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Degradation and ozonolysis pathway elucidation of deoxynivalenol

机译:脱氧苯酚的降解和臭氧溶解途径阐明

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摘要

To explore the degradation products and ozonolysis pathway of deoxynivalenol (DON), DON (similar to 50 mg/L) in acetonitrile solution was treated by ozone at a concentration of 10.84 g/m(3) and a flow rate of 80 mL/min for the times ranging from 0 to 9 min. The results showed that DON concentration rapidly reduced from 51.11 mg/L to 14.97 mg/L within 9 min of ozone exposure with 98.30% of degradation rate, and the ozonolysis of DON followed the first-order kinetic model. Four ozonolysis products of DON were identified based on the analysis of Liquid chromatography quadrupole time-of-flight mass spectra (LC-QTOF/MS). Their structures were similar to that of DON, while the double bond at C9-C10, 12,13-epoxide ring, and the hydroxyl group at C3 or C7 of DON were all destroyed by ozone. It is deduced that the toxicity of ozonolysis products significantly reduced based on the relationship between structure and toxicity of DON. The ozonolysis pathway of DON followed the Criegee reaction mechanism of ozone according to the chemical structures, accurate mass and molecular formulas of these products.
机译:为了探讨脱辛苯酚(DON)的降解产物和臭氧溶液,通过臭氧处理乙腈溶液中的DON(类似于50mg / L),浓度为10.84g / m(3)和80ml / min的流速对于时间为0到9分钟。结果表明,在臭氧暴露的9分钟内,唐浓度迅速将51.11mg / l至14.97 mg / l迅速降低至14.97mg / l,含有98.30%的降解速率,唐臭氧溶解于一阶动力学模型。基于液相色谱四极其飞行时间质谱(LC-QTOF / MS)的分析来鉴定DON的四种臭氧溶解产物。它们的结构与DON的结构类似,而C3或C7的C3或C7的C3或C7的羟基的双键均以臭氧摧毁。推导出臭氧溶解产物的毒性,基于唐的结构和毒性之间的关系显着降低。唐的臭氧局部途径按照臭氧的Criegee反应机理,根据这些产品的精细结构,精确的质量和分子配方。

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