which marked the Earth's final transition into an 'icehouse' climate about 13.9 million years ago (Myr ago), remain enigmatic. Tectonically driven circulation changes and variations in atmospheric carbon dioxide levels have been suggested as driving mechanisms, but the lack of adequately preserved sedimentary successions has made rigorous testing of these hypotheses difficult. Here we present high-resolution climate proxy records, covering the period from 14.7 to 12.7 million years ago, from two complete sediment cores from the northwest and southeast subtropical Pacific Ocean. Using new chronologies through the correlation to the latest orbital model, we find relatively constant, low summer insolation over Antarctica coincident with declining atmospheric carbon dioxide levels at the time of Antarctic ice-sheet expansion and global cooling, suggesting a causal link. We surmise that the thermal isolation of Antarctica played a role in providing sustained long-term climatic boundary conditions propitious for ice-sheet formation. Our data document that Antarctic glaciation was rapid, taking place within two obliquity cycles, and coincided with a striking transition from obliquity to eccentricity as the drivers of climatic change.

摘要

导致约1390万年前(百万年前)地球最终过渡到“冰室”气候的中新世中期全球变冷过程仍然是个谜。构造驱动的环流变化和大气二氧化碳水平的变化被认为是驱动机制,但缺乏保存完好的沉积层序使得对这些假设进行严格检验变得困难。在此,我们展示了来自西北和东南亚热带太平洋的两个完整沉积岩芯的高分辨率气候代用记录,涵盖了1470万年至1270万年前的时期。通过与最新轨道模型的相关性建立新的年代学,我们发现南极夏季日照相对稳定且较低,这与南极冰盖扩张和全球变冷时期大气二氧化碳水平下降同时出现,表明存在因果联系。我们推测,南极的热隔离在提供有利于冰盖形成的持续长期气候边界条件方面发挥了作用。我们的数据表明,南极冰川作用迅速,发生在两个倾角周期内,并且与气候变化驱动因素从倾角到偏心率的显著转变同时发生。

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