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南极洲沃斯托克冰下湖上方200多米厚的湖冰。

More than 200 meters of lake ice above subglacial Lake Vostok, Antarctica.

作者信息

Jouzel J, Petit J R, Souchez R, Barkov N I, Lipenkov V Y, Raynaud D, Stievenard M, Vassiliev N I, Verbeke V, Vimeux F

机构信息

Laboratoire des Sciences du Climat et de l'Environnement (UMR CEA/CNRS 1572), CEA Saclay, 91191 Gif-sur-Yvette Cédex, France.

出版信息

Science. 1999 Dec 10;286(5447):2138-41. doi: 10.1126/science.286.5447.2138.

Abstract

Isotope studies show that the Vostok ice core consists of ice refrozen from Lake Vostok water, from 3539 meters below the surface of the Antarctic ice sheet to its bottom at about 3750 meters. Additional evidence comes from the total gas content, crystal size, and electrical conductivity of the ice. The Vostok site is a likely place for water freezing at the lake-ice interface, because this interface occurs at a higher level here than anywhere else above the lake. Isotopic data suggest that subglacial Lake Vostok is an open system with an efficient circulation of water that was formed during periods that were slightly warmer than those of the past 420,000 years. Lake ice recovered by deep drilling is of interest for preliminary investigations of lake chemistry and bedrock properties and for the search for indigenous lake microorganisms. This latter aspect is of potential importance for the exploration of icy planets and moons.

摘要

同位素研究表明,沃斯托克冰芯由从沃斯托克湖的水重新冻结而成的冰组成,其范围从南极冰盖表面以下3539米至底部约3750米处。其他证据来自冰的总气体含量、晶体大小和电导率。沃斯托克站点是湖水与冰界面处水冻结的可能地点,因为该界面在此处的位置比湖上方其他任何地方都要高。同位素数据表明,冰下的沃斯托克湖是一个开放系统,水的循环效率高,它形成于比过去42万年略温暖的时期。通过深钻获取的湖冰对于湖泊化学和基岩性质的初步研究以及寻找湖泊原生微生物具有重要意义。后一个方面对于探索冰行星和冰卫星具有潜在的重要性。

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