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首页> 外文期刊>Brazilian journal of chemical engineering >Recovery and reuse of hexavalent chromium from aqueous solutions by a hybrid technique of electrodialysis and ion exchange
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Recovery and reuse of hexavalent chromium from aqueous solutions by a hybrid technique of electrodialysis and ion exchange

机译:通过电渗析和离子交换混合技术从水溶液中回收和再利用六价铬

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摘要

The chrome plating industry is one of the highly polluting industries whose effluent mainly consists of chromium(VI). This compound is highly toxic to aquatic life and human health. The rinse water constituents reflect the chrome plating bath characteristics; generally dead tank wash water contains about 1% of the plating bath concentration. Other metals and metal compounds usually considered as toxic can be precipitated out by suitably adjusting the pH of the wastewaters. However, Cr(VI) is soluble in almost all pH ranges and therefore an efficient treatment is required for the removal and recovery of chromium, and also for the reuse of wastewaters. The present study aims to recover the chromium by a hybrid technique of electrodialysis and ion exchange for the removal and concentration of chromate ions from the effluent. The different modes of operation like batch recirculation process, batch recirculation process with continuous dipping and continuous process were carried out to remove and recover the chromium from the effluent and the percentage reductions of chromium were found to be 98.69%, 99.18% and 100%, respectively.
机译:镀铬行业是高污染行业之一,其废水主要由六价铬组成。该化合物对水生生物和人类健康具有剧毒。冲洗水成分反映了镀铬液​​的特性。通常,死槽清洗水约占电镀液浓度的1%。通过适当调节废水的pH值,可以沉淀出通常被认为有毒的其他金属和金属化合物。但是,Cr(VI)几乎可在所有pH范围内溶解,因此需要有效的处理方法以去除和回收铬,以及废水的再利用。本研究旨在通过电渗析和离子交换混合技术回收铬,以去除和浓缩废水中的铬离子。进行了不同的操作模式,例如分批再循环工艺,连续浸渍的分批再循环工艺和连续工艺,以从废水中去除和回收铬,铬的还原百分率分别为98.69%,99.18%和100%,分别。

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