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Kinetic study of slaughterhouse wastewater treatment by electrocoagulation using Fe electrodes

机译:铁电极电凝处理屠宰场废水的动力学研究

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In this study, treatment of slaughterhouse wastewater by electrocoagulation was investigated in batch system using Fe electrodes. The effect of various variables such as electrode number, current density and operating time was tested. Pollutant removal efficiency increased with increasing electrode number and operating time. The biochemical oxygen demand (BOD 5), chemical oxygen demand (COD), total suspended solid (TSS), and total nitrogen (TN) removal efficiencies using eight electrodes at a contact time of 50 min and a current density of 10 A/m ~2 were 66, 62, 60, and 56%, respectively. Higher electrode numbers will allow shorter operating times to achieve certain removal efficiencies. Also, removal efficiencies increased by increasing the current density; the highest removal efficiencies of BOD _5, COD, TSS, and TN at a contact time of 50 min and a current density of 25 A/m ~2 were 97, 93, 81, and 84%, respectively. The results also show that the reactor pH varies directly with the current density; at 25 A/m2, the reactor pH increased from an initial value of 7.1 to 7.7 after 50 min. The experimental results showed that the kinetics of BOD _5, COD, TSS and TN removal could be fitted adequately using a first order kinetic model (higher R ~2).
机译:在这项研究中,采用铁电极分批系统研究了电凝法处理屠宰场废水。测试了各种变量(例如电极数量,电流密度和工作时间)的影响。污染物去除效率随着电极数量和操作时间的增加而增加。使用八个电极,接触时间为50分钟,电流密度为10 A / m时,生化需氧量(BOD 5),化学需氧量(COD),总悬浮固体(TSS)和总氮(TN)去除效率〜2分别是66%,62%,60%和56%。较高的电极数量将允许更短的操作时间以实现一定的去除效率。另外,通过增加电流密度可以提高去除效率。在接触时间为50分钟,电流密度为25 A / m〜2时,BOD_5,COD,TSS和TN的最高去除效率分别为97%,93%,81%和84%。结果还表明,反应器的pH值直接随电流密度而变化。在25 A / m2的压力下,反应器的pH在50分钟后从7.1的初始值增加到7.7。实验结果表明,使用一级动力学模型(较高的R〜2)可以很好地拟合BOD _5,COD,TSS和TN去除的动力学。

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