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首页> 外文期刊>Journal of geophysical research. Planets >Overview of Mars surface geochemical diversity through Alpha Particle X-Ray Spectrometer data multidimensional analysis: First attempt at modeling rock alteration
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Overview of Mars surface geochemical diversity through Alpha Particle X-Ray Spectrometer data multidimensional analysis: First attempt at modeling rock alteration

机译:火星地表地球化学多样性的概述通过α粒子x射线光谱仪数据多维分析:第一次尝试建模岩石蚀变

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摘要

Principal component analysis and a hierarchical clustering method have been employed to describe and quantify the compositional variability of Martian rocks and soils measured by the Alpha Particle X-Ray Spectrometers onboard the Mars Exploration Rovers. A robust classification of samples emerges which defines distinct rock classes and sheds light on the petrogenetic relationships between rocks. This is particularly useful in the case of rocks from Gusev Crater, where significant chemical diversity is observed. This approach also highlights that compositional variability of rocks at Meridiani is dominated by variations in sulfur content; the relative proportions of other elements remaining approximately constant. For soils, variations in Fe concentration dominate because of the presence of hematite-rich “berry”-bearing samples. On the basis of this observation, a simple geochemical model of acid fog alteration of Martian basalts has been tested, assuming either equivalent alteration of all phases or preferential alteration of certain phases (thus taking into account kinetic considerations). The results show that for certain ranges of SO3/basalt, many of the compositional and mineralogical features measured at both sites may be explained. The secondary mineralogy and bulk rock compositions predicted by the model are broadly consistent with rock and soil compositions from Gusev and Meridiani, especially if the role of brine circulation and evaporation are considered. Although agreement is not perfect, comparison of observations and models argues in favor of variable interaction of the Martian surface with sour gas, explaining the high local abundance of sulfates, for example.
机译:主成分分析和层次聚类方法被用来描述和量化的成分变化火星岩石和土壤的α粒子x射线光谱仪上火星探测车。样品中定义不同的岩石类和揭示了岩石成因的岩石之间的关系。有用的岩石从古谢夫陨石坑,重要的化学多样性是观察到的地方。这种方法还强调成分可变性的岩石在子午线地盘是主导硫含量的变化;其他元素的比例约常数。因为存在铁浓度控制hematite-rich“浆果”其样本。基础上观察,一个简单的地球化学火星玄武岩的酸雾模型变更已经测试,假设等价变更的所有阶段或优惠变更(因此在某些阶段帐户动能考虑)。对于特定范围的SO3 /玄武岩,很多的成分和矿物特性以两个站点可能解释道。二次矿物学和岩石成分模型预测的广泛一致卡西和岩石和土壤成分子午线平原,尤其是盐水的作用循环和蒸发。虽然协议并不完美,比较观察和模型表示赞成变量交互的火星表面酸气,解释当地丰富的高例如,硫酸盐。

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