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Study of the degradation of an organophosphorus pesticide using electrogenerated hydroxyl radicals or heat-activated persulfate

机译:使用电化羟基自由基或热活化过硫酸盐的有机磷农药降解的研究

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The use of pesticides and their release into the natural environment constitutes a direct threat for the environment and the living beings especially the human health. Consequently, the development of technics to detoxify the pesticide residues to reduce at least areas and contaminated matrix is needed. In the present work, a comparative study was performed on the chemical oxidation of an organophosphorus compound, the dimethoate (DIM), with sulfate radicals and hydroxyl radicals. Both oxidants are generated in situ, the sulfate radicals were produced by heat-activation of persulfate (PS) and hydroxyl radicals were generated by water electrooxidation using a boron doped diamond anode (BDD). For both cases, the target molecule has disappeared but the selective reaction of sulfate radicals with organics led to the production of intermediates which are less biodegradable than DIM since the ratio between the biological oxygen demand (BOD5) and the chemical oxygen demand (COD) has been divided by 2 within the first hour of the process. Whereas the BOD5/COD ratio during the electrochemical oxidation of DIM via hydroxyl radicals showed that it was possible to render the solution biodegradable without reaching a complete mineralization. However, it has been shown that the presence of chlorides in the solution must be avoided because of the formation of undesired organochlorides during the process.
机译:杀虫剂的使用及其释放到自然环境中构成了对环境的直接威胁和尤其是人类健康的生物。因此,需要释放杀虫剂残留物以减少至少区域和污染的基质的技术的发展。在本作工作中,对有机磷化合物的化学氧化,二甲酯(DIM)的化学氧化进行比较研究,具有硫酸盐自由基和羟基。两种氧化剂都是原位产生的,通过使用硼掺杂的金刚石阳极(BDD)通过水电氧化产生硫酸盐基团,通过水电氧化产生羟基。对于这两种情况,靶分子已经消失,但硫酸盐与有机物的选择性反应导致生产的中间体的产生,因为生物需氧量(BOD5)与化学需氧量(COD)之间的比例,其具有比昏厥的衰弱。在过程的第一个小时内被分2划分。虽然通过羟基的电化学氧化期间的BOD5 / COD比显示,但是可以使溶液可生物降解,而不达到完全矿化。然而,已经表明,由于在该过程中形成不需要的有机氯,因此必须避免溶液中的氯化物存在。

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