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首页> 外文期刊>Environmental Science and Pollution Research >Abatement of spinosad and indoxacarb residues in pure water by photocatalytic treatment using binary and ternary oxides of Zn and Ti
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Abatement of spinosad and indoxacarb residues in pure water by photocatalytic treatment using binary and ternary oxides of Zn and Ti

机译:锌和钛的二元和三元氧化物光催化处理可消除纯水中的多杀菌素和茚虫威残留物

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摘要

The photodegradation of indoxacarb, a broad spectrum foliar insecticide and spinosad, a natural insecticide containing two active ingredients, spinosyn A (major component) and spinosyn D (minor component), was studied in aqueous suspensions of binary (ZnO and TiO_2) and ternary (Zn_2TiO_4 and ZnTiO_3) oxides under artificial light (300-460 nm) irradiation. As expected, the influence of the semiconductor materials on the degradation of both was very significant in all cases. Photocatalytic experiments showed that the addition of semiconductors in tandem with Na_2S_2O_8 as electron acceptor strongly improved the removal of indoxacarb and spinosad in water compared with the photo-lytic tests. The reaction rates significantly increased, especially for the ZnO/Na_2S_2O_8 and TiO_2/Na_2S_2O_8 systems. The first-order equation (monophasic model) satisfactorily explained the disappearance process, although it offered no explanation for the small concentrations remaining in the process.
机译:在二元(ZnO和TiO_2)和三元(水)悬浮液中研究了茚虫威(一种广谱的叶面杀虫剂和一种多杀菌素,一种含有两种活性成分,多杀菌素A(主要成分)和多杀菌素D(次要成分)的天然杀虫剂)的光降解作用。 Zn_2TiO_4和ZnTiO_3)氧化物在人工光(300-460 nm)照射下。不出所料,在所有情况下,半导体材料对两者降解的影响都非常显着。光催化实验表明,与光解试验相比,以Na_2S_2O_8为电子受体的半导体的串联添加大大提高了水中茚虫威和多杀菌素的去除率。反应速率显着提高,尤其是对于ZnO / Na_2S_2O_8和TiO_2 / Na_2S_2O_8体系。一阶方程(单相模型)令人满意地解释了消失过程,尽管它没有提供关于过程中残留的少量浓度的解释。

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