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High sensitivity of Bering Sea winter sea ice to winter insolation and carbon dioxide over the last 5500 years

机译:在过去5500年中,冬季冬季海冰与冬季缺失和二氧化碳的高敏感性

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Anomalously low winter sea ice extent and early retreat in CE 2018 and 2019 challenge previous notions that winter sea ice in the Bering Sea has been stable over the instrumental record, although long-term records remain limited. Here, we use a record of peat cellulose oxygen isotopes from St. Matthew Island along with isotope-enabled general circulation model (IsoGSM) simulations to generate a 5500-year record of Bering Sea winter sea ice extent. Results show that over the last 5500 years, sea ice in the Bering Sea decreased in response to increasing winter insolation and atmospheric COsub2/sub, suggesting that the North Pacific is highly sensitive to small changes in radiative forcing. We find that CE 2018 sea ice conditions were the lowest of the last 5500 years, and results suggest that sea ice loss may lag changes in COsub2/sub concentrations by several decades.
机译:在2018年的冬季海冰范围和早期撤退的临近概念虽然长期记录仍然有限,但冬季海冰在乐器记录中一直稳定。在这里,我们使用来自St. Matthew Island的泥炭纤维素氧同位素的记录以及支持同位素的一般循环模型(ISOGSM)模拟,以产生5500年的白云冬季海冰范围。结果表明,在过去的5500年中,白冰海中的海冰响应冬季缺失和大气CO 2 增加,这表明北太平洋对辐射强迫的小变化非常敏感。我们发现CE 2018海冰条件是过去5500年的最低点,结果表明海冰损失可能会在几十年内滞后于CO 2 浓度。

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