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FROM THE MICRO TO THE MACRO SCALE: A TEXTURAL AND CHEMICAL PERSPECTIVE OF CHARACTERIZING WASTE-ROCK MATERIAL

机译:从微量到宏观缩放:一种表征废岩材料的纹理和化学视角

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Understanding relationships between mineralogy, texture, microstructural features, and element distribution and residence in minerals, is critical for accurate modeling of mineral weathering in waste-rock piles. The morphology of minerals and deformation structures, such as veins and faults, are important factors that control: (1) fluid access to the mineral surface to initiate dissolution, (2) the distribution of trace elements, and (3) formation of secondary minerals. We characterized the mineralogy, textures, and chemical properties of waste-rock material at three sites at scales ranging from outcrop to micrometer scale. A comprehensive hand-sample to thin-section scale methodology utilizing light microscopy, scanning electron microscopy, electron microprobe, and laser ablation ICP-MS was used to thoroughly characterize the waste-rock material.
机译:了解矿物学,纹理,微观结构特征和元素分布和矿物质住所之间的关系对于矿物风化在废弃岩石桩中的准确建模至关重要。矿物质和变形结构的形态,如静脉和故障,是控制:(1)流体进入矿物表面以引发溶解,(2)微量元素的分布,以及(3)次级矿物的形成。在从露头到千分尺刻度的尺度下,我们在三个地点表征了废岩材料的矿物学,纹理和化学性质。利用光学显微镜,扫描电子显微镜,电子微探测和激光烧蚀ICP-MS的综合手工样品用于彻底表征废岩材料。

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