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Canadian Arctic sea ice reconstructed from bromine in the Greenland NEEM ice core

机译:用格陵兰岛NEEM冰芯中的溴从加拿大重建的加拿大北极海冰

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摘要

Reconstructing the past variability of Arctic sea ice provides an essential context for recent multi-year sea ice decline, although few quantitative reconstructions cover the Holocene period prior to the earliest historical records 1,200 years ago. Photochemical recycling of bromine is observed over first-year, or seasonal, sea ice in so-called “bromine explosions” and we employ a 1-D chemistry transport model to quantify processes of bromine enrichment over first-year sea ice and depositional transport over multi-year sea ice and land ice. We report bromine enrichment in the Northwest Greenland Eemian NEEM ice core since the end of the Eemian interglacial 120,000 years ago, finding the maximum extension of first-year sea ice occurred approximately 9,000 years ago during the Holocene climate optimum, when Greenland temperatures were 2 to 3 °C above present values. First-year sea ice extent was lowest during the glacial stadials suggesting complete coverage of the Arctic Ocean by multi-year sea ice. These findings demonstrate a clear relationship between temperature and first-year sea ice extent in the Arctic and suggest multi-year sea ice will continue to decline as polar amplification drives Arctic temperatures beyond the 2 °C global average warming target of the recent COP21 Paris climate agreement.
机译:重建北极海冰的过去变化为最近多年的海冰下降提供了必要的条件,尽管很少有定量的数据涵盖1200年前的历史记录之前的全新世时期。在第一年或季节性海冰中,在所谓的“溴爆炸”中观察到了溴的光化学循环利用,我们采用一维化学迁移模型来量化第一年海冰中的溴富集过程和第一年海冰中的沉积迁移过程。多年的海冰和陆冰。我们报告说,自120,000年前的Eemian冰川间期结束以来,西北格陵兰Eemian NEEM冰芯中的溴富集,发现第一年海冰的最大扩展发生在大约9000年前的全新世气候最佳时期,当时格陵兰的温度为2到1。比当前值高3°C。在冰川期,第一年的海冰范围最低,表明多年的海冰完全覆盖了北冰洋。这些发现表明北极地区的温度与第一年海冰范围之间存在明显的关系,并表明随着极地放大作用将北极温度超过最近的COP21巴黎气候的2°C全球平均升温目标,多年海冰将继续下降。协议。

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