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Multiple unknown degradants generated from the insect repellent DEET by photoinduced processes on TiO2

机译:在TiO2上通过光诱导过程从驱虫剂DEET中产生多种未知降解物

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摘要

This paper deals with the photocatalytic transformation of N,N-diethyl-m-toluamide (DEET), one of the most widespread and efficient mosquito repellents, under simulated solar irradiation using titanium dioxide as the photocatalytic source of oxidizing species. The investigation involved monitoring of the DEET decomposition, the identification of intermediate compounds and the assessment of mineralization. High-resolution mass spectrometry was employed to assess the evolution of the photocatalyzed process over time. Fifty-one main species were identified after DEET transformation. Several isomeric species were formed and were characterized by analyzing MS and MSn spectra in full, and by comparison with parent molecule fragmentation pathways. In the DEET molecule, the initial transformation involved mono- and polyhydroxylation followed by oxidation of the alcohol groups, cleavage of the alkyl chains or ring opening. All these intermediates are easily degraded and DEET is completely mineralized after 4 h of irradiation. Microtox bioassay (Vibrio fischeri) was employed to evaluate the ecotoxicity of solutions treated by photocatalysis.
机译:本文以二氧化钛作为氧化性物质的光催化源,在模拟太阳辐射下,研究了最广泛,最有效的驱蚊剂之一的N,N-二乙基间甲苯胺(DEET)的光催化转化。调查包括监测DEET的分解,鉴定中间化合物和评估矿化作用。高分辨率质谱用于评估光催化过程随时间的演变。 DEET转化后鉴定出51个主要物种。通过完全分析MS和MSn光谱,并与母体分子片段化途径进行比较,形成并表征了几种异构体。在DEET分子中,最初的转化涉及单羟基和多羟基化,然后是醇基的氧化,烷基链的断裂或开环。辐照4小时后,所有这些中间体均易于降解,并且DEET完全矿化。使用Microtox生物测定法(费氏弧菌)评估通过光催化处理的溶液的生态毒性。

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