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Utilization of trisodium phosphate to eliminate the adverse effect of Mg2+ on the flotation of pyrite

机译:利用磷酸二钠以消除Mg2 +对黄铁矿浮选的不良影响

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摘要

In this study, the effect of Mg2+ on the flotation of pyrite was systematically studied. Micro-flotation results showed that Mg2+ could significantly depress the flotation of pyrite at pH 10. As for the interaction mechanism, solution chemistry calculations, zeta potential measurements and adsorption studies indicated that the formation of Mg(OH)(2) precipitates (due to hydrolysis of Mg2+) were positively charged, which would be adsorbed on the negatively charged pyrite surface, thereby preventing the adsorption of potassium butyl xanthate (PBX). In addition, scanning electron microscopy (SEM) tests, fourier transform infrared (FTIR) spectroscopy studies and X-ray photoelectron spectroscopy (XPS) analysis positively confirmed the presence of Mg(OH)(2) precipitates on the pyrite surface. Interestingly, with the addition of trisodium phosphate (TSP), Mg(OH)(2) precipitates were replaced by negatively charged Mg-3(PO4)(2), which would be desorbed from the pyrite surface due to electrostatic repulsion. In this way, Mg(OH)(2) precipitates were removed from the pyrite surface. Finally, the adsorption amount of PBX on pyrite was restored, as well as the flotation recovery.
机译:在这项研究中,系统地研究了Mg2 +对硫铁矿浮选的影响。微浮选结果表明,Mg2 +可以显着抑制pH10的浮矿浮选。对于相互作用机理,溶液化学计算,Zeta电位测量和吸附研究表明,Mg(OH)(2)沉淀物的形成(由于Mg2 +的水解是正电荷的,其吸附在带负电的硫铁矿表面上,从而防止钾丁酯(PBX)的吸附。此外,扫描电子显微镜(SEM)测试,傅里叶变换红外(FTIR)光谱研究和X射线光电子体光谱(XPS)分析正实证实了黄铁矿表面沉淀的Mg(OH)(2)沉淀物。有趣的是,通过添加磷酸三钠(Tsp),Mg(OH)(2)沉淀物被带负电荷的Mg-3(PO 4)(2)代替,这将从静电排斥引起的硫铁斯表面解吸。以这种方式,将Mg(OH)(2)从黄铁矿表面中除去沉淀物。最后,恢复了黄铁矿上PBX的吸附量,以及浮选回收率。

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