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Spectral analysis of synthetic quartzofeldspathic glasses using laboratory thermal infrared spectroscopy

机译:实验室热红外光谱对合成石英长石玻璃的光谱分析

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Si-O-Si bond vibrations within silicate materials produce a prominent absorption feature in the 8-12 AM region of thermal infrared (TIR) spectra. The wavelength position of this absorption varies with SiO_2 content and may be used to determine rock composition. However, the presence of glass greatly affects the measurement of emitted and reflected TIR energy from the surface, a phenomenon which is not currently well understood. This study examines the TIR spectral characteristics of a suite of synthetic high-Si02 quartzofeldspathic glasses that vary systematically in composition. Glasses were synthesized in the albite-quartz, oligoclase-quartz, and andesine-quartz systems. Microreflectance (1000 um~2) and TIR emission spectra (bulk sample) were collected, and the spectral band maxima and minima were determined for each. Reflectance band maximum positions show a strong correlation with emissivity band minimum positions, indicating that the two types of spectra are comparable for this study. Excellent correlations are obtained between weight percent SiO_2 and reflectance maxima position, emission minima position, and spectral shoulder position. Molar Al/[Al+Si] and [Na+Ca]/ Si are all well-correlated with reflectance maxima and shoulder positions but slightly less correlated with emission minima. Results of this study will contribute to a better understanding of spectral properties of quartzofeldspathic glasses and will provide a means to more accurately detect and map glassy surfaces (e.g., volcanoes and impact craters) remotely from the ground and from orbit.
机译:硅酸盐材料中的Si-O-Si键振动在热红外(TIR)光谱的8-12 AM区域产生明显的吸收特征。该吸收的波长位置随SiO_2含量而变化,并可用于确定岩石成分。但是,玻璃的存在极大地影响了从表面发射和反射的TIR能量的测量,这种现象目前尚不为人所知。这项研究检查了一组合成的高SiO2石英长石化合成玻璃的TIR光谱特性,这些玻璃的成分在系统上有所不同。玻璃是在钠长石石英,寡聚寡糖石英和安替斯丁石英系统中合成的。收集微反射率(1000 um〜2)和TIR发射光谱(大量样品),并分别确定光谱带的最大值和最小值。反射带的最大位置与发射带的最小位置有很强的相关性,表明这两种光谱在这项研究中具有可比性。 SiO_2的重量百分比与最大反射率位置,最小发射位置和光谱肩位置之间具有极好的相关性。摩尔Al / [Al + Si]和[Na + Ca] / Si都与最大反射率和肩部位置密切相关,但与最小发射率的相关性较小。这项研究的结果将有助于更好地理解石英长石玻璃的光谱特性,并将提供一种手段,可以更准确地检测和绘制远离地面和轨道的玻璃状表面(例如火山和撞击坑)。

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