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利用半导体氧化物光催化处理回收被氟苯虫酰胺残留污染的水

Reclamation of Water Polluted with Flubendiamide Residues by Photocatalytic Treatment with Semiconductor Oxides.

作者信息

Fenoll José, Vela Nuria, Garrido Isabel, Navarro Ginés, Pérez-Lucas Gabriel, Navarro Simón

机构信息

Departamento de Calidad y Garantía Alimentaria, Instituto Murciano de Investigación y Desarrollo Agrario y Alimentario (IMIDA), Murcia, Spain.

Facultad de Ciencias Politécnicas, Universidad Católica de Murcia, Murcia, Spain.

出版信息

Photochem Photobiol. 2015 Sep-Oct;91(5):1088-94. doi: 10.1111/php.12479. Epub 2015 Jul 17.

Abstract

The photodegradation of flubendiamide (benzenedicarboxamide insecticide), a relatively new insecticide was investigated in aqueous suspensions binary (ZnO of and TiO2 ) and ternary (Zn2 TiO4 and ZnTiO3 ) oxides under artificial light (300-460 nm) irradiation. Photocatalytic experiments showed that the addition of semiconductors, especially ZnO and TiO2 , in tandem with an electron acceptor (Na2 S2 O8 ) enhances the degradation rate of this compound in comparison with those carried out with catalyst alone and photolytic tests. The photocatalytical degradation of flubendiamide using ZnO/Na2 S2 O8 and TiO2 /Na2 S2 O8 followed first-order kinetics. In addition, desiodo-flubendiamide was identified during the degradation of flubendiamide. Finally, application of these reaction systems in different waters (tap, leaching and watercourse) showed the validity of the treatments, which allowed the removal of flubendiamide residues in these drinking and environmental water samples.

摘要

在人工光(300 - 460纳米)照射下,研究了相对较新的杀虫剂氟苯虫酰胺(苯二甲酰胺类杀虫剂)在二元氧化物(ZnO和TiO2)和三元氧化物(Zn2TiO4和ZnTiO3)水悬浮液中的光降解情况。光催化实验表明,与单独使用催化剂和光解试验相比,添加半导体,特别是ZnO和TiO2,并与电子受体(Na2S2O8)联用,可提高该化合物的降解速率。使用ZnO/Na2S2O8和TiO2/Na2S2O8对氟苯虫酰胺进行光催化降解遵循一级动力学。此外,在氟苯虫酰胺降解过程中鉴定出了去碘氟苯虫酰胺。最后,这些反应体系在不同水体(自来水、沥滤液和水道水)中的应用证明了处理方法的有效性,能够去除这些饮用水和环境水样中的氟苯虫酰胺残留。

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