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Mechanistic analysis of solvent extraction of heavy metals in membrane contactors

机译:膜接触器中重金属溶剂萃取的机理分析

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The extraction of Zn~(2+) and Cu~(2+) in a hollow fiber membrane module with a kerosene solution of di(2-ethylhexyl)phosphoric acid (D2EHPA) was studied. Experiments were performed at different aqueous metal concentrations (0.78-15.7 mol/m~3), pH2-6, and organic D2EHPA concentrations (25-100 mol/m~3). A mass transfer model was presented that considers aqueous layer diffusion, membrane diffusion, and organic layer diffusion. The calculated time profiles of aqueous metal concentrations agreed reasonably with the measured data (standard deviation, 9%) based on a good knowledge of the chemistry of extraction reactions and the transport properties of the relevant geometry. By comparing the relative resistance of each diffusion step, the extraction of Zn~(2+) was predominantly governed by aqueous layer diffusion; however, the diffusion in aqueous layer, membrane, and organic layer all played a certain role for the extraction of Cu~(2+). The changes of rate-controlling step(s) with time during the experiments were also evaluated.
机译:研究了用二(2-乙基己基)磷酸(D2EHPA)煤油溶液在中空纤维膜组件中萃取Zn〜(2+)和Cu〜(2+)。实验在不同的金属水溶液浓度(0.78-15.7 mol / m〜3),pH2-6和有机D2EHPA浓度(25-100 mol / m〜3)下进行。提出了考虑水层扩散,膜扩散和有机层扩散的传质模型。基于对萃取反应的化学性质和相关几何结构的传输特性的充分了解,计算出的金属水溶液浓度的时间曲线与测量数据(标准偏差为9%)合理地吻合。通过比较每个扩散步骤的相对电阻,Zn〜(2+)的萃取主要受水层扩散的控制。然而,在水层,膜和有机层中的扩散对Cu〜(2+)的萃取均起了一定作用。还评估了实验期间速率控制步骤随时间的变化。

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