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石膏-钾石膏-戈尔吉矿体系中的相互关系及其在火星上的可能形成。

Interrelationships in the Gypsum-Syngenite-Görgeyite System and Their Possible Formation on Mars.

机构信息

Department of Analytical Chemistry, Faculty of Science and Technology, University of the Basque Country UPV/EHU, Bilbao, Spain.

Department of Geoscience, University of Nevada, Las Vegas, Nevada, USA.

出版信息

Astrobiology. 2021 Mar;21(3):332-344. doi: 10.1089/ast.2020.2319. Epub 2021 Jan 21.

Abstract

Calcium sulfates are known to be potential reservoirs of organic compounds and have been detected on Mars. However, not all data that indicate the presence of sulfates collected by the Mars Exploration Rovers (Spirit and Opportunity) and Curiosity rover can be explained by the different calcium sulfate polymorphs, and therefore, mixtures of calcium sulfates with other single sulfates must be considered. In addition, the presence of mixed calcium sulfates supports the data and indicates that the molar ratio of sulfate/calcium is >1. To obtain adequate spectroscopic information of mixed-cation sulfates to be used in the interpretation of data from Mars in the next few years, the thermodynamically stable syngenite (KCa(SO)·HO) and görgeyite (KCa(SO)·HO) mixed-cation sulfates have been studied along with the interrelationships in the gypsum-syngenite-görgeyite system to understand their possible formation on Mars. Raman spectroscopy and Visible-Near Infrared-Shortwave Infrared (VisNIR) spectroscopy have been used for their characterization to increase the databases for the two future Mars exploration missions, Mars2020 and ExoMars2022, where both techniques will be implemented. These VisNIR data can also help with the interpretation of spectral data of salt deposits on Mars acquired by the OMEGA and CRISM spectrometers onboard the Mars Express and Mars Reconnaissance orbiters. This work demonstrates that syngenite (KCa(SO)·HO) easily precipitates without the need for hydrothermal conditions, which, depending on the ion concentrations, may precipitate in different proportions with gypsum. Furthermore, in this study, we also demonstrate that, under hydrothermal conditions, görgeyite (KCa(SO)·HO) would also be highly likely to form and may also be identified on Mars together with syngenite and gypsum.

摘要

硫酸钙是已知的有机化合物的潜在储库,并且已经在火星上被检测到。然而,并非所有通过火星探测漫游车(勇气号和机遇号)和好奇号漫游车收集的数据都可以用不同的硫酸钙多晶型物来解释,因此,必须考虑硫酸钙与其他单一硫酸盐的混合物。此外,混合硫酸钙的存在支持了数据,并表明硫酸盐/钙的摩尔比>1。为了获得混合阳离子硫酸盐的足够光谱信息,以便在未来几年内用于解释火星数据,已经对热力学稳定的水镁矾(KCa(SO4)2·H2O)和硅钙钡石(KCa(SO4)2·H2O)混合阳离子硫酸盐进行了研究,并研究了石膏-水镁矾-硅钙钡石系统中的相互关系,以了解它们在火星上可能的形成方式。拉曼光谱和可见-近红外-短波红外(VisNIR)光谱已被用于它们的特征化,以增加未来的两个火星探测任务,火星 2020 号和 ExoMars 2022 号的数据库,这两个任务都将实施。这些 VisNIR 数据还可以帮助解释火星上由欧米茄和 CRISM 光谱仪在火星快车和火星侦察轨道器上获取的盐沉积物的光谱数据。这项工作表明,水镁矾(KCa(SO4)2·H2O)很容易在不需要热液条件的情况下沉淀,这取决于离子浓度,可能以不同的比例与石膏沉淀。此外,在这项研究中,我们还表明,在热液条件下,硅钙钡石(KCa(SO4)2·H2O)也很可能形成,并且也可能与水镁矾和石膏一起在火星上被识别。

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