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Investigation into the flotation of malachite, calcite and quartz with three phosphate surfactants

机译:用三种磷酸盐表面活性剂调查孔雀石,方解石和石英的浮选

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The flotation response of malachite, calcite and quartz to bis (2-ethylhexyl) phosphate (DEHPA), dibutyl phosphate (DBP) and tributyl phosphate (TBP) was evaluated by micro-flotation experiments. The results showed that DEHPA exhibited an impressive flotation selectivity for malachite against calcite/quartz in the pH range of 6.0–9.0 and achieved superior malachite flotation recovery over DBP and TBP. The flotation mechanism of DEHPA to malachite was farther investigated through adsorption, contact angle, zeta potential, Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS). The findings inferred that DEHPA reacted with the surface copper atom of malachite via its O atoms of POH and PO to form the hydrophobic surface complexes of Cu(II)-DEHPA. The double active center of the P(O)OH group might be contributed to the stronger affinity of DEHPA and DBP to malachite than that of TBP with the single active center of the PO group. TBP returned the lowest malachite recovery among the three phosphate surfactants, even it has more hydrophobic-carbon atoms than those of DBP.
机译:通过微浮选实验评估孔雀石,方解石和石英至双(2-乙基己基),二丁基磷酸酯(DBP)和磷酸二丁基酯(TBP)的浮选响应。结果表明,DEHPA在6.0-9.0的pH范围内对核石矿体对核石沸石进行令人印象深刻的浮选选择性,并通过DBP和TBP实现了优越的孔雀石浮选回收。通过吸附,接触角,ζ电位,傅立叶变换红外光谱(FTIR)和X射线光电子能谱(XPS),DEHPA对孔雀石的浮选机制更远。调查结果推断,DEHPA通过其O原子与孔雀石的表面铜原子反应,并形成Cu(II)-DehPa的疏水性表面复合物。 P(O)OH基团的双活性中心可能导致DEHPA和DBP对孔基石的较强亲和力而不是PO组单个活跃中心的TBP。 TBP返回三种磷酸盐表面活性剂中最低的孔雀石回收,即使它具有比DBP更多的疏水性 - 碳原子。

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