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Jarosite as an indicator of water-limited chemical weathering on Mars

机译:Jarosite指示火星上受水限制的化学风化

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The Mars Exploration Rover Opportunity identified the ferric sulphate mineral jarosite and possible relicts of gypsum at the Meridiani Planum landing site(1). On Earth, jarosite has been found to form in acid mine drainage environments, during the oxidation of sulphide minerals(2), and during alteration of volcanic rocks by acidic, sulphur-rich fluids near volcanic vents(3). Jarosite formation is thus thought to require a wet, oxidizing and acidic environment. But jarosite on Earth only persists over geologically relevant time periods in arid environments because it rapidly decomposes to produce ferric oxyhydroxides in more humid climates(4). Here we present equilibrium thermodynamic reaction-path simulations that constrain the range of possible conditions under which such aqueous alteration phases are likely to have formed on Mars. These calculations simulate the chemical weathering of basalt at relevant martian conditions. We conclude that the presence of jarosite combined with residual basalt at Meridiani Planum indicates that the alteration process did not proceed to completion, and that following jarosite formation, arid conditions must have prevailed.
机译:火星探测漫游车机遇号在Meridiani Planum登陆点确定了硫酸铁矿物黄钾铁矾和石膏的可能遗迹(1)。在地球上,已发现在酸性矿山排水环境中,硫化物矿物的氧化过程中(2)以及火山喷口附近的酸性,富硫流体对火山岩的蚀变过程中形成了黄钾铁矾(3)。因此认为黄铁矿的形成需要潮湿,氧化和酸性的环境。但是地球上的黄钾铁矾只在与地质有关的时间段内在干旱环境中持续存在,因为它在更潮湿的气候中会迅速分解生成羟基氧化铁(4)。在这里,我们提出了平衡热力学反应路径模拟,该模拟限制了可能在火星上形成这种水相蚀变相的可能条件的范围。这些计算模拟了相关火星条件下玄武岩的化学风化作用。我们得出的结论是,在Meridiani Planum中,黄钾铁矾与残留的玄武岩的结合表明,该变化过程并未完全完成,并且在黄钾铁矾形成之后,必须存在干旱条件。

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