Mechanism of sulfide ore flotation activation by precipitated lead xanthates

T. G. Gavrilova
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Abstract

The authors justify feasibility of sphalerite flotation activation by physisorbed products of interaction of heavy metals and ion xanthates as a case-study of activation with lead ethyl xanthate. It is shown that the collecting agent derivatives can remove the kinetic constraint of the particle-bubble attachment, i.e. they remove water from the interlayer between a mineral particle and a gas bubble. The spreading rate of the collector derivatives governs the rate of the interlayer removal, the induction time and the collectability of this type of adsorption. The tests reveal that the increase in pH from 7 to 10 accelerates spreading of ethyl precipitates of lead xanthate over water surface from 8.5 to 15 cm/s, which correlates with the flotation performance. Based on the mechanism of physisorption, the suppression of sphalerite flotation at higher concentrations of salts of heavy metals is explained.
沉淀铅黄药活化硫化矿浮选机理研究
以铅乙基黄药活化闪锌矿为例,论证了重金属与离子黄药相互作用的物理吸附产物活化闪锌矿浮选的可行性。结果表明,集成剂衍生物可以消除颗粒-气泡附着的动力学约束,即从矿物颗粒和气泡之间的层中去除水。捕收剂衍生物的扩散速率决定了层间去除速率、诱导时间和这种吸附的可收集性。试验结果表明,当pH值从7增加到10时,黄药铅的乙基沉淀物在水面上的扩散速度由8.5 cm/s加快到15 cm/s,这与浮选性能有关。从物理吸附机理出发,解释了高浓度重金属盐对闪锌矿浮选的抑制作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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