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Reflectance Spectroscopy of Palagonite and Iron-Rich Montmorillonite Clay Mixtures: Implications for the Surface Composition of Mars

机译:agon石和富铁蒙脱土粘土混合物的反射光谱:对火星表面成分的影响

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摘要

Mixtures of a Hawaiian palagonite and an iron-rich, montmorillonite clay (15.8 +/- 0.4 wt% Fe as Fe2O3) were evaluated as Mars surface spectral analogs from their diffuse reflectance spectra. The presence of the 2.2 microns absorption band in the reflectance spectrum of clays and its absence in the Mars spectrum have been interpreted as indicating that highly crystalline aluminous hydroxylated clays cannot be a major mineral component of the soil on Mars. The palagonite sample used in this study does not show this absorption feature in its spectrum. In mixtures of palagonite and iron-rich montmorillonite, the 2.2 microns Al-OH clay lattice band is not seen below 15 wt% montmorillonite. This suggests the possibility that iron-rich montmorillonite clay may be present in the soil of Mars at up to 15 wt% in combination with palagonite, and remain undetected in remotely sensed spectra of Mars.
机译:夏威夷方石和富铁蒙脱土(Fe含量为15.8 +/- 0.4 wt%的Fe2O3)的混合物从其漫反射光谱中评估为火星表面光谱类似物。粘土的反射光谱中存在2.2微米的吸收带,而在火星光谱中却不存在,这被解释为表明高结晶度的铝质羟基化粘土不能成为火星土壤中的主要矿物成分。本研究中使用的方铅矿样品在其光谱中没有显示出这种吸收特征。在方石和富铁蒙脱石的混合物中,低于15 wt%的蒙脱石看不到2.2微米的Al-OH粘土晶格带。这表明富铁蒙脱土粘土可能与火石结合在火星土壤中的含量高达15 wt%,并且在火星的遥感光谱中未被发现。

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