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Efficient treatment of an electroplating wastewater containing heavy metal ions, cyanide, and organics by H2O2 oxidation followed by the anodic Fenton process

机译:通过H2O2氧化和阳极Fenton工艺对含重金属离子,氰化物和有机物的电镀废水进行有效处理

摘要

      A real electroplating wastewater, containing heavy metals, cyanide, and organic contaminants, was treated by electrocoagulation (EC), H2O2 oxidation, H2O2 pre-oxidation followed by EC, and the anodic Fenton process and the efficacy of the processes was compared. Concentration of cyanide, Cu, Ni, Zn, and Cr was largely decreased by EC within 5 min. When the reaction time was extended, removal of residual cyanide, Cu, and Ni was limited. In H2O2 oxidation, the concentration of cyanide decreased from initial 75 to 12 mg L 1 in 30 min. The effluents from the H2O2 oxidation were further treated by EC or anodic Fenton. In EC, the concentration of total cyanide, Ni, and Cu decreased to below 0.3, 0.5, and 1.5 mg L 1, respectively. Removal efficiency of chemical oxygen demand by EC was less than 20.0%. By contrast, there was 73.5% reduction by the anodic Fenton process with5 mMH2O2 at 30 min; this can be attributed to the oxidation induced by hydroxyl radicals generated by the reaction of H2O2 with the electrogenerated Fe2þ. Meanwhile, residual cyanide, Cu, and Ni can also be efficiently removed. Transformation of organic components in various processes was analyzed using UV-visible and fluorescence excitation-emission spectra.
机译:通过电凝(EC),H2O2氧化,H2O2预氧化,然后再进行EC处理了包含重金属,氰化物和有机污染物的真实电镀废水,并比较了阳极芬顿法和该方法的效率。 EC在5分钟内大大降低了氰化物,Cu,Ni,Zn和Cr的浓度。当延长反应时间时,残留氰化物,Cu和Ni的去除受到限制。在H2O2氧化中,氰化物的浓度在30分钟内从最初的75 mg减少到12 mg L 1。 H2O2氧化产生的废水通过EC或阳极Fenton进一步处理。在EC中,总氰化物,Ni和Cu的浓度分别降至0.3、0.5和1.5 mg L 1以下。 EC去除化学需氧量的效率低于20.0%。相比之下,在30分钟内用5 mMH2O2进行的Fenton阳极氧化处理减少了73.5%。这可以归因于H2O2与电生成的Fe2 +反应生成的羟基自由基引起的氧化。同时,还可以有效地除去残留的氰化物,Cu和Ni。使用紫外可见光谱和荧光激发-发射光谱分析了各种过程中有机成分的转化。

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    Xu Zhao;

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  • 年度 2013
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