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Mapping Magmatic and Hydrothermal Processes from Routine Exploration Geochemical Analyses

机译:从常规勘探地球化学分析中映射岩浆和水热过程

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摘要

Analytical methods used by commercial assay laboratories have improved enormously in recent years. Inductively coupled plasma-atomic emission spectroscopy and inductively coupled plasma-mass spectrometry methods now report analyses for half of the periodic table with exceptional detection limits and precision. It is becoming commonplace for mining companies to use such methods routinely for the analysis of drill samples throughout mineral deposits. Improvements in software and computing power now allow rapid interrogation of upward of 100,000 assay samples. Geochemical analyses are quantitative, are independent of observer bias, and can form the basis for robust geologic and mineralogical models of mineral deposits, as well as shed light on scientific questions. In particular, consistently collected, high-quality geochemical analyses can significantly improve and systematize logging of lithological and hydrothermal alteration mineralogic changes within drill core. In addition, abundant, high-quality geochemical data provide insights into magmatic and hydrothermal processes that were previously difficult to recognize and that have obvious applications to mineral exploration and improved genetic models of ore deposits. This paper describes a workflow that mining industry geologists can apply to their multielement analysis data to extract more information about magma compositions and gangue mineralogy.
机译:近年来,商业捕捞实验室使用的分析方法巨大地改善。电感耦合等离子体 - 原子发射光谱和电感耦合等离子体质谱法现在报告分析周期表的一半,其具有卓越的检测限制和精度。矿业公司正变得普遍,用于分析整个矿床钻探样品的分析。软件和计算能力的改进现在允许快速询问100,000个测定样本。地球化学分析是定量的,与观察者偏倚无关,可以为矿物沉积物的强大地质和矿物学模型以及科学问题的棚光构成基础。特别地,始终收集的高质量地球化学分析可以显着改善和系统化钻石内岩性和水热改变矿物学变化的测井。此外,丰富,高质量的地球化学数据提供了对先前难以识别的岩浆和水热过程的见解,并且对矿物勘探和改进的矿床遗传模型具有明显的应用。本文介绍了矿业地质学家可以应用于其多元素分析数据的工作流程,以提取有关岩浆组合物和甘蓝矿物学的更多信息。

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