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水中三环唑光降解产物的超高效液相色谱串联高分辨率质谱研究

Ultra-high performance liquid chromatography tandem high-resolution mass spectrometry study of tricyclazole photodegradation products in water.

作者信息

Gosetti Fabio, Chiuminatto Ugo, Mazzucco Eleonora, Mastroianni Rita, Bolfi Bianca, Marengo Emilio

机构信息

Department of Science and Technological Innovation, University of Piemonte Orientale, viale T. Michel 11, 15121, Alessandria, Italy,

出版信息

Environ Sci Pollut Res Int. 2015 Jun;22(11):8288-95. doi: 10.1007/s11356-014-3983-4. Epub 2014 Dec 23.

DOI:10.1007/s11356-014-3983-4
PMID:25529495
Abstract

This paper reports the study of the photodegradation reactions that tricyclazole can naturally undergo, under the action of sunlight, in aqueous solutions of standard tricyclazole and of the commercial BEAM(TM) formulation. The analyses are carried out by ultra-high performance liquid chromatography technique coupled with high-resolution tandem mass spectrometry. Analysis of both tricyclazole and BEAM(TM) water solutions undergone to hydrolysis does not evidence new chromatographic peaks with respect to the not treated solutions. On the contrary, analysis of the same samples subjected to sunlight irradiation shows a decreased intensity of tricyclazole signal and the presence of new chromatographic peaks. Two photodegradation products of tricyclazole have been identified, one of which has been also quantified, being the commercial standard available. The pattern is similar for the solutions of the standard fungicide and of the BEAM(TM) formulation. The results obtained from eco-toxicological tests show that toxicity of tricyclazole standard solutions is greater than that of the irradiated ones, whereas toxicity levels of all the BEAM(TM) solutions investigated (non-irradiated, irradiated, and hydrolyzed) are comparable and lower than those shown by tricyclazole standard solutions. Experiments performed in paddy water solution show that there is no difference in the degradation products formed.

摘要

本文报道了三环唑在阳光作用下,于标准三环唑水溶液和商用BEAM(TM)制剂水溶液中自然发生的光降解反应研究。分析采用超高效液相色谱技术与高分辨率串联质谱联用。对三环唑和BEAM(TM)水解后的水溶液分析表明,与未处理溶液相比,未发现新的色谱峰。相反,对相同样品进行阳光照射分析显示,三环唑信号强度降低且出现了新的色谱峰。已鉴定出三环唑的两种光降解产物,其中一种因有商用标准品也进行了定量。标准杀菌剂溶液和BEAM(TM)制剂溶液的情况类似。生态毒理学试验结果表明,三环唑标准溶液的毒性大于照射后的溶液,而所有研究的BEAM(TM)溶液(未照射、照射和水解)的毒性水平相当且低于三环唑标准溶液。在稻田水溶液中进行的实验表明,形成的降解产物没有差异。

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