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Removal of colour and COD from wastewater containing acid blue 22 by electrochemical oxidation

机译:通过电化学氧化去除酸性蓝22废水中的颜色和COD

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Electrochemical oxidation of synthetic wastewater containing acid blue 22 on a boron-doped diamond electrode (BDD) was studied, using cyclic voltammetry and bulk electrolysis. The influence of current density, dye concentration, flow rate, and temperature was investigated, in order to find the best conditions for COD and colour removal. It was found that, during oxidation, a polymeric film, causing BDD deactivation, was formed in the potential region of water stability, and that it was removed by anodic polarisation at high potentials in the region of O_2 evolution. Bulk electrolysis results showed that the electrochemical process was suitable for completely removing COD and effectively decolourising wastewaters, due to the production of hydroxyl radicals on the diamond surface. In particular, under optimal experimental conditions of flow rates (i.e. 300 dm~3 h~(-1)) and current density (i.e. 20 mA cm~(-2)), 97% of COD was removed in 12 h electrolysis, with 70 kWh m~(-3) energy consumption.
机译:利用循环伏安法和本体电解法研究了含酸性蓝22的合成废水在掺硼金刚石电极(BDD)上的电化学氧化。研究了电流密度,染料浓度,流速和温度的影响,以便找到最佳的COD和脱色条件。发现在氧化期间,在水稳定性的潜在区域中形成引起BDD失活的聚合物膜,并且在O_2析出区域中在高电势下通过阳极极化将其除去。大量电解结果表明,由于在金刚石表面产生了羟基自由基,因此电化学过程适合于完全去除COD并有效地使废水脱色。特别地,在流速(即300 dm〜3 h〜(-1))和电流密度(即20 mA cm〜(-2))的最佳实验条件下,电解12 h可去除97%的COD。 70 kWh m〜(-3)能耗。

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