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ArcGIS and Principal Component Analysis of Probe Data to Micro-Map Minerals in Round Top Rare Earth Deposit

机译:ArcGIS和探针数据的主要成分分析到圆顶稀土沉积物中的微图矿物质

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Rare earth elements (REEs), especially heavy rare earth elements (HREEs), are in demand for their current and emerging applications in advanced technologies. Here we perform computer-driven micro-mapping at the millimeter scale of the minerals that comprise Round Top Mountain, in west Texas, USA. This large rhyolite deposit is enriched in HREEs and such other critical elements as Li, Be, and U. Electron probe microanalysis of 2 2 mm areas of thin sections of the rhyolite produced individual maps of 16 elements. These were superimposed to generate a 16-element composition at each pixel. Principal components analysis of elements at each pixel identified the specific mineral at that site. The pixels were then relabeled as the appropriate minerals, thereby producing a single mineral map. The overall mineral composition of the 7 studied samples compared favorably with prior analyses of the Round Top deposit available in the literature. Likewise the range of porosity in the maps was consistent with that of previous direct measurements by water saturation. This new statistical and GIS-based technique provides a robust and unbiased approach to electron microprobe mapping. The study further showed that the high-value yttrofluorite grains exhibited little tendency to cluster with other late-stage trace minerals and that the samples extended the previously documented overall homogeneity of the deposit at field scale to this microscopic scale.
机译:稀土元素(REES),特别是重稀土元素(HREES),需要在先进技术中的当前和新兴应用。在这里,我们在美国德克萨斯州的圆顶山的矿物的毫米刻度下进行计算机驱动的微映射。这种大型流纹矿床富含HREE,如LI,BE和U.电子探针微分析为22mm区域的晶圆的薄片,产生了16个元素的个体图。这些被叠加以在每个像素处产生16元件组合物。每个像素的元素的主要成分分析鉴定了该网站的特定矿物质。然后将像素重新制成为适当的矿物质,从而产生单个矿物质地图。 7研究的样品的整体矿物质组合物与文献中可用的圆形顶部沉积物的先前分析有利地比较。同样地图地图中的孔隙率范围与通过水饱和度之前的直接测量的孔隙率一致。这种新的统计和GIS基技术为电子微探跷材料提供了一种坚固且不偏见的方法。该研究进一步表明,高价值亚氟锌颗粒与其他晚期痕量矿物簇的趋势较小,并且样品将先前记录的沉积物的整体均匀性延伸到这种微观规模。

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