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聚合物膜内相萃取钯溶液中膜相组成、料液相和反萃相的影响

Effects of membrane content, feed phase, and stripping phase for palladium solution extraction by using a polymer inclusion membrane.

机构信息

Environmental Engineering Department, Istanbul Technical University, Maslak 34469, Istanbul, Turkey; National Research Center on Membrane Technologies, Istanbul Technical University, Maslak 34469, Istanbul, Turkey.

National Research Center on Membrane Technologies, Istanbul Technical University, Maslak 34469, Istanbul, Turkey; Nano Science and Nano Engineering Department, Istanbul Technical University, Maslak, 34469, Istanbul, Turkey.

出版信息

Water Sci Technol. 2024 Jul;90(1):256-269. doi: 10.2166/wst.2024.209. Epub 2024 Jun 17.

Abstract

Palladium is now frequently utilized in fuel cells, electroplating, electronics, and catalysis. Due to their rarity and high cost, precious metal recovery has taken on a significant role. The extraction method frequently utilized in polymer inclusion membranes (PIMs) is both efficient and simple since it has been demonstrated that precious metal adsorption on the membrane significantly controls the mechanism of chemical adsorption. In this study, polyvinyl chloride (PVC) as a polymer, A336 as a plasticizer, and trioctylamine (TOA) as a carrier were used to produce a PIM by evaporation. After the production of PIMs, palladium extract was studied. The stripping phase, palladium concentration in the feed phase, and components of the membrane were changed to determine the optimum condition with better extraction ability. When 0.5 M of HCl was used, higher kinetic parameter results and higher than 85% extraction efficiency were achieved compared to other concen- trations. When the EDX results were examined, 3.3% palladium was retained on the membrane surface. When the palladium concentration was selected at 2.5 ppm, higher kinetic parameters were observed, and the extraction efficiency was over 90%. The best membrane was the PIM containing 40% PVC-40% A336-20% TOA.

摘要

钯现在经常用于燃料电池、电镀、电子和催化等领域。由于其稀有性和高成本,贵金属回收已变得非常重要。聚合物负载膜(PIMs)中常用的萃取方法既高效又简单,因为已经证明贵金属在膜上的吸附对化学吸附机制有很大的影响。在这项研究中,聚氯乙烯(PVC)作为聚合物,A336 作为增塑剂,三辛胺(TOA)作为载体,通过蒸发法制备 PIM。在制备 PIM 之后,研究了钯的萃取。改变萃取相、进料相中钯的浓度和膜的组成,以确定具有更好萃取能力的最佳条件。当使用 0.5 M 的 HCl 时,与其他浓度相比,获得了更高的动力学参数结果和超过 85%的萃取效率。当检查 EDX 结果时,发现 3.3%的钯保留在膜表面上。当钯浓度选择为 2.5 ppm 时,观察到更高的动力学参数,萃取效率超过 90%。最好的膜是含有 40% PVC-40% A336-20% TOA 的 PIM。

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