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Synchrotron XPS, NEXAFS, and ToF-SIMS studies of solution exposed chalcopyrite and heterogeneous chalcopyrite with pyrite

机译:Synchrotron XPS,NEXAFS和ToF-SIMS研究暴露于黄铁矿和黄铁矿的异质黄铜矿

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摘要

The surface species present on two pure chalcopyrite samples (one with a smooth fracture surface; one with a rough fracture surface) and one heterogeneous sample containing both chalcopyrite and pyrite have been studied using synchrotron X-ray photoelectron spectroscopy (SXPS), near-edge X-ray Absorption Fluorescence Spectroscopy (NEXAFS), and time-of-flight secondary ion mass spectrometry (ToFSIMS).The measurements were performed for samples fractured in N_2 and for samples subsequently exposed to pH 1 HCl solution for 2 h. The comparison of freshly fractured and solution exposed mineral surfaces has allowed for the investigation of the role of other mineral phases on the development of chalcopyrite surface species, and the role of chalcopyrite grain size on surface species development. Analysis of the chalcopyrite region of each sample indicates that increased surface roughness and the presence of pyrite in intimate contact with chalcopyrite increases the formation of surface sulfur species that are implicated in the formation of passivating layers on leached chalcopyrite surfaces. ToF-SIMS analysis of the chalcopyrite and pyrite regions of the heterogeneous sample support the conclusions obtained from the synchrotron surface analysis experiments.
机译:使用同步边缘X射线光电子能谱(SXPS)研究了两个纯黄铜矿样品(一个具有光滑的破裂表面;一个具有粗糙的破裂表面)和一个包含黄铜矿和黄铁矿的非均质样品中存在的表面物种X射线吸收荧光光谱法(NEXAFS)和飞行时间二次离子质谱(ToFSIMS)。测量是针对在N_2中破裂的样品以及随后暴露于pH 1 HCl溶液中2 h的样品进行的。通过对新近压裂和暴露在溶液中的矿物表面进行比较,可以研究其他矿物相对黄铜矿表面物种发展的作用,以及黄铜矿晶粒尺寸对表面物种发展的作用。对每个样品的黄铜矿区域的分析表明,增加的表面粗糙度和与黄铜矿紧密接触的黄铁矿的存在增加了表面硫物质的形成,这与浸出的黄铜矿表面上的钝化层的形成有关。异质样品的黄铜矿和黄铁矿区域的ToF-SIMS分析支持了从同步加速器表面分析实验中得出的结论。

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