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Electrolytic Recovery Of Chromium Salts From Tannery Wastewater

机译:从制革废水中电解回收铬盐。

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Tannery wastewater collected from a local leather industry in Peshawar, Pakistan was subjected to DC electrolysis in a simple cell having two static sheet electrodes and stirring assembly after proper dilution and adjustment to desired conditions. One percent HNO_3 and 1% NaHCO_3 were used as electrolytes and pH adjusters. The latter salt also worked as sodium source for anodic deposition of Na_2Cr_2O_7. Various combinations of electrodes were tested and conditions optimized for best electrode couple with increased recovery and removal of chromium in the form of Cr(OH)_3 and/or Na_2Cr_2O_7 at cathode and anode, respectively. The recovery of 99% chromium was achieved after 2 h electrolysis at a cell potential of 1.0 V, pH 5.0 and stirring rate of 500 rpm using Pb sheet as anode and Cu sheet as cathode. The most interesting and novel finding of this work was the recovery of the mentioned salt(s) alone at Cu cathode or Pb anode or collectively at both electrodes by proper control of pH. Such treatment not only minimizes the environmental water pollution, but results in the formation of useful products employed for recycling purpose in tannery or other related industry to make the process economical.
机译:从巴基斯坦白沙瓦当地皮革工业收集的制革废水在具有两个静态片状电极的简单电解槽中进行直流电解,并经过适当稀释并调节至所需条件后进行搅拌。 1%的HNO_3和1%的NaHCO_3用作电解质和pH调节剂。后者的盐还用作钠沉积Na_2Cr_2O_7的钠源。测试了电极的各种组合,并针对最佳电极优化了条件,并分别在阴极和阳极处以Cr(OH)_3和/或Na_2Cr_2O_7的形式提高了铬的回收率和去除率。电解2小时后,以Pb片为阳极,Cu片为阴极,在1.0 V的电池电势,pH 5.0和500 rpm的搅拌速度下电解2小时后,回收率达到99%。这项工作最有趣和新颖的发现是,通过适当控制pH值,可以在铜阴极或铅阳极处单独回收上述盐,或在两个电极处共同回收所提及的盐。这种处理不仅使环境水污染最小化,而且导致形成用于制革厂或其他相关行业中的回收目的的有用产品,从而使该过程经济。

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