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IN SITU DISTRIBUTION OF GOLD IN ORES USING HIGH-RESOLUTION X-RAY COMPUTED TOMOGRAPHY

机译:高分辨X射线计算机断层摄影术对矿石中金的原位分布

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摘要

High-resolution X-ray computed tomography (HRXCT) is the industrial equivalent of medical computed axial tomography (CAT) scanning and provides a mechanism for nondestructive, three-dimensional analysis of ore samples. HRXCT produces two-dimensional images ("slices") that reveal the interior of an object as if it had been sliced open along the image plane for viewing. By acquiring a contiguous set of slices, a density map for all or part of a sample volume can be obtained, allowing three-dimensional inspection and measurement of features of interest. HRXCT can resolve details as small as a few tens of microns, even when imaging objects are made of high-density materials. Because the HRXCT technique differentiates mineral grains largely based on their contrasting densities, these studies are particularly effective in the study of gold and other extremely high density grains in contrast to typical rock-forming minerals and other metallic minerals. Imaging of typical stockwork ore from the Grasberg porphyry deposit identified native gold grains as small as 13 mu m in diameter. All of the gold grains are associated with chalcopyrite masses, indicating that both copper and gold concentrations occupy the same fracture porosity and thus appear to have been precipitated during the same mineralization event. These reconnaissance investigations suggest considerable potential for HRXCT studies to contribute to the understanding of ore-forming systems and to practical applications such as ore dressing to maximize precious metal recovery.
机译:高分辨率X射线计算机断层扫描(HRXCT)在工业上等同于医学计算机轴向断层扫描(CAT)扫描,并为矿石样品的无损三维分析提供了一种机制。 HRXCT产生二维图像(“切片”),这些图像显示对象的内部,就像对象已经沿图像平面切开以进行查看一样。通过获取一组连续的切片,可以获得全部或部分样品体积的密度图,从而可以对感兴趣的特征进行三维检查和测量。即使成像对象是由高密度材料制成的,HRXCT仍可分辨几十微米的细节。因为HRXCT技术主要根据矿物的对比密度来区分矿物晶粒,所以与典型的成岩矿物和其他金属矿物相比,这些研究在研究金和其他极高密度晶粒中特别有效。通过对Grasberg斑岩矿床中的典型储备矿石进行成像,可以确定直径为13微米的天然金粒。所有的金晶粒都与黄铜矿块有关,这表明铜和金的浓度都占据相同的断裂孔隙度,因此似乎在相同的矿化事件中已经析出。这些侦查研究表明,HRXCT研究具有巨大的潜力,有助于理解成矿系统,并有助于诸如选矿等实际应用,以最大限度地提高贵金属的回收率。

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