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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 >Martian atmospheric xenon contents of Nakhla mineral separates: implications for the origin of elemental mass fractionation
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Martian atmospheric xenon contents of Nakhla mineral separates: implications for the origin of elemental mass fractionation

机译:Nakhla矿物分离出的火星大气氙含量:对元素质量分馏的起源的影响

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摘要

Analyses of mineral separates from Nakhla reveal that Martian atmosphere-derived xenon is present in olivine and pyroxene in concentrations close to that of the bulk meteorite, and at elevated concentrations in mesostasis. We argue that neither aqueous alteration nor adsorption followed by shock incorporation are plausible mechanisms for incorporating this gas component into the meteorite, and suggest trapping occurred on formation. Direct dissolution of Martian atmosphere in the parent melt is unlikely since it would require a partial pressure of xenon in the Martian atmosphere greater than consideration of the I-Xe system realistically allows. The melt appears to have been insufficiently hydrated for water transport to have been solely responsible. Addition of as little as 500 ppm of Martian soil to the melt could account for the observed composition and elemental mass fractionation.
机译:从纳赫拉(Nakhla)分离出的矿物的分析表明,火星大气中的氙气存在于橄榄石和辉石中,其浓度接近于整体陨石的浓度,而介导定性的浓度较高。我们认为,水相变化或吸附后再加入激波都不是将这种气体成分结合到陨石中的合理机制,并暗示在形成过程中会发生捕集。火星大气在母体熔体中的直接溶解是不可能的,因为在火星大气中氙的分压要大于对I-Xe系统的实际考虑。熔体似乎没有足够的水合作用,无法完全负责水的运输。向熔体中添加低至500 ppm的火星土壤可解释所观察到的组成和元素质量分数。

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