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An activated carbon fiber cathode for the degradation of glyphosate in aqueous solutions by the Electro-Fenton mode: Optimal operational conditions and the deposition of iron on cathode on electrode reusability

机译:活性炭纤维阴极,用于通过电子芬顿模式降解水溶液中的草甘膦:最佳操作条件和铁在阴极上的沉积,可重复使用

摘要

An activated carbon fiber (ACF) cathode was fabricated and used to treat glyphosate containing wastewater by the Electro-Fenton (EF) process. The results showed that glyphosate was rapidly and efficiently degraded and the BOD5/COD ratio was increased to 0.3 implying the feasibility of subsequent treatment of the treated wastewater by biological methods. The results of ion chromatography and HPLC measurements indicated that glyphosate was completely decomposed. Effective center dot OH generation and rapid recycling/recovery of the Fe2+ ions at the cathode were responsible primarily for the high performance of the ACF-EF process. Factors such as inlet oxygen gas flow rate, Fe2+ dosage, initial glyphosate concentration, applied current intensity, and solution pH that may affect the efficiency of the ACF-EF process were further studied and the optimum operation condition was established. Results of SEM/EDX, BET and XPS analysis showed the deposition of highly dispersed fine Fe2O3 particles on the ACF surface during the EF reaction. The possibility of using the Fe2O3-ACF as iron source in the EF process was assessed. Results showed that the Fe2O3-ACF electrode was effective in degrading glyphosate in the EF process. The deposition of Fe2O3 particles on the ACF electrode had no adverse effect on the reusability of the ACF cathode. (C) 2016 Published by Elsevier Ltd.
机译:制备了活性炭纤维(ACF)阴极,并通过电子芬顿(EF)工艺将其用于处理含草甘膦的废水。结果表明,草甘膦被快速有效地降解,BOD5 / COD比增加到> 0.3,这意味着用生物方法进行处理后废水的可行性。离子色谱和HPLC测量的结果表明草甘膦被完全分解。有效的中心点OH生成和阴极处Fe2 +离子的快速回收/回收主要是ACF-EF工艺的高性能的原因。进一步研究了可能影响ACF-EF工艺效率的因素,如入口氧气流速,Fe2 +用量,草甘膦初始浓度,施加的电流强度和溶液pH值,并确定了最佳操作条件。 SEM / EDX,BET和XPS分析结果表明,在EF反应过程中,高度分散的Fe2O3细粉在ACF表面沉积。评估了在EF工艺中使用Fe2O3-ACF作为铁源的可能性。结果表明,Fe2O3-ACF电极在EF工艺中能有效降解草甘膦。 Fe2O3颗粒在ACF电极上的沉积对ACF阴极的可重复使用性没有不利影响。 (C)2016由Elsevier Ltd.出版

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