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Electrochemical incineration of chloromethylphenoxy herbicides in acid medium by anodic oxidation with boron-doped diamond electrode

机译:硼掺杂金刚石电极阳极氧化法在酸性介质中电化学焚烧氯甲基苯氧基除草剂

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摘要

The electrochemical degradation of saturated solutions of herbicides 4-chloro-2-methylphenoxyacetic acid, 2-(4-chlorophenoxy)-2-methylpropionic acid and 2-(4-chloro-2-methylphenoxy)propionic acid in 1M HClO{sub}4 on a boron-doped diamond (BDD) thin film anode has been studied by chronoamperometry, cyclic voltammetry and bulk electrolysis. At low anodic potentials polymeric products are formed causing the fouling and deactivation of BDD. This is reactivated at high potentials when water decomposes producing hydroxyl radical as strong oxidant of organics. Electrolyses in a batch recirculation system at constant current density ≥8 mA cm{sup}(-2) yielded overall decontamination of all saturated solution. The effect of current density and herbicide concentration on the degradation rate of each compound, the specific charge required for its total mineralization and instantaneous current efficiency have been investigated. Experimental results have been compared with those predicted by a theoretical model based on a fast anodic oxidation of initial herbicides, showing that at 30 mA cm{sup}(-2) their degradation processes are completely controlled by mass transfer. Kinetic analysis of the change of herbicide concentration with time during electrolysis, determined by high-performance liquid chromatography, revealed that all compounds follow a pseudo first-order reaction. Aromatic intermediates and generated carboxylic acids have been identified using this technique and a general pathway for the electrochemical incineration of all herbicides on BDD is proposed.
机译:1M HClO中的除草剂4-氯-2-甲基苯氧基乙酸,2-(4-氯苯氧基)-2-甲基丙酸和2-(4-氯-2-甲基苯氧基)丙酸饱和溶液的电化学降解通过计时安培法,循环伏安法和本体电解法研究了掺硼金刚石(BDD)薄膜阳极。在低阳极电势下,会形成聚合物产物,导致BDD结垢和失活。当水分解产生羟基自由基作为有机物的强氧化剂时,高电位将其重新活化。在间歇式循环系统中以恒定电流密度≥8mA cm {sup}(-2)进行电解可对所有饱和溶液进行整体净化处理。研究了电流密度和除草剂浓度对每种化合物降解速率,总矿化所需的比电荷和瞬时电流效率的影响。将实验结果与基于基于初始除草剂的快速阳极氧化的理论模型预测的结果进行了比较,结果表明,在30 mA cm {sup}(-2)时,其降解过程完全受传质控制。高效液相色谱法测定的电解过程中除草剂浓度随时间变化的动力学分析表明,所有化合物均遵循假一级反应。使用该技术已鉴定出芳香族中间体和生成的羧酸,并提出了将所有除草剂电化学焚烧BDD的一般途径。

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