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Electrochemical treatment of domestic wastewater using boron-doped diamond and nanostructured amorphous carbon electrodes

机译:掺硼金刚石和纳米结构非晶碳电极电化学处理生活污水

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摘要

The performance of the electrochemical oxidation process for efficient treatment of domestic wastewater loaded with organic matter was studied. The process was firstly evaluated in terms of its capability of producing an oxidant agent (H_2O_2) using amorphous carbon (or carbon felt) as cathode, whereas Ti/BDD electrode was used as anode. Relatively high concentrations of H_2O_2 (0.064 mM) was produced after 90 min of electrolysis time, at 4.0 A of current intensity and using amorphous carbon at the cathode. Factorial design and central composite design methodologies were successively used to define the optimal operating conditions to reach maximum removal of chemical oxygen demand (COD) and color. Current intensity and electrolysis time were found to influence the removal of COD and color. The contribution of current intensity on the removal of COD and color was around 59.1 and 58.8 %, respectively, whereas the contribution of treatment time on the removal of COD and color was around 23.2 and 22.9 %, respectively. The electrochemical treatment applied under 3.0 A of current intensity, during 120 min of electrolysis time and using Ti/BDD as anode, was found to be the optimal operating condition in terms of cost/effectiveness. Under these optimal conditions, the average removal rates of COD and color were 78.9±2 and 85.5± 2 %, whereas 70 % of total organic carbon removal was achieved.
机译:研究了电化学氧化工艺对含有机物生活污水的有效处理性能。首先以无定形碳(或碳毡)为阴极,以Ti / BDD电极为阳极,根据其生产氧化剂(H_2O_2)的能力对工艺进行了评估。电解90分钟后,在电流强度为4.0 A且阴极使用无定形碳的情况下,产生了相对较高的H_2O_2(0.064 mM)浓度。相继使用析因设计和集中复合设计方法来定义最佳操作条件,以最大程度地消除化学需氧量(COD)和颜色。发现电流强度和电解时间会影响COD和颜色的去除。电流强度对去除COD和颜色的贡献分别约为59.1%和58.8%,而处理时间对去除COD和颜色的贡献分别约为23.2%和22.9%。在成本/效率方面,发现在电流强度为3.0 A的条件下,在120分钟的电解时间内,以Ti / BDD为阳极进行的电化学处理是最佳的操作条件。在这些最佳条件下,COD和色料的平均去除率分别为78.9±2和85.5±2%,而总有机碳去除率达到70%。

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