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TIR hyperspectral interpretation of quartz crystallinity and composition within silicate bearing rocks

机译:TIR高光谱解释含硅酸盐岩中石英的结晶度和成分

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Thermal infrared (TIR) spectroscopy and related remote sensing of quartz and silicates has traditionally been focused on developing methodologies to interpret their content and chemical composition. This study investigates the relationship between TIR spectral signatures, quartz crystallite dimension, and inferred crystallinity, as a means to discriminate sources of quartz within different lithologies and their associated formation origins. A diverse range of quartz forms, and also quartz bearing igneous, metamorphic and sedimentary samples were used to examine their classification according to various band parameter indices based on the quartz secondary reststrahlen feature. Scherrer analysis using X-ray diffraction (XRD) of a subset of these samples indicated an approximate logarithmic relationship with the band parameters attempted. This study suggests that the quartz crystallite dimension, inferred crystallinity and potentially its formation source, may be interpreted by TIR band parameters using either proximal hyperspectral TIR measurements or remote sensing techniques.
机译:热红外(TIR)光谱和相关的石英和硅胶的相关遥感传统上集中在开发方法中,以解释其含量和化学成分。本研究研究了TIR光谱签名,石英晶岩尺寸和推断结晶度之间的关系,作为区分石英源在不同岩性的方法及其相关地层起源中的方法。通过基于石英级恢复特征的各种频段参数指数,使用了各种石英形式,以及石英,变质和沉积样本的石英形式,以及石英,变质和沉积样本。使用这些样本的子集的X射线衍射(XRD)的Scherrer分析指示与尝试的频带参数的近似对数关系。该研究表明,使用近端高光谱TIR测量或遥感技术,可以通过TIR带参数来解释石英晶岩尺寸,推断结晶度和潜在的形成源。

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