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Flotation behavior and adsorption mechanism of alpha-hydroxyoctyl phosphinic acid to malachite

机译:α-羟基辛基次膦酸在孔雀石上的浮选行为及吸附机理

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The flotation behavior and adsorption mechanism of a-hydroxyoctyl phosphinic acid (HPA) to malachite were investigated by micro-flotation tests, zeta potential measurements, and FTIR and XPS analysis. The micro-flotation results demonstrated that compared with sodium isobutyl xanthate (SIBX) and styrene phosphonic acid (SPA), HPA exhibited superior collecting performances to direct flotation recovery of malachite and floated out above 80% malachite at pH 5-10. The results of zeta potential measurement inferred that there might be covalent bonds between HPA and copper on the malachite surface. The FTIR analysis confirm that HPA might react with copper species of malachite surfaces to form Cu-HPA complex adsorption layers, with a release of H ions (from P-H group). The XPS analysis provided very clear evidence that the Cu(II) species was partly reduced to Cu (I) species during HPA chemisorption on malachite surfaces, accompanying P(III) oxidation to P(V) species of HPA. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过微浮选试验,ζ电位测量,FTIR和XPS分析研究了α-羟基辛基次膦酸(HPA)在孔雀石上的浮选行为和吸附机理。微浮选结果表明,与异丁基黄药酸钠(SIBX)和苯乙烯膦酸(SPA)相比,HPA表现出优异的收集性能,可直接浮选回收孔雀石,并在pH 5-10时浮出80%以上的孔雀石。 Zeta电位测量的结果表明,孔雀石表面HPA和铜之间可能存在共价键。 FTIR分析证实,HPA可能与孔雀石表面的铜物质发生反应,形成Cu-HPA复合物吸附层,并释放出H离子(来自P-H组)。 XPS分析提供了非常明确的证据,表明在孔雀石表面HPA化学吸附过程中,Cu(II)物种部分还原为Cu(I)物种,伴随P(III)氧化为HPA的P(V)物种。 (C)2014 Elsevier Ltd.保留所有权利。

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