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Thermal infrared and Raman microspectroscopy of moganite-bearing rocks

机译:含磁铁矿岩石的热红外和拉曼光谱

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摘要

We present the first thermal infrared reflectance spectral characterization of moganite and mixtures of moganite with microcrystalline quartz. We find that for relatively high (>50%) abundances of moganite, the absolute reflectance for samples is significantly reduced. Using microscopic-Raman (~1 μm/pixel) measurements, we estimate the moganite content for various samples. We then compare Raman-derived moganite abundances with microscopic infrared reflectance (25 μm/pixel) spectra to determine the effects of increasing moganite abundance on thermal infrared spectra. We find that moganite is broadly spectrally similar to quartz with major reflectance maxima located between ~1030 and 1280 cm~(-1) and ~400 and 600 cm~(-1); but there are characteristic differences in the peak shapes, peak center positions, and especially the relative peak reflectance magnitudes. For regions with high (>50%) moganite content, the relative magntitudes of the reflectance maxima at 1157 and 1095 cm~(-1) (R_(1095)/R_(1157) band ratio) can be used to estimate the moganite content. This work demonstrates the utility of thermal infrared microspectroscopy in isolating phases that are intimately mixed in a sample, and has applications in planetary science, where constituent phases of quartz-rich sedimentary rocks can be identified using remote or in situ thermal infrared spectroscopy.
机译:我们提出了锰矿以及锰矿与微晶石英的混合物的第一个热红外反射光谱表征。我们发现,对于相对较高(> 50%)的富锰矿,样品的绝对反射率显着降低。使用显微拉曼光谱(〜1μm/像素)测量,我们估算了各种样品中的锰矿含量。然后,我们将拉曼衍生的锰矿丰度与微观红外反射率(25μm/像素)光谱进行比较,以确定增加的锰矿丰度对热红外光谱的影响。我们发现,锰铁矿在光谱上与石英大致相似,最大反射率最大值在〜1030和1280 cm〜(-1)之间,在〜400和600 cm〜(-1)之间。但峰形,峰中心位置,尤其是相对峰反射率幅度存在特征差异。对于含锰量高(> 50%)的区域,可以使用反射率最大值在1157和1095 cm〜(-1)处的相对幅度(R_(1095)/ R_(1157)带宽比)来估算。这项工作证明了热红外显微技术在隔离紧密混合在样品中的各相中的实用性,并在行星科学中具有应用,其中可以使用远程或原位热红外光谱技术来鉴定富含石英的沉积岩的组成相。

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