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Experimental studies on Electrochemical and Biosorption treatment of effluent containing Nitrobenzene and Optimization using RSM

机译:含硝基苯废水的电化学和生物吸附处理的实验研究及RSM优化

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A novel process combining Electrochemical Oxidation and Biosorption treatment was presented for Nitrobenzene abatement. The electrochemical oxidation was investigated batch-wise in the presence of NaCl (2g L-1) electrolyte with lead as anode and copper as cathode electrodes. The conditions were optimized using response surface methodology (RSM), which result in 76.4% reduction of COD was found to be maximum and the optimum conditions were satisfied at current density 3.56 A dm-2, time 3 hours, flow rate 40 L hr -1, volume 9 L occur at minimum power consumption of 30.3 kWhr / kg COD. It is followed by biosorption treatment in the presence of biosorbents such as maize and rice stems at 15 g L-1. From this study it was observed that the maximum % of COD reduction was 97.7 % for the optimized time 4 days and volume 6 L for pretreated effluent containing nitrobenzene
机译:提出了一种结合电化学氧化和生物吸附处理的新工艺来减少硝基苯。在NaCl(2g L-1)电解质存在下,以铅为阳极,铜为阴极,分批研究了电化学氧化。使用响应表面方法(RSM)对条件进行了优化,结果发现最大减少了76.4%的COD,并且在电流密度3.56 A dm-2,时间3小时,流速40 L hr-时达到了最佳条件。如图1所示,容积9 L的最低功耗为30.3 kWhr / kg COD。随后在15 g L-1的生物吸附剂(如玉米和水稻茎)存在下进行生物吸附处理。从这项研究中可以观察到,对于最优化的4天时间而言,COD减少的最大百分比为97.7%,对于含有硝基苯的预处理废水,其容积为6 L

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