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Dynamic flows create potentially habitable conditions in Antarctic subglacial lakes

机译:动态流动在南极底杉湖中创造了潜在的可居住条件

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Trapped beneath the Antarctic ice sheet lie over 400 subglacial lakes, which are considered to be extreme, isolated, yet viable habitats for microbial life. The physical conditions within subglacial lakes are critical to evaluating how and where life may best exist. Here, we propose that Earth’s geothermal flux provides efficient stirring of Antarctic subglacial lake water. We demonstrate that most lakes are in a regime of vigorous turbulent vertical convection, enabling suspension of spherical particulates with diameters up to 36 micrometers. Thus, dynamic conditions support efficient mixing of nutrient- and oxygen-enriched meltwater derived from the overlying ice, which is essential for biome support within the water column. We caution that accreted ice analysis cannot always be used as a proxy for water sampling of lakes beneath a thin (3.166 kilometers) ice cover, because a stable layer isolates the well-mixed bulk water from the ice-water interface where freezing may occur.
机译:陷入南极冰盖下方的谎言超过400个底杉湖,被认为是极端的,隔离,但可行的微生物生活的栖息地。 底层湖泊内的物理状况对于评估如何以及寿命最佳的问题至关重要。 在这里,我们建议地球的地热助焊剂提供了南极底杉湖水的有效搅拌。 我们证明大多数湖泊处于剧烈动荡的垂直对流的制度中,使球形颗粒的直径可达36微米。 因此,动态条件支持衍生自覆盖冰的营养和富氧熔融水的有效混合,这对于水柱内的生物群系支持至关重要。 我们注意到,由于稳定的层将冰水界面与冰水界面中的冰冻散装水分离出来的冰水界面,因此不能总是用作湖泊水采样的代理。 发生。

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