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The interaction between copper species and pyrite surfaces in copper cyanide solutions

机译:氰化铜溶液中铜物种与黄铁矿表面之间的相互作用

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摘要

The adsorption of copper ions and the formation of a copper sulfide phase on pyrite surfaces are of vital importance to alter the surface property of pyrite and determine its fate either to be rejected in the flotation of polymetallic sulfide ores or to be recovered in the flotation of pyritic gold ores. Cyanide and copper may co-exist in the process water with complicated speciation. The objective of this study is to understand the interaction between copper cyanide species and pyrite and clarify the possible adsorption of copper on pyrite surfaces from cyanide-bearing solutions. Surface-enhanced Raman spectroscopy and electrochemical measurements were used to determine the reaction products formed on pyrite surfaces. It was found that Cu(I)-bearing species were incorporated into pyrite, forming a CuS-like sulfide from copper cyanide solutions at a more oxidizing potential, while a Cu2S-like sulfide formed at a more reducing potential. The amount of copper deposited on pyrite was significantly improved at a more reducing potential at which the pyrite surface tended to be FeS-like. In addition, these Cu(I)-sulfides on pyrite surfaces were dissolved by cyanide-bearing species at a high CN/Cu ratio, compromising the total amount of copper uptake.
机译:在黄铁矿表面吸附铜离子和形成硫化铜相对于改变黄铁矿的表面性质并确定其命运是在多金属硫化矿浮选中被拒绝还是在浮选中回收至关重要。黄铁矿。氰化物和铜可能会以复杂的形态共存于工艺用水中。这项研究的目的是了解氰化铜物种与黄铁矿之间的相互作用,并阐明含氰化物溶液中黄铁矿表面上铜的可能吸附。使用表面增强拉曼光谱和电化学测量来确定在黄铁矿表面上形成的反应产物。发现将含Cu(I)的物质掺入黄铁矿中,以更高的氧化电位由氰化铜溶液形成CuS样硫化物,而以更高还原电位形成Cu2S样硫化物。在黄铁矿表面趋于呈FeS状的更大还原电位下,沉积在黄铁矿上的铜量得到了显着改善。另外,黄铁矿表面上的这些Cu(I)-硫化物以高的CN / Cu比被含氰化物所溶解,从而损害了铜的吸收总量。

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  • 作者

    Guo, Bao; Peng, Yongjun;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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