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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 >Constraints on the crystal-chemistry of Fe/Mg-rich smectitic clays on Mars and links to global alteration trends
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Constraints on the crystal-chemistry of Fe/Mg-rich smectitic clays on Mars and links to global alteration trends

机译:火星上富含铁/镁的近晶黏土的晶体化学制约及其与全球变化趋势的联系

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Near-infrared remote sensing data of Mars have revealed thousands of ancient deposits of Fe/Mg-rich smectitic clay minerals within the crust with relevance to past habitability. Diagnostic metal-OH infrared spectroscopic absorptions used to interpret the mineralogy of these phyllosilicates occur at wavelengths of 2.27-2.32 mu m, indicating variable Fe/Mg ratios in the clay structures. The objective of this work is to use these near infrared absorptions to constrain the mineralogy of smectites on Mars. Using Fe/Mg-rich seafloor clay minerals as mineralogical and spectroscopic analogs for Martian clay minerals, we show how crystal-chemical substitution and mixed layering affect the position of the diagnostic metal-OH spectral feature in smectitic clay minerals. Crystal-chemistry of smectites detected on Mars were quantitatively constrained with infrared data and categorized into four mineralogical groups. Possible alteration processes are constrained by comparisons of clay chemistry detected by remote sensing techniques to the chemistry of candidate protoliths. Of the four groups identified, three of them indicate significant segregation of Fe from Mg, suggestive of alteration under water-rich and/or oxidizing conditions on Mars. The fourth group (with low Fe/Mg ratios) may result from alteration in reducing or water-limited conditions, potentially in subsurface environments. Some samples are interstratified di-trioctahedral clay minerals that have characteristics of dioctahedral clay minerals but clear chemical evidence for trioctahedral sheets. Approximately 70% of smectite deposits previously detected on Mars are classified as Fe-rich (FeO/MgO > 10). Only 22% of detections are trioctahedral and relatively Mg-rich. An additional similar to 8% are difficult to characterize, but might be very Fe-rich. The segregation of Fe from Mg in Martian clay minerals suggests that Mg should be enriched in other contemporaneous deposits such as chlorides and carbonates. (C) 2015 The Authors. Published by Elsevier B.V.
机译:火星的近红外遥感数据已经揭示了地壳内成千上万的富含铁/镁的近晶粘土矿物的古代沉积,与过去的可居住性有关。诊断金属-OH红外光谱吸收用于解释这些层状硅酸盐的矿物学特征,其波长为2.27-2.32μm,表明粘土结构中的铁/镁比值可变。这项工作的目的是利用这些近红外吸收来限制火星上绿土的矿物学。使用富含铁/镁的海底粘土矿物作为火星粘土矿物的矿物学和光谱类似物,我们证明了晶体化学取代和混合分层如何影响诊断性金属-OH光谱特征在近晶粘土矿物中的位置。在火星上检测到的绿土的晶体化学受到红外数据的定量限制,并分为四个矿物学组。通过将遥感技术检测到的粘土化学性质与候选原石的化学性质进行比较,可以限制可能的蚀变过程。在确定的四组中,其中三组表明Fe与Mg明显分离,这表明在富水和/或氧化条件下火星发生了改变。第四类(具有较低的Fe / Mg比)可能是由于还原条件或水限制条件的改变(可能在地下环境中)而引起的。一些样品是复层的二八面体粘土矿物,具有二八面体粘土矿物的特征,但对于三八面体薄片具有明确的化学证据。先前在火星上发现的大约70%的蒙脱石矿床被归类为富铁矿(FeO / MgO> 10)。只有22%的检测物是八面体的,并且镁含量相对较高。另外很难描述类似的8%,但是可能富含铁。镁在火星粘土矿物中与镁的分离表明镁应富集其他同时期的矿床,例如氯化物和碳酸盐。 (C)2015作者。由Elsevier B.V.发布

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