圆顶临界矿床电子探针微图的ArcGISTM邻近度和聚类分析

Lorraine M. Negrón, Margaret Piranian, M. Amaya, D. Gorski, N. Pingitore
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摘要

关键元素和稀土元素在军事、工业、商业和消费部门的现代技术设备中的应用越来越多,因此需求量很大。Round Top Mountain位于美国得克萨斯州西部的Sierra Blanca,是一个独特的矿床,为稀土元素,特别是重稀土以及相关关键元素的开发提供了机会。这里的主要目标是评估具有潜在经济价值的副矿物(钇萤石、冰晶石、铀云母、钍石、锡石和铌矿)与主要矿物(钾长石、钠长石和石英)和次要矿物(钙安石、磁铁矿和锆石)之间的距离。在这项研究中,我们从ArcGISTM工具先前应用于电子探针微量分析(EPMA)元素图中构建的矿物图中,探索了这些微小矿物和副矿物在微米到毫米尺度上的接近性和聚类性。我们的目标是确定特定矿物是否在空间上聚集,如果是,在什么距离上聚集。我们注意到,高价值的目标萤石颗粒通常与钾长石和石英颗粒相邻,但不太常见的是磁铁矿和云母颗粒。关于聚类分析,发现大多数次要矿物和副矿物在小尺度(低微米)上聚集在一起,在较大距离(高达1毫米)上分散或随机分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ArcGISTM Proximity and Cluster Analysis of Electron Probe Micro-Maps of Round Top Critical Mineral Deposit
Critical and rare earth elements are in high demand for their increasing incorporation in modern technological devices for applications in the military, industrial, commercial, and consumer sectors. Round Top Mountain, a rhyolite laccolith in Sierra Blanca, west Texas, U.S.A. is a unique mineral deposit that offers opportunity for development of rare earth elements, especially the heavy rare earths, as well as associated critical elements. The main objective here is to evaluate the distances between accessory minerals of potential economic value (yttrofluorite, cryolite, uraninite, thorite, cassiterite, and columbite), and to major (potassium feldspar, albite, and quartz) and minor minerals (annite mi-ca, magnetite, and zircon). In this study we explore the proximity and clustering of these minor and accessory minerals, at the mi-cron-to-millimeter scale, from mineral maps constructed in a previous application of ArcGISTM tools to electron probe microanal-ysis (EPMA) element maps. Our goal is to determine whether specific minerals cluster spatially and, if so, at what distances. We noted that the high-value target yttrofluorite grains often neighbor potassium feldspar and quartz grains, but less commonly magnetite and mica grains. With regard to cluster analysis, most minor and accessory minerals were found to group together at small scales (low micrometer) and were dis-persed or random at larger (up to 1 mm) distances.
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