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将多元曲线分辨-交替最小二乘法(MCR-ALS)与拉曼成像技术应用于月球陨石

Multivariate Curve Resolution-Alternating Least Squares (MCR-ALS) with Raman Imaging Applied to Lunar Meteorites.

作者信息

Smith Joseph P, Smith Frank C, Booksh Karl S

机构信息

1 Department of Chemistry & Biochemistry, University of Delaware, Newark, DE, USA.

2 Department of Geological Sciences, University of Delaware, Newark, DE, USA.

出版信息

Appl Spectrosc. 2018 Mar;72(3):404-419. doi: 10.1177/0003702817721715. Epub 2017 Aug 11.

Abstract

Lunar meteorites provide a more random sampling of the surface of the Moon than do the returned lunar samples, and they provide valuable information to help estimate the chemical composition of the lunar crust, the lunar mantle, and the bulk Moon. As of July 2014, ∼96 lunar meteorites had been documented and ten of these are unbrecciated mare basalts. Using Raman imaging with multivariate curve resolution-alternating least squares (MCR-ALS), we investigated portions of polished thin sections of paired, unbrecciated, mare-basalt lunar meteorites that had been collected from the LaPaz Icefield (LAP) of Antarctica-LAP 02205 and LAP 04841. Polarized light microscopy displays that both meteorites are heterogeneous and consist of polydispersed sized and shaped particles of varying chemical composition. For two distinct probed areas within each meteorite, the individual chemical species and associated chemical maps were elucidated using MCR-ALS applied to Raman hyperspectral images. For LAP 02205, spatially and spectrally resolved clinopyroxene, ilmenite, substrate-adhesive epoxy, and diamond polish were observed within the probed areas. Similarly, for LAP 04841, spatially resolved chemical images with corresponding resolved Raman spectra of clinopyroxene, troilite, a high-temperature polymorph of anorthite, substrate-adhesive epoxy, and diamond polish were generated. In both LAP 02205 and LAP 04841, substrate-adhesive epoxy and diamond polish were more readily observed within fractures/veinlet features. Spectrally diverse clinopyroxenes were resolved in LAP 04841. Factors that allow these resolved clinopyroxenes to be differentiated include crystal orientation, spatially distinct chemical zoning of pyroxene crystals, and/or chemical and molecular composition. The minerals identified using this analytical methodology-clinopyroxene, anorthite, ilmenite, and troilite-are consistent with the results of previous studies of the two meteorites using electron microprobe analysis. To our knowledge, this is the first report of MCR-ALS with Raman imaging used for the investigation of both lunar and other types of meteorites. We have demonstrated the use of multivariate analysis methods, namely MCR-ALS, with Raman imaging to investigate heterogeneous lunar meteorites. Our analytical methodology can be used to elucidate the chemical, molecular, and structural characteristics of phases in a host of complex, heterogeneous geological, geochemical, and extraterrestrial materials.

摘要

与返回的月球样本相比,月球陨石能更随机地采样月球表面,它们提供了有价值的信息,有助于估算月壳、月幔以及整个月球的化学成分。截至2014年7月,已记录了约96块月球陨石,其中10块是未角砾化的月海玄武岩。我们使用具有多元曲线分辨-交替最小二乘法(MCR-ALS)的拉曼成像技术,研究了从南极拉巴斯冰原(LAP)采集的成对、未角砾化的月海玄武岩月球陨石(LAP 02205和LAP 04841)的抛光薄片部分。偏光显微镜显示,这两块陨石都是非均质的,由化学成分不同、大小和形状多分散的颗粒组成。对于每块陨石内两个不同的探测区域,使用应用于拉曼高光谱图像的MCR-ALS阐明了单个化学物种及相关化学图谱。对于LAP 02205,在探测区域内观察到了空间和光谱分辨的单斜辉石、钛铁矿、基底粘合剂环氧树脂和金刚石抛光剂。同样,对于LAP 04841,生成了具有相应分辨拉曼光谱的空间分辨化学图像,这些光谱分别对应单斜辉石、硫铁矿、高温钙长石多晶型物、基底粘合剂环氧树脂和金刚石抛光剂。在LAP 02205和LAP 04841中,在裂缝/细脉特征内更容易观察到基底粘合剂环氧树脂和金刚石抛光剂。在LAP 04841中分辨出了光谱多样的单斜辉石。使这些分辨出的单斜辉石得以区分的因素包括晶体取向、辉石晶体在空间上不同的化学分带,和/或化学及分子组成。使用这种分析方法鉴定出的矿物——单斜辉石、钙长石、钛铁矿和硫铁矿——与之前使用电子微探针分析对这两块陨石进行研究的结果一致。据我们所知,这是首次报道将MCR-ALS与拉曼成像用于研究月球陨石及其他类型陨石。我们展示了使用多元分析方法,即MCR-ALS,结合拉曼成像来研究非均质月球陨石。我们的分析方法可用于阐明众多复杂、非均质的地质、地球化学和外星物质中各相的化学、分子和结构特征。

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