首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Treatment of dinitrodiazophenol production wastewater by Fe/C and Fe/Cu internal electrolysis and the COD removal kinetics
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Treatment of dinitrodiazophenol production wastewater by Fe/C and Fe/Cu internal electrolysis and the COD removal kinetics

机译:Fe / C和Fe / Cu内电解处理二硝基重氮酚生产废水及COD去除动力学

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In this study, Fe/C and Fe/Cu internal electrolysis (IE) was used to treat dinitrodiazophenol (DDNP) wastewater. COD removal was selected as evaluation index to discuss the difference of the two systems. The results of orthogonal experiment showed that under the same operational conditions, the COD removals of Fe/C IE were all greater than Fe/Cu IE, and the pH of wastewater had the greatest significant impact on COD removal. According to orthogonal and single factor affecting experiments, the optimum operational conditions of Fe/C and Fe/Cu IE were as follow: pH = 1, reaction time (RT) = 2 d, medium molar ratio (R) = 1.37 and reaction temperature (TR) = 25 degrees C (Fe/C IE); pH = 1, RT = 4 d, R = 1.14 and TR = 30 degrees C (Fe/Cu IE), and the COD removals of Fe/C and Fe/Cu IE under the optimum operational conditions were 86.65% and 82.24%, respectively. The COD removal kinetics by Fe/C and Fe/Cu IE was also investigated by classical reaction kinetics, traditional pseudo first-order kinetic and innovative pseudo-kinetics models. The results showed that COD removal processes were well described by the novel pseudo-second-order kinetic model, and the liquid film diffusion was the potential rate-controlling step. (C) 2015 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在这项研究中,Fe / C和Fe / Cu内部电解(IE)用于处理二硝基重氮苯酚(DDNP)废水。选择COD去除作为评估指标,以讨论两种系统的区别。正交试验结果表明,在相同的操作条件下,Fe / C IE的COD去除均大于Fe / Cu IE,废水的pH值对COD去除的影响最大。根据正交和单因素影响实验,Fe / C和Fe / Cu IE的最佳操作条件如下:pH = 1,反应时间(RT)= 2 d,中等摩尔比(R)= 1.37,反应温度(TR)= 25摄氏度(Fe / C IE); pH = 1,RT = 4 d,R = 1.14,TR = 30摄氏度(Fe / Cu IE),在最佳操作条件下,Fe / C和Fe / Cu IE的COD去除率为86.65%和82.24%,分别。还通过经典反应动力学,传统的拟一级动力学和创新的拟动力学模型研究了Fe / C和Fe / Cu IE去除COD的动力学。结果表明,新型伪二级动力学模型很好地描述了化学需氧量的去除过程,液膜扩散是潜在的速率控制步骤。 (C)2015台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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