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Weathering Profiles in Phosphorus-Rich Rocks at Gusev Crater, Mars, Suggest Dissolution of Phosphate Minerals into Potentially Habitable Near-Neutral Waters

机译:火星古塞夫火山口含磷丰富的岩石中的风化剖面表明,磷酸盐矿物质溶解到了可能栖息的近中性水域中

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Abundant evidence indicates that significant surface and near-surface liquid water has existed on Mars in the past. Evaluating the potential for habitable environments on Mars requires an understanding of the chemical and physical conditions that prevailed in such aqueous environments. Among the geological features that may hold evidence of past environmental conditions on Mars are weathering profiles, such as those in the phosphorus-rich Wishstone-class rocks in Gusev Crater. The weathering profiles in these rocks indicate that a Ca-phosphate mineral has been lost during past aqueous interactions. The high phosphorus content of these rocks and potential release of phosphorus during aqueous interactions also make them of astrobiological interest, as phosphorus is among the elements required for all known life. In this work, we used Mars mission data, laboratory-derived kinetic and thermodynamic data, and data from terrestrial analogues, including phosphorus-rich basalts from Idaho, to model a conceptualized Wishstone-class rock using the reactive transport code CrunchFlow. Modeling results most consistent with the weathering profiles in Wishstone-class rocks suggest a combination of chemical and physical erosion and past aqueous interactions with near-neutral waters. The modeling results also indicate that multiple Ca-phosphate minerals are likely in Wishstone-class rocks, consistent with observations of martian meteorites. These findings suggest that Gusev Crater experienced a near-neutral phosphate-bearing aqueous environment that may have been conducive to life on Mars in the past.
机译:大量证据表明,过去在火星上存在大量的地表和近地表液态水。评估火星上宜居环境的潜力需要了解在此类水环境中普遍存在的化学和物理条件。风化剖面可以作为火星过去环境条件的证据,其中包括古塞夫火山口富含磷的维斯通级岩石中的风化剖面。这些岩石中的风化剖面表明,在过去的水相互作用中钙磷矿物质已经丢失。这些岩石的高磷含量以及在水相互作用过程中可能释放的磷也使它们具有天文生物学的意义,因为磷是所有已知生命所需的元素之一。在这项工作中,我们使用了火星任务数据,实验室得出的动力学和热力学数据,以及来自陆地类似物的数据,包括爱达荷州的富磷玄武岩,使用反应性运输代码CrunchFlow对概念化的Wishstone级岩石进行了建模。模拟结果最符合Wishstone级岩石的风化剖面,表明化学和物理侵蚀以及过去的水与近中性水的相互作用的结合。建模结果还表明,与火星陨石的观测结果相符,威士石类岩石中可能存在多种钙磷酸盐矿物质。这些发现表明,Gusev Crater经历了近中性的含磷酸盐水环境,过去可能有利于火星上的生活。

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