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论当今火星表面液态水的存在与稳定性。

On the existence and stability of liquid water on the surface of mars today.

作者信息

Kuznetz L H, Gan D C

机构信息

Department of Earth and Planetary Sciences, University of California, Berkeley, CA, USA.

出版信息

Astrobiology. 2002 Summer;2(2):183-95. doi: 10.1089/15311070260192255.

Abstract

The recent discovery of high concentrations of hydrogen just below the surface of Mars' polar regions by Mars Odyssey has enlivened the debate about past or present life on Mars. The prevailing assumption prior to the discovery was that the liquid water essential for its existence is absent. That assumption was based largely on the calculation of heat and mass transfer coefficients or theoretical climate models. This research uses an experimental approach to determine the feasibility of liquid water under martian conditions, setting the stage for a more empirical approach to the question of life on Mars. Experiments were conducted in three parts: Liquid water's existence was confirmed by droplets observed under martian conditions in part 1; the evolution of frost melting on the surface of various rocks under martian conditions was observed in part 2; and the evaporation rate of water in Petri dishes under Mars-like conditions was determined and compared with the theoretical predictions of various investigators in part 3. The results led to the conclusion that liquid water can be stable for extended periods of time on the martian surface under present-day conditions.

摘要

“奥德赛”号火星探测器最近发现火星极地地区地表以下存在高浓度氢气,这引发了关于火星过去或现在是否存在生命的争论。在这一发现之前,普遍的假设是火星不存在维持生命所必需的液态水。这一假设很大程度上基于传热传质系数的计算或理论气候模型。这项研究采用实验方法来确定火星条件下液态水存在的可行性,为以更实证的方法研究火星生命问题奠定了基础。实验分三个部分进行:第一部分通过在火星条件下观察到的液滴证实了液态水的存在;第二部分观察了火星条件下各种岩石表面霜的融化过程;第三部分测定了培养皿中水在类火星条件下的蒸发速率,并与不同研究者的理论预测进行了比较。结果得出结论,在当前条件下,液态水在火星表面可以长时间保持稳定。

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