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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Environmental signals in a highly resolved ice core from James Ross Island, Antarctica
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Environmental signals in a highly resolved ice core from James Ross Island, Antarctica

机译:环境信号在一个高度解决冰核心的詹姆士·罗斯岛,南极洲

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摘要

The accumulation, isotopic and chemical signals of an ice core from James Ross Island, Antarctica, are investigated for the interval from 1967 to 2008. Over this interval, comparison with station, satellite and reanalysis data allows for a detailed assessment of the environmental information preserved in the ice. Accumulation at James Ross Island is enhanced during years when the circumpolar westerlies are weak, allowing more precipitation events to reach the northeastern Antarctic Peninsula. The stable water isotope composition of the ice core has an interannual temperature dependence consistent with the spatial isotope‐temperature gradient across Antarctica, and preserves information about both summer and winter temperature variability in the region. Sea salts in the ice core are derived from open water sources in the marginal sea ice zone to the north of James Ross Island and transported to the site by strengthened northerly and westerly winds in the winter. A strong covariance with temperature means that the sea salt record may be able to be utilized, in conjunction with the isotope signal, as an indicator of winter temperature. Marine biogenic compounds in the ice core are derived from summer productivity within the sea ice zone to the south of James Ross Island. This source region may have become significant only in recent decades, when the collapse of nearby ice shelves established new sites of open water with high summer productivity. These findings provide a foundation for interpreting the environmental signals in the James Ross Island ice core, which extends though the whole Holocene and represents the oldest ice core that has been recovered from the Antarctic Peninsula region.
机译:积累、同位素和化学信号冰核心的詹姆士·罗斯岛,南极洲,研究了区间从1967年到吗2008. 站,卫星和再分析数据支持一个详细的评估环境信息保存在冰。年期间詹姆斯罗斯岛是增强环极西风带弱,允许更多的降水事件到达南极半岛东北部。水同位素组成的冰核年际依赖于温度一致与空间同位素温度梯度在南极洲,和保存的信息对夏季和冬季的温度在该地区的可变性。核心来自开放水源边际海冰区北部的詹姆斯·罗斯岛和运到现场加强北和西风冬天。意味着海盐的记录可能可以利用,结合同位素信号,作为冬天的温度指标。生物化合物的冰核从夏季海冰区域内的生产力詹姆斯·罗斯岛的南部。只在最近的地区可能成为重要的几十年,当附近的冰架的坍塌建立新网站开放水高夏天的生产力。解释环境的基础詹姆斯•罗斯岛冰芯中信号虽然整个全新世和代表最古老的冰芯已经恢复南极半岛地区。

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