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首页> 外文期刊>Journal of Colloid and Interface Science >Evaluation of the Zn~(2+) transport properties through a cation-exchange membrane by chronopotentiometry
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Evaluation of the Zn~(2+) transport properties through a cation-exchange membrane by chronopotentiometry

机译:计时电位法评估Zn〜(2+)通过阳离子交换膜的传输性质

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In this work the effect of zinc concentration, pH, and boric acid concentration on the zinc transport properties through an IONICS 67-HMR-412 cation-exchange membrane was evaluated. The limiting current density and the transport numbers were determined by means of chronopotentiometry. A model between the limiting current density and the bulk zinc concentration was established, assuming a potential relationship between the zinc transport number through the membrane and the bulk zinc concentration together with the Levich equation for the DBL thickness. A decrease in the initial pH value of the solutions causes considerable modifications both in the plateau region and in the overlimiting current density region of the current-membrane potential curves. The results show that the presence of boric acid produces the precipitation of zinc metaborate on the anodic layer of the cation-exchange membrane
机译:在这项工作中,评估了锌浓度,pH和硼酸浓度对通过IONICS 67-HMR-412阳离子交换膜的锌传输性能的影响。极限电流密度和传输数通过计时电位法确定。建立了极限电流密度与锌的总体浓度之间的模型,假设通过膜的锌传输数与锌的总体浓度之间的潜在关系,以及DBL厚度的Levich方程。溶液的初始pH值降低会导致电流膜电位曲线的平稳区域和极限电流密度区域发生明显变化。结果表明,硼酸的存在在阳离子交换膜的阳极层上产生偏硼酸锌的沉淀。

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