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Influence of mineral (prefered) orientation on composition mapping: Observed in IR range of transmission spectra

机译:矿物(优选)取向对成分映射的影响:在IR范围内观察到透射光谱

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Spectra of powdered mineral samples are used for calibration of air-borne data and for quantitative estimation of mineral content. However, in natural environments, minerals can be orientated in a specific manner and their lattices are usually unbroken. Using powders, we minimize orientation effects, but thereby creating a level of uncertainty that should be evaluated. In this study, we attempt primarily to estimate the mineral lattice orientation effect and its expression in spectral signature. The simple case of hornblende-amphiboles (in amphibolites) was observed. An un-mounted thin section, free from epoxy, was prepared, and its transmittance was measured with an FTIR (Fourier Transform Infra-Red) micro-spectrometer in 1–2.5 µm. spectral range. Results show spectral variance caused by mineral (preferred) orientation: changing depth of absorptions, spectral shape and transmittance levels.
机译:粉末矿物样品的光谱用于校准空气 - 传播数据和矿物质含量的定量估计。然而,在自然环境中,矿物质可以以特定方式定向,并且它们的格子通常不间断。使用粉末,我们最小化取向效果,但从而产生应该评估的不确定性水平。在这项研究中,我们主要尝试估计矿物晶格取向效应及其在光谱签名中的表达。观察到Horlblende-amphiboles(在倒置倒置)的简单情况。制备没有环氧树脂的未安装薄截面,并用1-2.5μm的FTIR(傅里叶变换红外)微光谱仪测量其透射率。光谱范围。结果表明矿物(优选)取向引起的光谱差异:更换吸收深度,光谱形状和透射率水平。

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