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Study on Mechanism of Sodium Sulfide by Flotation of Lead and Zinc Oxysalt Minerals

机译:铅锌氧化锌浮选硫化钠机理研究

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In this paper, various methods, such as XPS, XRD, SEM and zeta potential measurement are applied to investigate the action mechanism of sodium sulfide in flotation of lead and zinc oxysalt minerals. The experimental results show that the mechanisms of sodium sulfide in flotation of lead oxysalt minerals and zinc oxysalt minerals are different: on the surface of cerusite, there is lead sulfide phase formed under the reaction of sodium sulfide, resulting that the cerusite surface shows the form of galena, which is advantageous to the adsorption of anion collector and improves the floatability of cerusite as a result. On the surface of zinc oxysalt minerals, there is no zinc sulfide phase formed, but the sodium sulfide increases its surface electronegativity, and enhances the adsorption of cation collector lauryl amine, so the floatability of zinc oxysah minerals is improved. The difference of action mechanisms of sodium sulfide on lead and zinc oxysalt minerals exactly explains the reason why different collectors are selected in the flotation of cerusite and smithsonite, which are both carbonate minerals although.
机译:在本文中,各种方法,如XPS,XRD,SEM和zeta电位的测量被施加到调查硫化钠的铅和锌含氧盐矿物的浮选的作用机制。实验结果表明,硫化钠的铅含氧盐矿物和锌含氧盐矿物的浮选的机制是不同的:cerusite的表面上,存在硫化钠的反应下形成硫化铅相,从而导致了cerusite表面显示的形式的方铅矿,这是有利的阴离子收集器的吸附和提高cerusite的浮性作为结果。锌含氧盐矿物的表面上,没有形成硫化锌相,但硫化钠增加其表面的电负性,并提高的吸附阳离子集电极月桂胺,所以锌oxysah矿物的浮选性得到改善。对铅和锌的含氧盐矿物质硫化钠的作用机制的差异准确地解释为什么不同收集器在cerusite和菱锌矿的浮选,这两者都是碳酸盐矿物虽然被选择的理由。

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