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Comparative study of electrochemical oxidation of herbicide 2,4,5-T: Kinetics, parametric optimization and mineralization pathway

机译:除草剂2,4,5-T电化学氧化的比较研究:动力学,参数优化和矿化途径

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Oxidative degradation of herbicide 2,4,5-T was studied by electrochemical advanced oxidation processes anodic oxidation and electro-Fenton (EF) using Pt/carbon felt and BDD/carbon felt cells. The effect of main operating parameters on oxidation of 2,4,5-T and mineralization of its aqueous solution were investigated. The rate constant for oxidation of 2,4,5-T by OH was determined as (3.7?±?0.2)?×?10 9 ?M ? 1 ?s ? 1 using competition kinetics method. The EF process with BDD anode was shown to be very efficient reaching 94% mineralization in 3?h treatment. Based on identified aromatic intermediates, short-chain carboxylic acids, released inorganic ions and total organic carbon removal measurements, a plausible oxidation pathway for mineralization of 2,4,5-T by hydroxyl radical was proposed. In addition, the evolution of solution toxicity during treatment was monitored by Microtox method showing the formation of toxic aromatic/cyclic intermediates. The results showed also that EF process was able to remove efficiently toxic intermediates and consequently solution toxicity. Graphical abstract Display Omitted.
机译:使用Pt /碳毡和BDD /碳毡电池,通过电化学高级氧化工艺阳极氧化和Fenton电(EF)研究了除草剂2,4,5-T的氧化降解。研究了主要操作参数对2,4,5-T氧化及其水溶液矿化的影响。用OH氧化2,4,5-T的速率常数确定为(3.7≤±0.2)≤x×10 9≤M≤10。 1秒1.采用竞争动力学方法。结果表明,采用BDD阳极的EF工艺在3?h处理中非常有效,达到94%的矿化率。基于已鉴定的芳族中间体,短链羧酸,释放的无机离子和总有机碳去除量,提出了通过羟基自由基矿化2,4,5-T的可能的氧化途径。另外,通过Microtox方法监测了处理过程中溶液毒性的演变,显示了有毒芳香族/环状中间体的形成。结果还表明,EF工艺能够有效去除有毒的中间体,从而去除溶液的毒性。图形抽象显示被忽略。

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