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A kinetic model that describes removal of chromium VI from rinsing waters of the metal finishing industry by electrochemical processes [Review]

机译:描述通过电化学工艺从金属精加工行业的冲洗水中去除六价铬的动力学模型[综述]

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A study was made to remove Chromium VI (Cr6+), present in large quantities in the rinsing waters from the plating industry, using electrochemical treatment. Large amount of Cr6+ are found. It was found that the reaction rate followed a variable kinetic order at concentrations up to 1700 mg Cr6+/L. It was also noticed that Cr6+ reduction depended on the ferrous ions (Fe2+) released at the anode, the cathode reactions and the acidic corrosion on electrodes. Iron salts produced electrode passivation and it caused a 50% increase in treatment time and power requirements. Eliminating the salt formation at the anode could reduce this effect. Using electrochemical processes it is possible to reuse treated waters in the rising stages of the rating industry owing to the fact that final Cr6+ concentration is less than 0.5 mg/L. Finally, a sludge characterization study revealed that residue generated in the process is not considered dangerous according to Mexican environmental protection standards. [References: 14]
机译:进行了一项研究,使用电化学处理从电镀工业中去除大量存在于漂洗水中的六价铬(Cr6 +)。发现大量的Cr6 +。发现在高达1700 mg Cr6 + / L的浓度下,反应速率遵循可变的动力学顺序。还注意到Cr6 +的还原取决于阳极释放的亚铁离子(Fe2 +),阴极反应和电极上的酸性腐蚀。铁盐会产生电极钝化,并导致处理时间和功率需求增加50%。消除阳极上的盐形成可以减少这种影响。由于最终的Cr6 +浓度小于0.5 mg / L,使用电化学方法可以在工业等级的上升阶段重新使用处理过的水。最后,污泥特性研究表明,根据墨西哥环境保护标准,该过程中产生的残留物不被认为是危险的。 [参考:14]

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