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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Objective geological logging using portable XRF geochemical multi-element data at Plutonic Gold Mine, Marymia Inlier, Western Australia
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Objective geological logging using portable XRF geochemical multi-element data at Plutonic Gold Mine, Marymia Inlier, Western Australia

机译:使用便携式XRF地球化学多元素数据在西澳大利亚州Marymia Inlier的Plutonic金矿进行客观地质测井

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Geological logging by mine and exploration geologists involves the application of a classification code that requires a geologist to make a subjective decision to classify a particular rock unit (e.g. rock type, alteration intensity, mineralisation content). Where multiple geologists carry out logging this approach will most likely result in inconsistencies that are difficult to monitor or assess over time. A potential solution to this problem is to have a method to determine the nature of a given sample based on a set of fixed and quantifiable parameters. Plutonic Gold Mine (Plutonic), in Western Australia, has a growing dataset of more than 150 000 portable X-ray fluorescence (pXRF) multi-element analyses from core and underground face samples, reconciled to Au fire-assay concentration, and logging codes. This study analyses and validates the consistency with which Plutonic's logging codes have been applied from 2009 to 2013. In doing so, we have developed a schema that allows objective logging by utilising elemental data from pXRF analyses to allocate a mineralisation code. A K/V ratio is used to determine the degree of alteration, while As + 12Cu concentrations are used to determine how sulphide-rich a sample is. Thresholds were defined to maintain consistency with pre-existing logged dataset While far from replacing the geologist, this method is complementary that adds significant value to a dataset
机译:矿山和勘探地质学家的地质记录涉及应用分类代码,该分类代码要求地质学家做出主观决定以对特定岩石单元进行分类(例如岩石类型,蚀变强度,矿化含量)。在由多个地质学家进行测井的地方,这种方法很可能导致不一致,随着时间的推移很难对其进行监视或评估。该问题的一种潜在解决方案是具有一种基于一组固定且可量化的参数确定给定样本性质的方法。西澳大利亚州的Plutonic金矿(Plutonic)拥有不断增长的数据集,该数据集包含来自核心和地下工作面样品的超过15万个便携式X射线荧光(pXRF)多元素分析,并已与Au火法分析浓度和测井代码协调一致。本研究分析并验证了从2009年到2013年应用Plutonic测井代码的一致性。在此过程中,我们开发了一种方案,该方案可通过利用来自pXRF分析的元素数据分配矿化代码来进行客观测井。 K / V比用于确定变化程度,而As + 12Cu浓度用于确定样品中的硫化物含量如何。定义阈值以保持与先前存在的已记录数据集的一致性尽管该方法远非取代地质学家,但却是补充方法,可为数据集增加可观的价值

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