首页> 外文期刊>Icarus: International Journal of Solar System Studies >VIS-IR study of brucite-clay-carbonate mixtures: Implications for Ceres surface composition
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VIS-IR study of brucite-clay-carbonate mixtures: Implications for Ceres surface composition

机译:水镁石-粘土-碳酸盐混合物的VIS-IR研究:对谷胱甘肽表面成分的影响

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摘要

Carbonates and clay minerals are present in Solar System bodies such as Mars and asteroid (1) Ceres. Brucite has been proposed in the recent past to fit absorption features in spectra of Ceres. In this study Visible-Near Infrared reflectance spectroscopic measurements have been performed on brucitecarbonate-clay minerals mixtures, in the 0.2-5.1 mu m spectral range. Different sets of three- and two components mixtures have been prepared using these three fine powdered endmembers, by varying the relative proportions of carbonate, clay and brucite. Spectra have been acquired on the endmembers components separately and on the mixtures. Absorption features diagnostic of the carbonate, clay and brucite phases have been analyzed and band parameters (position, depth, area, width) determined. Several trends and correlations with mineral phase content in each mixture have been investigated, with the aim to determining how endmember components influence the mixture spectra and their minimum detectability threshold. Our results indicate that brucite is detectable in mineral mixtures with carbonates and clays, based on its main absorption features at 0.95, 2.45-2.47 and 3.05 mu m. While the 0.95 and 3.05 mu m features are only discernible for very high brucite contents in the mixtures, the similar to 2.45 mu m band turns out to be highly diagnostic, also for very small amounts of brucite (of the order of 10 wt%). These experiments, together with DAWN observations of Ceres, substantially rule out the presence of great amounts of brucite globally distributed on the surface of Ceres. (C) 2016 Elsevier Inc. All rights reserved.
机译:碳酸盐和粘土矿物存在于太阳系的身体中,例如火星和小行星(1)谷神星。最近提出了水镁石以适合谷神星光谱中的吸收特征。在这项研究中,对可见水-碳酸镁-粘土矿物混合物的可见-近红外反射光谱进行了测量,光谱范围为0.2-5.1微米。通过改变碳酸盐,粘土和水镁石的相对比例,使用这三种细粉状端基可以制备出不同的三组分和两种组分混合物。光谱已分别在末端构件组件和混合物上获得。分析了碳酸盐,粘土和水镁石相的吸收特征,并确定了带参数(位置,深度,面积,宽度)。已经研究了每种混合物中与矿物相含量有关的几种趋势和相关性,目的是确定端基组分如何影响混合物光谱及其最小可检测阈值。我们的结果表明,基于其在0.95、2.45-2.47和3.05μm处的主要吸收特征,在与碳酸盐和粘土的矿物混合物中可以检测到水镁石。虽然仅对于混合物中很高的水镁石含量才能分辨出0.95和3.05μm的特征,但事实证明,与2.45μm的带相似的是高度诊断性的,也适用于非常少量的水镁石(大约10 wt%) 。这些实验,以及DAWN对谷神星的观察,基本上排除了全球分布在谷神星表面的大量水镁石的存在。 (C)2016 Elsevier Inc.保留所有权利。

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