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首页> 外文期刊>Reviews of Geophysics >Clean access, measurement, and sampling of Ellsworth Subglacial Lake: A method for exploring deep Antarctic subglacial lake environments
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Clean access, measurement, and sampling of Ellsworth Subglacial Lake: A method for exploring deep Antarctic subglacial lake environments

机译:埃尔斯沃思冰河湖的清洁准入,测量和取样:探索南极冰河湖深环境的一种方法

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摘要

Antarctic subglacial lakes are thought to be extreme habitats for microbial life and may contain important records of ice sheet history and climate change within their lake floor sediments. To find whether or not this is true, and to answer the science questions that would follow, direct measurement and sampling of these environments are required. Ever since the water depth of Vostok Subglacial Lake was shown to be >500 m, attention has been given to how these unique, ancient, and pristine environments may be entered without contamination and adverse disturbance. Several organizations have offered guidelines on the desirable cleanliness and sterility requirements for direct sampling experiments, including the U.S. National Academy of Sciences and the Scientific Committee on Antarctic Research. Here we summarize the scientific protocols and methods being developed for the exploration of Ellsworth Subglacial Lake in West Antarctica, planned for 2012-2013, which we offer as a guide to future subglacial environment research missions. The proposed exploration involves accessing the lake using a hot-water drill and deploying a sampling probe and sediment corer to allow sample collection. We focus here on how this can be undertaken with minimal environmental impact while maximizing scientific return without compromising the environment for future experiments.
机译:人们认为南极冰河湖泊是微生物生活的极端栖息地,并且可能在其湖底沉积物中包含冰盖历史和气候变化的重要记录。为了确定这是否正确,并回答随之而来的科学问题,需要对这些环境进行直接测量和采样。自从沃斯托克冰河湖的水深被证明大于500 m以来,人们就一直在关注如何进入这些独特,古老而原始的环境而不受到污染和不利干扰。包括美国国家科学院和南极研究科学委员会在内的一些组织已经提供了有关直接采样实验所需的清洁度和无菌度要求的指南。在这里,我们总结了计划于2012-2013年进行的南极西部Ellsworth冰川湖开发的科学协议和方法,这些指南和方法将为未来冰川环境研究任务提供指导。拟议的勘探工作包括使用热水钻进入湖面,并部署采样探针和沉积物去核剂以收集样品。我们在这里着重于如何在最小的环境影响下实现这一目标,同时又能在不损害环境的前提下最大限度地提高科学回报,以便将来进行实验。

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