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来自欧洲项目冰芯气候与环境变化(EPICA)多姆C冰芯的过去80万年的沙尘-气候耦合关系。

Dust-climate couplings over the past 800,000 years from the EPICA Dome C ice core.

作者信息

Lambert F, Delmonte B, Petit J R, Bigler M, Kaufmann P R, Hutterli M A, Stocker T F, Ruth U, Steffensen J P, Maggi V

机构信息

Climate and Environmental Physics, Physics Institute, University of Bern, Sidlerstrasse 5, 3012 Bern, Switzerland.

出版信息

Nature. 2008 Apr 3;452(7187):616-9. doi: 10.1038/nature06763.

Abstract

Dust can affect the radiative balance of the atmosphere by absorbing or reflecting incoming solar radiation; it can also be a source of micronutrients, such as iron, to the ocean. It has been suggested that production, transport and deposition of dust is influenced by climatic changes on glacial-interglacial timescales. Here we present a high-resolution record of aeolian dust from the EPICA Dome C ice core in East Antarctica, which provides an undisturbed climate sequence over the past eight climatic cycles. We find that there is a significant correlation between dust flux and temperature records during glacial periods that is absent during interglacial periods. Our data suggest that dust flux is increasingly correlated with Antarctic temperature as the climate becomes colder. We interpret this as progressive coupling of the climates of Antarctic and lower latitudes. Limited changes in glacial-interglacial atmospheric transport time suggest that the sources and lifetime of dust are the main factors controlling the high glacial dust input. We propose that the observed approximately 25-fold increase in glacial dust flux over all eight glacial periods can be attributed to a strengthening of South American dust sources, together with a longer lifetime for atmospheric dust particles in the upper troposphere resulting from a reduced hydrological cycle during the ice ages.

摘要

尘埃可通过吸收或反射入射太阳辐射来影响大气的辐射平衡;它还可为海洋提供铁等微量营养元素。有人提出,尘埃的产生、传输和沉降受冰川-间冰期时间尺度上气候变化的影响。在此,我们展示了来自南极东部埃皮科冰穹C冰芯的高分辨率风成尘埃记录,它提供了过去八个气候周期的未受干扰的气候序列。我们发现,在冰川期,尘埃通量与温度记录之间存在显著相关性,而在间冰期则不存在这种相关性。我们的数据表明,随着气候变冷,尘埃通量与南极温度的相关性越来越强。我们将此解释为南极和低纬度地区气候的逐渐耦合。冰川-间冰期大气传输时间的有限变化表明,尘埃的来源和寿命是控制冰川期尘埃高输入量的主要因素。我们认为,在所有八个冰川期观测到的冰川尘埃通量约25倍的增加,可归因于南美洲尘埃源的增强,以及由于冰期水文循环减少导致对流层上层大气尘埃颗粒寿命延长。

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