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PESTICIDE CHEMICAL OXIDATION STATE-OF-THE-ART

机译:农药化学氧化的最新技术

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The various currently used chemical oxidation processes (AOPs), for pesticide elimination from wastewater are reported. Heterogeneous TiO2 photocatalysis, ozonation and photo-Fenton's reagent are the most intensively investigated technologies. Theoretical and practical advantages and limitations of each method are discussed. Degradation mechanism and experimental conditions employed for the optimization of each technology are reviewed. Performances such as the achieved degree of mineralization and obtained degradation rates are detailed. The various analytical approaches for studying pesticide degradation by AOPs are also discussed. Formation of by-products is unavoidable during cost effoctive treatments. Their detection and identification are required in order to determine which kind of chemical structures are left at the end of the process. For this purpose, the crucial role of gas and liquid mass spectrometry is emphasized. The review reveals a general lack of data on kinetics of formation and disappearance of the major by-products. The efficiency of AOPs has scarcely been investigated at industrial scales, i.e. in presence of a mixture of active ingredients together with their formulating agents and at concentration levels above 10 mg/l. The more polar by-products are largely unknown and their toxicity is usually not addressed.
机译:据报道,目前有各种用于从废水中去除农药的化学氧化工艺(AOP)。异相TiO2光催化,臭氧化和光芬顿试剂是研究最深入的技术。讨论了每种方法的理论和实践优势以及局限性。综述了用于优化每种技术的降解机理和实验条件。详细介绍了获得的矿化度和获得的降解率等性能。还讨论了研究AOP对农药降解的各种分析方法。在成本高昂的处理过程中不可避免地会形成副产品。为了确定在过程结束时剩下哪种化学结构,需要对它们进行检测和鉴定。为此,强调了气相和液相质谱的关键作用。该评论揭示了普遍缺乏有关主要副产物形成和消失动力学的数据。几乎没有在工业规模上研究过AOP的效率,即在活性成分与它们的制剂的混合物存在下并且浓度水平高于10mg / l。极性较大的副产物在很大程度上是未知的,并且通常不会解决其毒性。

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