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Photodegradation of insecticide diazinon under simulated solar light irradiation conditions and identification of photoproducts

机译:模拟太阳光照射条件下杀虫剂二嗪农的光降解及光产物的鉴定

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The photodegradation of the organophosphorus insecticide diazinon with a high probability to contaminate aquatic enviro nments under simulated solar light irradiation conditions on natural water of a river in North of Iran has been studied. During exposure to solar natural light, diazinon is broken down and produced photoproducts in environment. The degradation of the insecticide was a 3 2 hour process and included the formation of several intermediates that were identified using GC/ion-trap mass spectrometry with EI or CI in positive and negative ionization mode and HPLC/mass spectrometry. On the basis of the structurally identified photoproducts a possible degradation pathway is proposed for the photolysis of diazinon in natural water. Since primarily hydroxy derivatives were id entified in this solution, the mechanism of degradation was probably based on hydroxyl radical attack. The initial oxidative pathways of the degradation of diazinon involved the substitution of sulfur by oxygen on the P=S bond, cleavage of the pyrimidine ester bond, and oxidation of the isopropyl group. Exact mass measurements of the derivatives allowed the elemental formula of the molecules to be determined confidently
机译:研究了有机磷杀虫剂二嗪农在模拟太阳光照射条件下在伊朗北部河流的天然水上被光降解的可能性高,污染水生环境。在阳光直射下,二嗪农被分解并在环境中产生光产物。杀虫剂的降解过程需要3到2个小时,其中包括几种中间体的形成,这些中间体使用GC /离子阱质谱联用EI或CI在正电离和负电离模式下以及HPLC /质谱进行了鉴定。根据结构鉴定的光产物,提出了可能的降解途径,用于自然水中二嗪农的光解。由于在此溶液中主要确定了羟基衍生物,因此降解机理可能基于羟基自由基的攻击。二嗪农降解的初始氧化途径包括硫在P = S键上被氧取代,嘧啶酯键的裂解以及异丙基的氧化。衍生物的精确质量测量可以确定分子的分子式

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