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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Geochemical modeling of evaporation processes on Mars: Insight from the sedimentary record at Meridiani Planum
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Geochemical modeling of evaporation processes on Mars: Insight from the sedimentary record at Meridiani Planum

机译:火星蒸发过程的地球化学模拟:Meridiani Planum的沉积记录的启示

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New data returned from the Mars Exploration Rover (MER) mission have revealed abundant evaporites in the sedimentary record at Meridiani Planum. A working hypothesis for Meridiani evaporite formation involves the evaporation of fluids derived from the weathering of martian basalt and subsequent diagenesis. On Earth, evaporite formation in exclusively basaltic settings is rare. However, models of the evaporation of fluids derived from experimentally weathering synthetic martian basalt provide insight into possible formation mechanisms. The thermodynamic database assembled for this investigation includes both Fe2+ and Fe3+ in Pitzer's ion interaction equations to evaluate Fe redox disequilibrium at Meridiani Planum. Modeling results suggest that evaporation of acidic fluids derived from weathering olivine-bearing basalt should produce Mg, Ca, and Fe-sulfates such as jarosite and melanterite. Calculations that model diagenesis by fluid recharge predict the eventual breakdown of jarosite to goethite as well as the preservation of much of the initial soluble evaporite component at modeled porosity values appropriate for relevant depositional environments (< 0.30). While only one of several possible formation scenarios, this simple model is consistent with much of the chemical and mineralogical data obtained on Meridiani Planum outcrop. (c) 2005 Elsevier B.V. All rights reserved.
机译:火星探测漫游者(MER)任务返回的新数据显示,Meridiani Planum的沉积记录中有大量的蒸发岩。 Meridiani蒸发岩形成的一个可行假设涉及蒸发来自火星玄武岩风化和随后的成岩作用的流体。在地球上,仅在玄武岩环境中形成蒸发岩的情况很少。然而,从实验风化合成火星玄武岩获得的流体蒸发模型提供了对可能形成机制的认识。组装用于该研究的热力学数据库在Pitzer的离子相互作用方程式中包括Fe2 +和Fe3 +,以评估Meridiani Planum的Fe氧化还原不平衡。模拟结果表明,源自风化的含橄榄石的玄武岩的酸性流体的蒸发应产生Mg,Ca和Fe硫酸盐,例如黄铁矿和黑铁矿。通过补给流体对成岩作用进行建模的计算预测了黄钾铁矾最终会分解为针铁矿,并在适合相关沉积环境的模拟孔隙度值(<0.30)下保存了许多初始可溶性蒸发岩组分。虽然只有几种可能的形成方案之一,但这种简单的模型与从Meridiani Planum露头获得的许多化学和矿物学数据是一致的。 (c)2005 Elsevier B.V.保留所有权利。

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