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在水半导体悬浮液中十六种取代苯基脲除草剂的光催化转化:中间体和降解途径。

Photocatalytic transformation of sixteen substituted phenylurea herbicides in aqueous semiconductor suspensions: intermediates and degradation pathways.

机构信息

Departamento de Calidad y Garantía Alimentaria, Instituto Murciano de Investigación y Desarrollo Agrario y Alimentario (IMIDA), C/Mayor s/n, La Alberca, 30150 Murcia, Spain.

出版信息

J Hazard Mater. 2013 Jan 15;244-245:370-9. doi: 10.1016/j.jhazmat.2012.11.055. Epub 2012 Dec 1.

Abstract

The photocatalytic degradation of sixteen substituted phenylurea herbicides (PUHs) in pure water has been studied using zinc oxide (ZnO) and titanium dioxide (TiO(2)) as photocatalyst under artificial light irradiation. Photocatalytic experiments showed that the addition of these chalcogenide oxides in tandem with the oxidant (Na(2)S(2)O(8)) strongly enhances the degradation rate of these compounds in comparison with those carried out with ZnO and TiO(2) alone and photolytic tests. Comparison of catalysts showed that ZnO is the most efficient for the removal of such herbicides in optimal conditions and at constant volumetric rate of photon absorption in the photoreactor. Thus, the complete disappearance of all the studied compounds was achieved after 20 min of illumination in the ZnO/Na(2)S(2)O(8) system. The main photocatalytic intermediates detected during the degradation of PUHs were identified. The probable photodegradation pathways were proposed and discussed. The main steps involved: N-demethylation of the N,N-dimethylurea-substituted compounds followed of N-demethylation and N-demethoxylation of the N-methoxy-N-methyl-substituted ureas and hydroxylation of aromatic rings and their aliphatic side-chains of both, parent compounds and intermediates.

摘要

使用氧化锌 (ZnO) 和二氧化钛 (TiO(2)) 作为光催化剂,在人工光照下研究了十六种取代苯基脲类除草剂 (PUHs) 在纯水中的光催化降解。光催化实验表明,与单独使用 ZnO 和 TiO(2) 以及光解实验相比,这些硫属氧化物的添加与氧化剂 (Na(2)S(2)O(8)) 串联强烈提高了这些化合物的降解速率。催化剂的比较表明,在最佳条件下和光反应器中恒定的体积光子吸收率下,ZnO 是去除此类除草剂最有效的催化剂。因此,在 ZnO/Na(2)S(2)O(8) 体系中照射 20 分钟后,所有研究化合物完全消失。鉴定了在 PUHs 降解过程中检测到的主要光催化中间体。提出并讨论了可能的光降解途径。主要步骤包括:N,N-二甲基取代化合物的 N-去甲基化,随后是 N-甲氧基-N-甲基取代脲的 N-去甲基化和 N-去甲氧基化以及芳环和母体化合物及其中间体的脂肪侧链的羟化。

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