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Maximum Southwest Greenland Ice Sheet Recession in the Early Holocene

机译:全新世时期的最大西南格陵兰冰板衰退

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摘要

Establishing the timing of maximum Holocene warmth in the Arctic is critical for understanding global climate system response to external forcing. In Greenland, challenges in obtaining climate records that span the full Holocene have hampered efforts to robustly identify when the Holocene Thermal Maximum occurred. Reconstructing land-based ice sheet history can fill this gap because these ice sheet regions respond sensitively to summer temperature. We synthesize new and published Be-10 and C-14 ages from southwest Greenland to map Greenland ice sheet margin positions from 12 to 7 ka and calculate retreat rates from 12 to 0 ka. We found that maximum Greenland ice sheet recession occurred between similar to 10.4 and 9.1 ka. Our reconstruction suggests that summer air temperatures in southwest Greenland were highest from similar to 10.4 to 9.1 ka, providing support for an early regional Holocene Thermal Maximum. These results can serve as benchmarks for comparison with ice sheet and climate model simulations.
机译:建立北极最大全新世温暖的时序对于了解对外部强迫的全球气候系统的反应至关重要。在格陵兰岛,获得跨越全新世纪的气候记录的挑战阻碍了在全新世热最大值发生时努力识别的努力。重建陆地冰盖历史可以填补这种差距,因为这些冰盖区域敏感地响应夏季温度。我们从西南部格陵兰州综合新的并发布的BE-10和C-14岁,以将12至7 ka的格陵兰冰盖边缘位置从12到7 ka映射,并从12到0 ka计算撤退率。我们发现,与10.4和9.1 ka相似的最大格陵兰冰盖衰退发生。我们的重建表明,格陵兰西南地区的夏季空气温度与10.4至9.1 ka相似,为早期区域全新常热量提供支持。这些结果可以用作与冰板和气候模型模拟比较的基准。

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