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Organic matter and heavy metal removals from complexed metal plating effluent by the combined electrocoagulation/Fenton process

机译:结合电凝/芬顿工艺从复合金属电镀废水中去除有机物和重金属

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摘要

In the present study, the treatment of metal plating wastewater containing complexed metals originating from the nickel and zinc plating process by electrocoagulation (EC) using stainless steel electrodes was explored. In order to improve the organic matter removal efficiency, the effect of H _2O_2 addition to the electrocoagulation (the combined EC/Fenton process) application was investigated. For this purpose, a wide range of H_2O_2 concentrations varying between 15 and 230 mM was tested. All EC and EC/Fenton processes were performed at an initial pH of 2.6 and at an optimized current density of 22 mA/cm~2. Although up to 30 mM H_2O_2 addition improved the EC process performance in terms of organic matter abatement, the highest COD and TOC removal efficiencies were obtained for the combined EC/Fenton process in the presence of 20 mM H _2O_2. Nickel and zinc were completely removed for all runs tested in the present study after pH adjustments. At the optimized operation conditions, the combined EC/Fenton process proved to be an alternative treatment method for the improvement of organic matter reduction as well as complexed metal removal from metal plating industry wastewater.
机译:在本研究中,探索了使用不锈钢电极通过电凝(EC)处理包含镍和锌电镀过程中的复杂金属的金属电镀废水的方法。为了提高有机物去除效率,研究了电凝(EC / Fenton工艺联合应用)中加入H _2O_2的效果。为此,测试了范围在15至230 mM之间的各种H_2O_2浓度。所有EC和EC / Fenton工艺均在初始pH值为2.6且最佳电流密度为22 mA / cm〜2的条件下进行。尽管添加多达30 mM H_2O_2可以改善EC过程的有机物去除性能,但是在20 mM H _2O_2的存在下,EC / Fenton组合过程获得了最高的COD和TOC去除效率。在调整pH值后,本研究中所有测试的镍和锌均被完全去除。在最优化的操作条件下,EC / Fenton组合工艺被证明是改善有机物减少以及从金属电镀行业废水中去除复杂金属的替代处理方法。

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