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首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Identification and Characterization of Herbicide Penoxsulam Transformation Products in Aqueous Media by UPLC-QTOF-MS
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Identification and Characterization of Herbicide Penoxsulam Transformation Products in Aqueous Media by UPLC-QTOF-MS

机译:UPLUP-QTOF-MS在水性介质中除草剂血红蛋素转化产物的鉴定与表征

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摘要

Photodegradation is an important non-biodegradation process of pesticide degradation in aquatic environments. In this study, the effect of different forms of nitrogen on the photodegradation kinetics of penoxsulam was investigated. The photodegradation of penoxsulam was accelerated by NO3- and NO2- but was not affected by NH4+. Ultra-high-performance liquid chromatography coupled with time-of-flight mass spectrometry was used to separate and identify the transformation products (TPs)converted by photodegradation of penoxsulam in an aqueous solution under UV-Vis (290-800nm) irradiation. Seven major transformation products were identified based on mass spectral data. The structure was determined by elemental composition calculations, comparison of structural analogs, and existing literature. The main pathways of photodegradation were found to be sulfonamide bond cleavage, rearrangement, triazole ring cleavage, and hydroxylation. These findings are critical to elucidate the environmental fate of penoxsulam in aquatic ecosystems and provide a basis for further environmental risk assessment.
机译:光降解是水产环境中农药降解的重要非生物降解过程。在这项研究中,研究了不同形式氮对Penoxsulam的光降解动力学的影响。血红蛋皂胺的光降解通过NO 3和NO 2加速,但不受NH4 +的影响。耦合的超高效液相色谱与飞行时间质谱法相结合,用于分离并鉴定通过在UV-Vis(290-800nm)照射下的水溶液中的Penoxsulam的光降解转化的转化产物(TPS)。基于质谱数据鉴定了七种主要转化产物。该结构由元素组成计算,结构性类似物的比较和现有文献测定。发现光降解的主要途径是磺酰胺键裂解,重排,三唑环裂解和羟基化。这些发现对于阐明水生生态系统中血红素胰岛素的环境命运至关重要,为进一步的环境风险评估提供基础。

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