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Fluidized-bed Fenton treatment of imidacloprid: Optimization and degradation pathway

机译:Fenton流化床处理吡虫啉:最优化和降解途径

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Environmental impact of pesticides is one of the great concerns being addressed by water-food nexus research. Imidacloprid is one of the most used insecticides as an alternative for carcinogenic organochloride insecticides. Even though Imidacloprid has lower toxicity for mammals, its fate and incomplete degradation by conventional wastewater treatment technologies are worrisome when considering continuous environmental exposure. Application of fluidized-bed Fenton process is proposed as an alternative treatment to mitigate the impact of imidacloprid in water. The consequence of different experimental parameter variations such as Fe2+catalyst concentration, H2O2concentration and propylene glycol (a common excipient in commercial pesticides) was evaluated. Experimental results under optimized conditions demonstrate almost complete removal of imidacloprid and abatement of chemical oxygen demand and total organic carbon. The intermediates of oxidized imidacloprid yield during fluidized-bed Fenton treatment were identified using GC–MS and a reaction sequence for imidacloprid degradation was proposed.
机译:农药对环境的影响是水-食物关系研究所关注的重大问题之一。吡虫啉是最常用的杀虫剂之一,可替代致癌的有机氯化物杀虫剂。尽管吡虫啉对哺乳动物的毒性较低,但考虑到持续暴露于环境中,其命运和常规废水处理技术的不完全降解令人担忧。提出应用流化床芬顿法作为减轻吡虫啉在水中影响的替代方法。评估了不同实验参数变化(例如Fe2 +催化剂浓度,H2O2浓度和丙二醇)(商业农药中的常见赋形剂)的结果。在优化条件下的实验结果表明吡虫啉几乎完全被去除,化学需氧量和总有机碳的减少。利用GC-MS鉴定了流化床芬顿处理过程中吡虫啉氧化产量的中间体,并提出了吡虫啉降解的反应顺序。

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