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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 >Multiple stages of aqueous alteration along fractures in mudstone and sandstone strata in Gale Crater, Mars
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Multiple stages of aqueous alteration along fractures in mudstone and sandstone strata in Gale Crater, Mars

机译:火山火山口泥岩和砂岩地层骨折骨折的多个阶段

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The Mars rover Curiosity in Gale crater conducted the first-ever direct chemical and mineralogical comparisons of samples that have clear parent (unaltered) and daughter (altered) relationships. The mineralogy and chemistry of samples within and adjacent to alteration halos in a sandstone formation were established by the Chemistry and Mineralogy (CheMin) X-ray diffraction (XRD) instrument and the Alpha Particle X-ray Spectrometer (APXS), respectively. The Stimson formation sandstones unconformably overlie the Murray mudstone formation and represent the youngest stratigraphic unit explored by Curiosity to date. Aqueous alteration of the parent sandstone resulted in a loss of half of the original crystalline mineral phases and a three-fold increase in X-ray amorphous material. Aqueous fluids extensively leached Mg, Al, Mn, Fe, Ni, Zn and other elements from the parent material, decreased the pyroxene to feldspar ratio by a factor of two, introduced Ca and mixed-cation sulfates, and both passively and actively enriched the silica content. Leaching of Mg, Al, Mn, Fe, Ni and Zn and enrichment of Si and S are also observed in alteration halos in the underlying mudstone. These observations are consistent with infiltration of subsurface fluids, initially acidic and then alkaline, propagating along fractures crosscutting the Stimson sandstone and Murray mudstone. The geochemistry and mineralogy suggest a complicated diagenetic history with multiple stages of aqueous alteration under a variety of environmental conditions (e.g. both low and moderate pH). The formation of these alteration halos post-dates lithification of the sandstones and mudstones and represents one of the youngest hydrogeologic events presently known to have occurred in Gale crater. (C) 2017 The Authors. Published by Elsevier B.V.
机译:大风陨石坑的火星流浪者的好奇心进行了具有透明父母(未改变的)和女儿(改变)关系的样本的第一批直接的化学和矿物学比较。化学和矿物学(Chemin)X射线衍射(XRD)仪和α粒子X射线光谱仪(APX)分别建立了砂岩形成中和邻近砂岩形成的矿物质和邻近的改变晕圈。 Stimson Cloction Sandstones不合适地覆盖Murray Mudstone的形成,并代表了迄今为止探索的最年轻的地层单元。母体砂岩的水性改变导致原始结晶矿物相的一半损失,X射线无定形材料的三倍增加。来自母体材料的含水流体广泛浸出的Mg,Al,Mn,Fe,Ni,Zn和其他元素,通过两倍,引入Ca和混合阳离子硫酸盐,并积极地富集,将冰石与长石比降低到长石比。二氧化硅含量。在底层泥岩中,还观察到Mg,Al,Mn,Fe,Ni和Zn和Si和S富集的浸出和Zn的浸出。这些观察结果与地下流体的浸润一致,最初是酸性的,然后碱性,沿着骨折的骨折繁殖,刺穿刺激器砂岩和默里泥岩。地球化学和矿物学表明,在各种环境条件下具有多个水性改变的复杂成岩病史(例如,低于和中等pH)。这些改变晕晕的形成后阳光和泥岩的溶解质的溶解质,并且代表了目前已知在大脑陨石坑中发生的最小水电质事件之一。 (c)2017年作者。由elsevier b.v出版。

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