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Kinetics and mechanism of the hydrolysis of thiamethoxam

机译:噻虫嗪水解的动力学和机理

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摘要

The degradation of thiamethoxam [(EZ)-3-(2-chloro-1,3-thiazol-5-yl-methyl)-5-methyl-1,3,5-oxadiazinan-4-ylidene (nitro) amine] insecticide in buffers at different pH and temperature levels was investigated in laboratory studies. Acidic hydrolysis under conventional heating conditions and alkaline hydrolysis under both conventional heating and microwave conditions were carried out. Different hydrolysis products were found to form under alkaline and acidic conditions. Hydrolysis of thiamethoxam in acidic, neutral and alkaline buffers followed first-order reaction rate kinetics at pH 4, 7 and 9.2, respectively. Thiamethoxam readily hydrolyzed in alkaline buffer but was comparatively stable in neutral buffer solution. The main products formed under different conditions were characterized on the basis of infrared (IR), 1H-NMR and Mass spectroscopy. The possible mechanisms for the formation of these hydrolysis products have also been proposed.
机译:噻虫嗪[(EZ)-3-(2-氯-1,3-噻唑-5-基-甲基)-5-甲基-1,3,5-恶二嗪基-4-亚硝基(硝基)胺]的杀虫剂降解在实验室研究中研究了在不同pH和温度水平下缓冲液中的维生素B。在常规加热条件下进行酸性水解,在常规加热和微波条件下均进行碱性水解。发现在碱性和酸性条件下会形成不同的水解产物。噻虫嗪在酸性,中性和碱性缓冲液中的水解分别遵循第一级反应速率动力学,分别在pH 4、7和9.2下进行。噻虫嗪在碱性缓冲液中易水解,但在中性缓冲液中相对稳定。通过红外光谱, 1 H-NMR和质谱对在不同条件下形成的主要产物进行了表征。还提出了形成这些水解产物的可能机理。

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