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首页> 外文期刊>Climate of the Past Discussions >Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles
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Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles

机译:南极冰核估计的湿度源温度范围稳定同位素在冰川间循环上记录

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A single isotope ratio (D or 18O) of water is widely used as an air-temperature proxy in Antarctic ice core records. These isotope ratios, however, do not solely depend on air-temperature but also on the extent of distillation of heavy isotopes out of atmospheric water vapor from an oceanic moisture source to a precipitation site. The temperature changes at the oceanic moisture source ( Tsource) and at the precipitation site ( Tsite) can be retrieved by using deuterium-excess (d) data. A new d record from Dome Fuji, Antarctica spanning the past 360 000 yr is presented and compared with records from Vostok and EPICA Dome C ice cores. In previous studies, to retrieve Tsource and Tsite information, different linear regression equations were proposed using theoretical isotope distillation models. A major source of uncertainty lies in the coefficient of regression, site which is related to the sensitivity of d to Tsite. We show that different ranges of temperature and selections of isotopic model outputs may increase the value of site by more than a factor of two. To explore the impacts of this coefficient on reconstructed temperatures, we apply for the first time the exact same methodology to the isotope records from the three Antarctica ice cores. We show that uncertainties in the site coefficient strongly affect (i) the glacial–interglacial magnitude of Tsource; (ii) the imprint of obliquity in Tsource and in the site-source temperature gradient. By contrast, we highlight the robustness of Tsite reconstruction using water isotopes records.
机译:单个同位素比(D或18O)的水被广泛用作南极冰芯记录中的空气温度代理。然而,这些同位素比不仅仅依赖于空气温度,而且还依赖于从海洋水分源到沉淀部位的大气水蒸气中重量同位素的蒸馏程度。可以通过使用氘过量(d)数据来检索海洋湿度(Tsource)和沉淀部位(Tsite)处的温度变化。从Dome Fuji的新D记录,南极洲跨越360 000年的南极洲,并与Vostok和Epica Dome C Icees的记录进行了比较。在以前的研究中,为了检索TSOURCE和TSITE信息,使用理论同位素蒸馏模型提出了不同的线性回归方程。一个主要的不确定性来源在于回归系数,与D到TSITE的敏感性有关的遗址。我们表明,不同的温度和选择同位素模型输出的范围可能会增加超过两倍的网站的值。为了探讨这种系数对重建温度的影响,我们首次申请了三个南极冰芯的同位素记录的完全相同的方法。我们展示了网站系数的不确定性强烈影响(i)Tsource的冰川 - 中间凸起大小; (ii)在TSource中的倾斜度和位点源极温度梯度的印记。相比之下,我们利用水同位素记录突出了物料重建的鲁棒性。

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