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Prevention of Hydrosphere Contamination with Electroplating Solutions through Electromembrane Processes of Regeneration

机译:通过再生电膜过程预防电镀溶液的水圈污染

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The work studies the process of Сd2+ and Zn2+ cations transfer through a cation-exchange membrane RALEX?CM-PES 11-66 and the cations reduction as metals on the cathodes at the cathode chambers of the electrochemical units with a view to preventing hydrosphere contamination with the electroplating solutions. Electrolysis of the solutions that imitated possible composition of the passivating baths contained 50 g/l sodium dichromate, 10 g/l sulfuric acid and impurity ions of Сd2+ and Zn2+ in various concentrations. The designed passivation solutions with certain amount of impurity ions in the colour solution were forcibly mixed. Impact of the impurity ions concentration in the colour solution and of a forced mixing on the metal reduction was studied. Regularity in increased metal reduction dependent on metal concentration was found and the conditions to favour the ion migration through the cation-exchange membrane due to forced mixing were defined.
机译:该工作研究Сd2+和Zn2 +阳离子通过阳离子交换膜Ralexαcm-pes 11-66的过程和作为电化学单元的阴极室的阴极上的金属的阳离子,以防止水液污染电镀溶液。将钝化浴的可能组成的溶液电解含有50g / l二铬酸钠,10g / L硫酸和镁+和Zn2 +的杂质离子的各种浓度。强制混合具有一定量的杂质离子的设计钝化溶液。研究了杂质离子浓度在颜色溶液中的影响和在金属还原对金属还原上的影响。确定了依赖于金属浓度的增加的金属减少的规律性,并定义了通过强制混合引起的阳离子交换膜的离子迁移的条件。

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