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Comparison of photocatalysis and photolysis of malathion, isomalathion, malaoxon, and commercial malathion—Products and toxicity studies

机译:马拉硫磷,异马拉硫磷,马拉松和商业马拉硫磷的光催化和光解比较—产品和毒性研究

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摘要

Malathion, one of the most widely applied insecticides, is still used in agriculture. There are many studies regarding its degradation under different experimental conditions, but few deal with its transformation products, i.e. malaoxon and isomalathion. Thus, malathion, malaoxon, isomalathion, and Radotion (one of its over 6000 commercial forms) were studied in terms of their degradation kinetics, identification of their transformation products, their toxicity, and their degree of mineralization, during UV photolysis (λ = 254 nm) and TiO_2 photocatalysis (λ = 355 nm). The degradation kinetics was similar for all four starting materials. More than 75% of theoretically expected sulfur in P = S and P-S groups was oxidized after 240 min of photolysis and photocatalysis. On the other hand, less than 30% of stoichiometrically predicted amounts of phosphate was detected in the photolytic experiments, but more than 80% of expected phosphate was detected after photocatalytic treatment of all four organophosphorous materials. Several transformation products were identified by mass spectra of representative gas chromatographic peaks. Oxidation and isomerization were found as the main reactions of butenedioc acid diethyl esters and their analogs. The formation of malaoxon, isomalathion or trimethyl phosphate esters correlated well with the induced toxicity (inhibition of acetylcholinesterase), which was observed in photocatalysis of malathion and Radotion, and in photolysis of malaoxon and Radotion.
机译:马拉硫磷是应用最广泛的杀虫剂之一,目前仍用于农业。关于其在不同实验条件下的降解的研究很多,但很少涉及其转化产物马拉索和异马拉硫磷。因此,研究了马拉硫磷,马拉松,异马拉硫磷和速溶(超过6000种商业形式之一)在紫外线光解过程中的降解动力学,鉴定其转化产物,毒性和矿化程度(λ= 254)。 nm)和TiO_2光催化作用(λ= 355 nm)。所有四种原料的降解动力学都相似。经过240分钟的光解和光催化后,P = S和P-S组中超过理论上预期的硫的75%被氧化。另一方面,在光解实验中检测到少于30%的化学计量预测的磷酸盐,但是在对所有四种有机磷材料进行光催化处理后,检测到超过80%的预期磷酸盐。通过代表性的气相色谱峰的质谱鉴定了几种转化产物。发现氧化和异构化是丁烯二酸二乙酯及其类似物的主要反应。马拉硫磷,异马拉硫磷或三甲基磷酸酯的形成与诱导的毒性(乙酰胆碱酯酶的抑制)具有很好的相关性,在马拉硫磷和反刍动物的光催化以及马拉oxon和反刍动物的光解中观察到了这种毒性。

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