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Chromic acid recovery by electro-electrodialysis I. Evaluation of anion-exchange membrane

机译:电渗析法回收铬酸I.阴离子交换膜的评价

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Electro-electrodialysis (EED) is a promising technology for economic recovery of chromic acid in plating shops. It could potentially achieve chromic acid recovery, removal of metallic impurities and purification of static rinses in one step. There are however, process limitations. These are mainly, the poor stability of the applied anion-exchange membrane (AEM) against the oxidative chromic acid solution and the increase of the AEM resistance, especially at the starting phase of the process, due to the formation of polychromates in the membrane. In this work, various AEM are investigated for chromic acid recovery. The membrane fumasep~® FAP (FuMA-Tech GmbH) seems to be the most efficient. Its current efficiency is much higher than those previously reported in the literature. Furthermore, the fumasep~® FAP is used for process optimisation experiments. The process performance depends on the concentration gradient between product (anolyte) and central compartment (exhausted rinse water) and the temperature. Our results show that batch processing is recommended and the chromate transfer rates through the AEM could be significantly increased when increasing the temperature up to 50℃. Finally, low initial current density (10-20 mA cm~(-2)), feed flow rate higher than 7 cm s~(-1) could help overcoming the process limitations attributed to high AEM resistance.
机译:电渗析(EED)是一种有前途的技术,可以经济地回收电镀车间中的铬酸。它可以一步完成铬酸的回收,金属杂质的去除和静态漂洗液的纯化。但是,存在过程限制。这些主要是由于所应用的阴离子交换膜(AEM)对氧化铬酸溶液的稳定性差,特别是在该方法的开始阶段,由于膜中形成了多铬酸盐,使AEM的耐受性增加。在这项工作中,研究了各种AEM以回收铬酸。膜fumasep〜®FAP(FuMA-Tech GmbH)似乎是最有效的。它的当前效率比文献中先前报道的效率高得多。此外,fumasep®FAP用于过程优化实验。工艺性能取决于产物(阳极电解液)和中央室(耗尽的冲洗水)之间的浓度梯度和温度。我们的结果表明,建议进行批处理,当温度升至50℃时,铬酸盐通过AEM的传输速率可能会显着提高。最后,低初始电流密度(10-20 mA cm〜(-1)),进料流速高于7 cm s〜(-1)可能有助于克服归因于高AEM电阻的工艺限制。

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