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Separation of Lead from Chalcopyrite Slurry Using Resin-in-Pulp

机译:用树脂 - 纸浆分离含氯铜矿浆料的铅

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In this study, Resin-in-Pulp (RIP) technology is used to separate Pb from a chalcopyrite slurry. Solvent-impregnated resin, Lewatit VP OC 1026, which contains di(2-ethylhexyl) phosphoric acid (D_2EHPA) in a macroporous polystyrene matrix was used, as the functional group exhibits selectivity for Pb over Cu. Adsorption pH, kinetics, as well as resin and CuSO_4 concentrations were investigated. The results show that the kinetics of Pb and Cu loading are fast, reaching the adsorption equilibrium within 30 min. The equilibrium pH of 2 was chosen as optimum for operation in order to achieve a high Pb extraction rate and extent as well as selectivity for Pb over Cu. High Cu(II) concentration in solution results in Pb(II) requiring a larger amount of resin for the same degree of extraction. Regeneration and reuse tests show that the loss of adsorption capacity happens in the 1st and 2nd cycles and then the adsorption capacity stabilises for the 3rd cycle.
机译:在该研究中,使用树脂 - 纸浆(RIP)技术将PB与黄铜矿浆料分离。溶剂浸渍的树脂,含有在大摩托的聚苯乙烯基质中含有二(2-乙基己基)磷酸(D_2EHPA)的Lewatit VP OC 1026,因为官能团表现出Pb OF Cu的选择性。研究了吸附pH,动力学以及树脂和CUSO_4浓度。结果表明,Pb和Cu载荷的动力学快速,在30分钟内达到吸附平衡。选择2的平衡pH作为操作的最佳选择,以便在Cu上获得高Pb提取率和程度以及Pb的选择性。溶液中的高Cu(II)浓度导致Pb(II)在相同程度的萃取量中需要较大量的树脂。再生和再利用测试表明,吸附能力的损失发生在第1和第2循环中,然后吸附容量稳定为第3循环。

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