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Volcanogenic Fluvial-Lacustrine Environments in Iceland and Their Utility for Identifying Past Habitability on Mars

机译:冰岛的火山河-湖泊环境及其在识别火星过去可居住性方面的实用性

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The search for once-habitable locations on Mars is increasingly focused on environments dominated by fluvial and lacustrine processes, such as those investigated by the Mars Science Laboratory Curiosity rover. The availability of liquid water coupled with the potential longevity of such systems renders these localities prime targets for the future exploration of Martian biosignatures. Fluvial-lacustrine environments associated with basaltic volcanism are highly relevant to Mars, but their terrestrial counterparts have been largely overlooked as a field analogue. Such environments are common in Iceland, where basaltic volcanism interacts with glacial ice and surface snow to produce large volumes of meltwater within an otherwise cold and dry environment. This meltwater can be stored to create subglacial, englacial, and proglacial lakes, or be released as catastrophic floods and proglacial fluvial systems. Sedimentary deposits produced by the resulting fluvial-lacustrine activity are extensive, with lithologies dominated by basaltic minerals, low-temperature alteration assemblages (e.g., smectite clays, calcite), and amorphous, poorly crystalline phases (basaltic glass, palagonite, nanophase iron oxides). This paper reviews examples of these environments, including their sedimentary deposits and microbiology, within the context of utilising these localities for future Mars analogue studies and instrument testing.
机译:在火星上寻找曾经宜居的地点越来越集中于河流和湖相过程所主导的环境,例如火星科学实验室好奇号流动站所调查的环境。液态水的可用性以及此类系统的潜在寿命使其成为这些地区未来火星生物签名探索的主要目标。与玄武质火山活动有关的河流湖相环境与火星高度相关,但作为陆上类似物,它们的陆地对应物在很大程度上被忽略了。这种环境在冰岛很常见,在这里,玄武质火山作用与冰川冰和地表雪相互作用,在原本寒冷干燥的环境中产生大量的融水。可以将这些融水存储起来,以形成冰河湖,冰河湖和冰河湖,或者将其作为灾难性洪水和冰河河流系统释放。由此产生的河流-湖相沉积作用所产生的沉积物是广泛的,其岩性主要由玄武岩矿物,低温蚀变组合(例如蒙脱石粘土,方解石)和非晶态,结晶性差的相(玄武质玻璃,方石,纳米相氧化铁)组成。 。本文在利用这些地区进行未来的火星模拟研究和仪器测试的背景下,回顾了这些环境的示例,包括其沉积物和微生物学。

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