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Electrochemical and spectroscopic study of interfacial interactions between chalcopyrite and typical flotation process reagents

机译:黄铜矿与典型浮选工艺试剂之间界面相互作用的电化学和光谱研究

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摘要

Comparative voltammetry and differential double-layer capacitance studies were performed to evaluate interfacial interactions between chalcopyrite (CuFeS2) and n-isopropyl xanthate (X) in the presence of ammonium bisulfite/39wt% SO2 and caustic starch at different pH values. Raman spectroscopy, Fourier transform infrared (FTIR) spectroscopy, contact angle measurements, and microflotation tests were used to establish the type and extent of xanthate adsorption as well as the species involved under different mineral surface conditions in this study. The results demonstrate that the species that favor a greater hydrophobicity of chalcopyrite are primarily CuX and S-0, whereas oxides and hydroxides of Cu and Fe as well as an excess of starch decrease the hydrophobicity. A conditioning of the mineral surface with ammonium bisulfite/39wt% SO2 at pH 6 promotes the activation of surface and enhances the xanthate adsorption. However, this effect is diminished at pH a parts per thousand yen 8, when an excess of starch is added during the preconditioning step.
机译:在不同的pH值下,在亚硫酸氢铵/ 39wt%SO2和苛性淀粉存在下,进行了比较伏安法和差分双层电容研究,以评价黄铜矿(CuFeS2)和正异丙基黄药(X)之间的界面相互作用。拉曼光谱,傅立叶红外光谱(FTIR)光谱,接触角测量和微浮选试验用于确定黄药的吸附类型和程度以及在不同矿物表面条件下涉及的物质。结果表明,有利于黄铜矿更大疏水性的物质主要是CuX和S-0,而Cu和Fe的氧化物和氢氧化物以及过量的淀粉会降低疏水性。在pH值为6的条件下,用亚硫酸氢铵/ 39wt%的SO2对矿物表面进行处理可促进表面活化并增强黄药的吸附。但是,当在预处理步骤中加入过量的淀粉时,在pH千分之八的情况下,这种作用减弱。

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