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South Greenland ice-sheet collapse during Marine Isotope Stage 11

机译:海洋同位素第11阶段南格陵兰冰盖坍塌

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摘要

Varying levels of boreal summer insolation and associated Earth system feedbacks led to differing climate and ice-sheet states during late-Quaternary interglaciations. In particular, Marine Isotope Stage (MIS) 11 was an exceptionally long interglaciation and potentially had a global mean sea level 6 to 13 metres above the present level around 410,000 to 400,000 years ago, implying substantial mass loss from the Greenland ice sheet (GIS). There are, however, no model simulations and only limited proxy data to constrain the magnitude of the GIS response to climate change during this 'super interglacial, thus confounding efforts to assess climate/ice-sheet threshold behaviour and associated sea-level rise. Here we show that the south GIS was drastically smaller during MIS 11 than it is now, with only a small residual ice dome over southernmost Greenland. We use the strontium-neodymium-lead isotopic composition of pro-glacial sediment discharged from south Greenland to constrain the provenance of terrigenous silt deposited on the Eirik Drift, a sedimentary deposit off the south Greenland margin. We identify a major reduction in sediment input derived from south Greenland's Pre-cambrian bedrock terranes, probably reflecting the cessation of sub-glacial erosion and sediment transport as a result of near-complete deglaciation of south Greenland. Comparison with ice-sheet configurations from numerical models suggests that the GIS lost about 4.5 to 6 metres of sea-level-equivalent volume during MIS 11. This is evidence for late-Quaternary GIS collapse after it crossed a climate/ice-sheet stability threshold that may have been no more than several degrees above pre-industrial temperatures.
机译:第四纪末期冰期期间,夏季北方日照水平的变化和相关的地球系统反馈导致不同的气候和冰盖状态。特别是,海洋同位素阶段(MIS)11是一个异常长的冰川间期,全球平均海平面可能比目前的水平高出6-13米,大约在410,000至400,000年前,这意味着格陵兰冰原(GIS)造成了大量质量损失。但是,没有模型模拟,只有有限的代理数据来限制GIS在此“超级冰间期”期间对气候变化的响应幅度,从而混淆了评估气候/冰盖阈值行为和相关海平面上升的努力。在这里,我们表明,MIS 11期间南部的GIS大大小于现在的地理信息,在格陵兰岛的最南端只有一个小的冰穹顶。我们使用从格陵兰南部排放的前冰期沉积物中锶,钕,铅的同位素组成来约束沉积在格陵兰南部边缘的沉积物Eirik Drift上的陆源粉砂的物源。我们发现南格陵兰前寒武纪基岩地层的泥沙输入量大幅度减少,这可能反映了由于南格陵兰岛近乎完全冰消作用而导致的亚冰河侵蚀和泥沙输送的停止。与数值模型中冰盖构造的比较表明,GIS在MIS 11期间损失了约4.5至6米的海平面当量。这是第四纪GIS超过气候/冰盖稳定性阈值后崩溃的证据。可能比工业化前的温度高出几度。

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  • 来源
    《Nature》 |2014年第7506期|525-528|共4页
  • 作者单位

    Department of Geoscience, University of Wisconsin-Madison, 1215 West Dayton Street, Madison, Wisconsin 53706, USA,School of Geography, Archaeology and Palaeoecology, Queen's University Belfast, Elmwood Avenue, Belfast BT7 1NN, UK,Department of Earth and Atmospheric Sciences, University of Alberta, Edmonton, Alberta T6G 2E3, Canada;

    Department of Geoscience, University of Wisconsin-Madison, 1215 West Dayton Street, Madison, Wisconsin 53706, USA,College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, 104 CEOAS Administration Building, Corvallis, Oregon 97331, USA;

    Department of Geoscience, University of Wisconsin-Madison, 1215 West Dayton Street, Madison, Wisconsin 53706, USA;

    College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, 104 CEOAS Administration Building, Corvallis, Oregon 97331, USA;

    College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, 104 CEOAS Administration Building, Corvallis, Oregon 97331, USA;

    Department of Geoscience, University of Wisconsin-Madison, 1215 West Dayton Street, Madison, Wisconsin 53706, USA;

    Department of Geoscience, University of Wisconsin-Madison, 1215 West Dayton Street, Madison, Wisconsin 53706, USA,Department of Geosciences, University of Arizona, 1040 East 4th Street, Tucson, Arizona 85721, USA;

    Department of Geoscience, University of Wisconsin-Madison, 1215 West Dayton Street, Madison, Wisconsin 53706, USA,College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, 104 CEOAS Administration Building, Corvallis, Oregon 97331, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 入库时间 2022-08-18 02:53:03

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