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三酮类除草剂草酮和磺草酮的高级氧化处理降解。

Degradation of triketone herbicides, mesotrione and sulcotrione, using advanced oxidation processes.

机构信息

Innovation Center of the Faculty of Chemistry, University of Belgrade, Studentski trg 12-16, 11000 Belgrade, Serbia.

出版信息

J Hazard Mater. 2013 Sep 15;260:1092-9. doi: 10.1016/j.jhazmat.2013.06.073. Epub 2013 Jul 12.

Abstract

Degradation of two triketone herbicides, mesotrione and sulcotrione, was studied using four different advanced oxidation processes (AOPs): ozonization, dielectric barrier discharge (DBD reactor), photocatalysis and Fenton reagent, in order to find differences in mechanism of degradation. Degradation products were identified by high performance liquid chromatography (HPLC-DAD) and UHPLC-Orbitrap-MS analyses. A simple mechanism of degradation for different AOP was proposed. Thirteen products were identified during all degradations for both pesticides. It was assumed that the oxidation mechanisms in the all four technologies were not based only on the production and use of the hydroxyl radical, but they also included other kinds of oxidation mechanisms specific for each technology. Similarity was observed between degradation mechanism of ozonation and DBD. The greatest difference in the products was found in Fenton degradation which included the opening of benzene ring. When degraded with same AOP pesticides gave at the end of treatment the same products. Global toxicity and COD value of samples was determined after all degradations. Real water sample was used to study influence of organic matter on pesticide degradation. These results could lead to accurate estimates of the overall effects of triketone herbicides on environmental ecosystems and also contributed to the development of improved removal processes.

摘要

使用四种不同的高级氧化工艺(AOPs):臭氧氧化、介电阻挡放电(DBD 反应器)、光催化和芬顿试剂,研究了两种三酮类除草剂(mesotrione 和 sulcotrione)的降解情况,以找出降解机制的差异。通过高效液相色谱(HPLC-DAD)和 UHPLC-Orbitrap-MS 分析鉴定了降解产物。提出了一种针对不同 AOP 的简单降解机制。在所有两种农药的降解过程中,共鉴定出 13 种产物。据推测,所有四种技术中的氧化机制不仅基于羟基自由基的产生和使用,还包括每种技术特有的其他氧化机制。臭氧氧化和 DBD 的降解机制具有相似性。在芬顿降解中发现了最大的产物差异,其中包括苯环的打开。当用相同的 AOP 降解农药时,在处理结束时会得到相同的产物。在所有降解后测定了样品的总毒性和 COD 值。使用实际水样研究了有机物对农药降解的影响。这些结果可以准确估计三酮类除草剂对环境生态系统的总体影响,并有助于开发改进的去除工艺。

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