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Degradation of 2,4-dichlorophenoxyacetic acid by anodic oxidation and electro-Fenton using BDD anode: Influencing factors and mechanism

机译:使用BDD阳极通过阳极氧化和电芬顿降解2,4-二氯苯酸乙酸:影响因素和机理

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摘要

The degradation of 2,4-dichlorophenoxyacetic acid (2,4-D) was conducted by anodic oxidation (AO) with a boron-doped diamond (BDD) anode, and was greatly enhanced by combination with electro-Fenton (EF) using carbon black modified graphite felt (CB-GF) as cathode. A high current density, low initial pH and high concentration of Na2SO4 favored for the 2,4-D degradation by AO. In EF, 2,4-D degradation rate increased 8 times after using CB-GF cathode, obtaining a higher mineralization current efficiency (53%) and a lower energy consumption (71.8 kWh kg(-1) TOC) due to the higher generation of H2O2. It indicated that the mainly contributing radicals for 2,4-D degradation by AO was (OH)-O-center dot (57.5%), while the contribution improved to 92% by EF. Compared with AO, EF was more efficient and complete for 2,4-D degradation, confirmed by the detection of the main degradation intermediates and short-chain carboxylic acids. This work demonstrated that EF using BDD anode and high-performance CB-GF cathode was efficient for 2,4-D degradation, which would be a promising electrochemical advanced oxidation process for organic wastewater treatment.
机译:用硼掺杂金刚石(BDD)阳极的阳极氧化(AO)进行2,4-二氯苯乙烯酸(2,4-D)的降解,并通过使用碳的电 - 芬顿(EF)的组合大大提高黑色改性石墨毛毡(CB-GF)为阴极。高电流密度,低初始pH和高浓度的Na 2 SO 4,对AO的2,4-D降解有利。在使用CB-GF阴极后,2,4-D降解速率增加了8次,获得更高的矿化电流效率(53%)和较低的能量消耗(71.8 kWh kg(-1)TOC)由于更高的产生H2O2。它表明,AO的主要贡献自由基为2,4-D降解(OH)-O中心点(57.5%),而贡献将改善为EF的92%。与AO相比,EF更有效并且完成2,4-D降解,通过检测主要降解中间体和短链羧酸来证实。这项工作证明了使用BDD阳极和高性能CB-GF阴极的EF对于2,4-D降解有效,这将是用于有机废水处理的有望的电化学先进氧化方法。

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