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Electrochemical and spectroscopic studies of pyrite-cyanide interactions in relation to the depression of pyrite flotation

机译:黄铁矿与氰化物相互作用与黄铁矿浮选抑制有关的电化学和光谱研究

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Cyanide is the most commonly used depressant to reject pyrite as a gangue mineral at alkaline pH in differential flotation. However, the depression mechanism of cyanide still remains uncertain. The depression effect has been proposed as the preferential adsorption of cyano species on pyrite, which has, however, not been confirmed experimentally. It is also believed that cyanide inhibits the chemisorption of thiol collectors due to the decrease of surface redox potential. In order to clarify the controversial depression mechanisms, the interactions between pyrite and cyanide at pH 10 were investigated in this study. Preferential adsorption of cyanide on pyrite rather than the decrease of surface redox potential was determined to be the depression contributor. Surface cyanoferric species were identified, both electrochemically and spectroscopically, on pyrite surface in the presence of cyanide, inhibiting the oxidation of pyrite and the oxidation/chemisorption of xanthate. This study provides new insights into the depression of pyrite flotation by cyanide. (C) 2016 Elsevier Ltd. All rights reserved.
机译:氰化物是在浮选过程中在碱性pH值下将黄铁矿拒绝为脉石矿物的最常用抑制剂。但是,氰化物的抑制机理仍然不确定。已经提出了抑制作用是氰基物质在黄铁矿上的优先吸附,然而,该实验尚未得到证实。还据信由于表面氧化还原电势的降低,氰化物抑制了硫醇捕集剂的化学吸附。为了阐明有争议的抑制机理,本研究研究了pH 10时黄铁矿与氰化物之间的相互作用。确定氰化物在黄铁矿上的优先吸附而不是表面氧化还原电势的降低是造成凹陷的原因。在氰化物的存在下,在黄铁矿表面上通过电化学和光谱学方法鉴定了表面氰铁型物质,抑制了黄铁矿的氧化和黄药的氧化/化学吸附。这项研究为氰化物抑制黄铁矿浮选提供了新的见解。 (C)2016 Elsevier Ltd.保留所有权利。

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