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Formation and character of an ancient 19-m ice cover and underlying trapped brine in an 'ice-sealed' east Antarctic lake

机译:一个南极东部冰封湖中一个古老的19米冰盖和下陷的盐水的形成和特征

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摘要

Lake Vida, one of the largest lakes in the McMurdo Dry Valleys of Antarctica, was previously believed to be shallow (<10 m) and frozen to its bed year-round. New ice-core analysis and temperature data show that beneath 19 m of ice is a water column composed of a NaCl brine with a salinity seven times that of seawater that remains liquid below -10degreesC. The ice cover thickens at both its base and surface, sealing concentrated brine beneath. The ice cover is stabilized by a negative feedback between ice growth and the freezing-point depression of the brine. The ice cover contains frozen microbial mats throughout that are viable after thawing and has a history that extends to at least 2,800 C-14 years B.P., suggesting that the brine has been isolated from the atmosphere for as long. To our knowledge, Lake Vida has the thickest subaerial lake ice cover recorded and may represent a previously undiscovered end-member lacustrine ecosystem on Earth. [References: 28]
机译:维达湖是南极麦克默多干旱谷中最大的湖泊之一,以前被认为是浅水区(<10 m),并终年冻成床。新的冰芯分析和温度数据显示,在19 m的冰下是由NaCl盐水组成的水柱,其盐度是在-10℃以下保持液态的海水的盐度的7倍。冰盖的底部和表面都变厚,将浓盐水密封在下面。冰的生长和盐水的冰点降低之间的负反馈使冰盖稳定。冰盖中包含冷冻的微生物垫,这些融化后在融化后仍可存活,并且历史可以追溯到至少公元前2800年C-14年,这表明盐水已经与大气隔离了很长时间。据我们所知,维达湖有最高的地下湖冰覆盖层,可能代表了地球上以前未被发现的端部湖泊生态系统。 [参考:28]

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