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Advanced mineral characterization and petrographic analysis by -EDXRF, LIBS, HSI and hyperspectral data merging

机译:通过-EDXRF,LIBS,HSI和Hyperspectral数据合并的高级矿物特征和岩体分析

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摘要

Petrography and mineralogy are fundamental for understanding processes in various geoscientific fields. Plutonic rock nomenclature is based on mineralogical composition. Therefore, identifying and quantifying minerals is a key for plutonic rock classification. To accomplish this, novel advancements in instrumentations, such as energy dispersive x-ray fluorescence mapping (-EDXRF) or hyperspectral imaging (HSI) provide fast and non-destructively spatially resolved and large-scale chemical information. This work describes a comprehensive approach to combine chemical, mineralogical and textural information from -EDXRF, Laser Induced Breakdown Spectroscopy (LIBS) and HSI for petrographic analysis of plutonic rocks. Using supervised classification of spectral information, mineral distribution maps are obtained for image analysis including geometrical data of each grain, such as grain size, grain orientation and grain location for subsequent targeted analysis and the modal mineralogy for plutonic rock classification in a QAPF-diagram for 20 rock slabs. The combination of the three mapping techniques can provide valuable information within the limit of each technique such as of spatial resolution or element sensitivity, but with little time needed for sample preparation and measurement. In general, it is an objective, repeatable and quantifiable way for modal mineralogy and petrographic image analysis.
机译:岩画和矿物学是对各种地球科学领域的理解过程的基础。浮雕岩术基于矿物学组合物。因此,识别和定量矿物质是浮雕岩石分类的关键。为了实现这一点,仪器中的新推进,例如能量分散X射线荧光映射(-EDXRF)或高光谱成像(HSI)提供快速和非破坏性的空间分辨和大规模化学信息。这项工作描述了一种综合方法,可以将化学,矿物学和纹理信息从-edxRF,激光诱导的击穿光谱(LIBS)和HSI用于浮雕岩石分析的岩石分析。利用光谱信息的监督分类,获得矿物分布图,用于图像分析,包括每个谷物的几何数据,例如用于随后的靶向分析的晶粒尺寸,晶粒取向和晶粒位置以及QAPF图中的浮雕岩石分类的模态矿物学。 20岩石板。三种映射技术的组合可以在诸如空间分辨率或元素灵敏度的每个技术的极限内提供有价值的信息,但是样品制备和测量需要几乎需要的时间。通常,它是模态矿物学和岩体图像分析的客观,可重复和可量化的方式。

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