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The Amorphous Composition of Three Mudstone Samples from Gale Crater: Implications for Weathering and Diagenetic Processes on Mars

机译:大风火山口三个泥岩样品的非晶组成:对火星的风化作用和成岩作用的影响

摘要

The Mars Science Laboratory rover, Curiosity, is exploring the lowermost formation of Gale crater's central mound. Within this formation, three samples named Marimba, Quela, and Sebina have been analyzed by the CheMin X-ray diffractometer and the Alpha Particle X-ray Spectrometer (APXS) to determine mineralogy and bulk elemental chemistry, respectively. Marimba and Quela were also analyzed by the SAM (Sample Analysis at Mars) instrument to characterize the type and abundance of volatile phases detected in evolved gas analyses (EGA). CheMin data show similar proportions of plagioclase, hematite, and Ca-sulfates along with a mixture of di- and trioctahedral smectites at abundances of approximately 28, approximately 16, and approximately 18 wt% for Marimba, Quela, and Sebina. Approximately 50 wt% of each mudstone is comprised of X-ray amorphous and trace crystalline phases present below the CheMin detection limit (approximately 1 wt%). APXS measurements reveal a distinct bulk elemental chemistry that cannot be attributed to the clay mineral variation alone indicating a variable amorphous phase assemblage exists among the three mudstones. To explore the amorphous component, the calculated amorphous composition and SAM EGA results are used to identify amorphous phases unique to each mudstone. For example, the amorphous fraction of Marimba has twice the FeO wt% compared to Quela and Sebina yet, SAM EGA data show no evidence for Fe-sulfates. These data imply that Fe must reside in alternate Fe-bearing amorphous phases (e.g., nanophase iron oxides, ferrihydrite, etc.). Constraining the composition, abundances, and proposed identity of the amorphous fraction provides an opportunity to speculate on the past physical, chemical, and/or diagenetic processes which produced such phases in addition to sediment sources, lake chemistry, and the broader geologic history of Gale crater.
机译:火星科学实验室的漫游者好奇号(Curiosity)正在探索大风火山口中央丘的最低地层。在该地层中,分别用CheMin X射线衍射仪和Alpha粒子X射线光谱仪(APXS)分析了三个名为Marimba,Quela和Sebina的样品,以确定矿物学和本体元素化学。 Marimba和Quela还通过SAM(火星样品分析)仪器进行了分析,以表征在逸出气体分析(EGA)中检测到的挥发性相的类型和丰度。 CheMin数据显示,Marimba,Quela和Sebina的斜长石,赤铁矿和硫酸钙以及二八面体和三八面体绿土的混合物的比例相似,丰度分别约为28、16和18重量%。每种泥岩的约50 wt%由X射线无定形相和痕量结晶相组成,低于CheMin检测极限(约1 wt%)。 APXS测量显示出独特的本体元素化学性质,不能仅归因于粘土矿物的变化,表明这三种泥岩之间存在可变的非晶相组合。为了探索非晶态成分,计算出的非晶态成分和SAM EGA结果用于识别每种泥岩特有的非晶态相。例如,与Quela和Sebina相比,Marimba的无定形部分具有两倍的FeO重量%,但SAM EGA数据表明没有硫酸铁的证据。这些数据暗示Fe必须存在于交替的含Fe的非晶相中(例如,纳米相的氧化铁,水铁矿等)。限制无定形馏分的组成,丰度和拟议的身份提供了一个机会,以推测过去的物理,化学和/或成岩作用过程,除了沉积物来源,湖泊化学和大风的地质历史之外,还产生了此类相火山口。

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