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首页> 外文期刊>Geochemistry: exploration, environment, analysis >A comprehensive approach to understanding ore deposits using portable X-ray fluorescence (pXRF) data at the Plutonic Gold Mine, Western Australia
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A comprehensive approach to understanding ore deposits using portable X-ray fluorescence (pXRF) data at the Plutonic Gold Mine, Western Australia

机译:利用便携式X射线荧光(pXRF)数据了解西澳Plutonic金矿的综合方法

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摘要

Since 2009 all underground face samples and diamond-drill core samples at the Plutonic Gold Mine (Plutonic), Marymia Inlier, Western Australia have been analysed by portable X-ray fluorescence (pXRF) following a systematic approach. This method is rapid and cost-effective and provides analyses of a large suite of chemical elements which can be used to characterize lithology and alteration. The delivery of a comprehensive workflow for sample preparation, analysis, results correction, and rapid processing enabled a quantum leap in the way mine geologists use geochemistry in modelling the ore body. Interpretation of the mine-site dataset of over 200 000 multi-element analyses has resulted in significant improvements in the understanding of the Plutonic deposit. In this contribution, we review how our understanding of Plutonic has been significantly improved through the use of pXRF geochemical analyses. Incorporation of pXRF data into routine geological modelling at Plutonic has resulted in improved confidence in the models of the ore bodies themselves and late-stage dolerite intrusives. It has allowed better management of milling processes through the development of metallurgical proxies and for significant insights into the role of stratigraphy in controlling the location of gold mineralization. We highlight the potential that a systematic approach to collecting pXRF data can have in a mining environment. These same techniques could be adapted and used in other mine and/or exploration settings.
机译:自2009年以来,采用系统化方法,通过便携式X射线荧光(pXRF)分析了西澳大利亚州Marymia Inlier的Plutonic金矿(Plutonic)的所有地下工作面样品和金刚石钻孔岩心样品。该方法快速且具有成本效益,并且提供了可用于表征岩性和蚀变的大量化学元素的分析。提供了用于样品制备,分析,结果校正和快速处理的全面工作流程,使矿山地质学家利用地球化学对矿体进行建模的方式实现了飞跃。解释超过20万种多元素分析的矿场数据集,已使对Plutonic矿床的理解有了显着改善。在本文中,我们回顾了如何通过使用pXRF地球化学分析显着改善对Plutonic的理解。将PXRF数据整合到Plutonic的常规地质模型中,已提高了对矿体本身和后期白云石侵入体模型的信心。通过开发冶金代理以及对地层学在控制金矿化位置中的作用的重要见解,它可以更好地管理制粉过程。我们强调了在采矿环境中收集pXRF数据的系统方法的潜力。这些相同的技术可以改编并用于其他矿山和/或勘探环境。

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