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Degradation of three pesticides used in viticulture by electrogenerated Fenton's reagent.

机译:电产生的芬顿试剂降解用于葡萄栽培的三种农药。

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摘要

The degradation of three pesticides: Mistel GD (Cymoxanil+Mancozeb+additives), Cuprofix CZ (Cymoxanil+Zineb+CuSO4+additives) and Lannate 20L (Metomyl+ethanol+other additives), used in viticulture and marketed by various companies, was studied by the Electro-Fenton process. The Fenton's reagent, generated in situ by electrochemistry in a catalytic way, leads to the production of hydroxyl radicals which are very powerful oxidizing agents. These radicals react with organic pollutants and thus lead to their degradation. Each pesticide contains many active ingredients and additives. The treated solutions were followed by HPLC (High Performance Liquid Chromatography) analysis. The chemical oxygen demand (COD) measurement during the processing permitted the evaluation of the kinetic of organic matter decay and the mineralization efficiency. The degradation efficiency was measured for the pesticides under examination using electrogenerated Fenton's reagent. The effects of catalyst nature and concentration on the degradation and the mineralization rates were studied..
机译:研究了三种农药的降解情况,这些农药在葡萄栽培中使用并由多家公司销售,它们分别用于Mistel GD(Cymoxanil + Mancozeb +添加剂),Cuprofix CZ(Cymoxanil + Zineb +​​ CuSO4 +添加剂)和Lannate 20L(Metomyl +乙醇+其他添加剂)。通过电子芬顿工艺。 Fenton试剂是通过电化学以催化方式原位生成的,可导致产生羟基自由基,而羟基自由基是非常强大的氧化剂。这些自由基与有机污染物发生反应,从而导致其降解。每种农药都包含许多活性成分和添加剂。处理过的溶液之后进行HPLC(高效液相色谱)分析。在加工过程中对化学需氧量(COD)的测量可以评估有机物衰减的动力学和矿化效率。使用电产生的芬顿试剂测量了所检查农药的降解效率。研究了催化剂的性质和浓度对降解和矿化速率的影响。

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