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Treatment of electroplating wastewater containing Cu~(2+), Zn~(2+) and Cr(Ⅵ) by electrocoagulation

机译:电凝法处理含铜〜(2+),锌〜(2+)和铬(Ⅵ)的电镀废水

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摘要

The performance of electrocoagulation, with aluminium sacrificial anode, in the treatment of metal ions (Cu~(2+), Zn~(2+) and Cr(Ⅵ)) containing wastewater, has been investigated. Several working parameters, such as pH, current density and metal ion concentrations were studied in an attempt to achieve a higher removal capacity. Results obtained with synthetic wastewater revealed that the most effective removal capacities of studied metals could be achieved when the pH was kept between 4 and 8. In addition, the increase of current density, in the range 0.8-4.8 A dm~(-2), enhanced the treatment rate without affecting the charge loading, required to reduce metal ion concentrations under the admissible legal levels. The removal rates of copper and zinc were found to be five times quicker than chromium because of a difference in the removal mechanisms. The process was successfully applied to the treatment of an electroplating wastewater where an effective reduction of (Cu~(2+), Zn~(2+) and Cr(Ⅵ)) concentrations under legal limits was obtained, just after 20 min. The electrode and electricity consumptions were found to be 1 g l~(-1) and 32 A h l~(-1), respectively. The method was found to be highly efficient and relatively fast compared to conventional existing techniques.
机译:研究了铝牺牲阳极电凝处理含金属离子(Cu〜(2 +),Zn〜(2+)和Cr(Ⅵ))的性能。为了达到更高的去除能力,研究了几个工作参数,例如pH,电流密度和金属离子浓度。用合成废水获得的结果表明,将pH值保持在4至8时,可以达到研究金属的最有效去除能力。此外,电流密度的增加范围为0.8-4.8 A dm〜(-2)。 ,在不影响电荷负荷的情况下提高了处理速度,这是在允许的法律水平下降低金属离子浓度所必需的。由于去除机理的不同,发现铜和锌的去除速率比铬快五倍。该方法成功地用于处理电镀废水,仅在20分钟后即可在法定范围内有效降低(Cu〜(2 +),Zn〜(2+)和Cr(Ⅵ))的浓度。电极和电耗分别为1 g l〜(-1)和32 A h l〜(-1)。与传统的现有技术相比,该方法被认为是高效且相对快速的。

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