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首页> 外文期刊>Environmental Progress & Sustainable Energy >Photocatalytic Degradation of Herbicide Isoproturon in TiO2 Aqueous Suspensions: Study of Reaction Intermediates and Degradation Pathways
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Photocatalytic Degradation of Herbicide Isoproturon in TiO2 Aqueous Suspensions: Study of Reaction Intermediates and Degradation Pathways

机译:光催化降解的除草剂在二氧化钛水悬浮液Isoproturon:研究反应中间体和降解途径

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摘要

Heterogeneous photocatalytic degradation and mineralization of Isoproturon (IPU) was investigated in aqueous solutions containing titanium dioxide. The degradation was monitored by observing the change in absorption intensity in UV range and through HPLC analysis. The degradation rate was found to be strongly dependent on catalyst concentration, initial pH, and substrate concentration. The effect of variation in intensity of UV irradiations, catalyst recycling as well as area/volume is also studied for the practical applications. The degradation rate was observed to follow first-order kinetics. TiO2 loading 0.5 g L~(-1), pH 5.0, C0 = 25 mg ~(-1) were the optimized conditions for obtaining the better degradation rates. Reduction in COD and TOC values along with the generation of ammonium further indicated the mineralization of the IPU. Fixed bed studies on glass sheet and small cement slabs eliminates the drawbacks of slurry mode photo-catalysis. An attempt was also made to identify the intermediates (degradation products) through LC-MS analysis.
机译:多相光催化降解和矿化的Isoproturon (IPU)调查包含水解决方案二氧化钛。通过观察吸收强度的变化在紫外范围内,通过高效液相色谱分析。降解率被发现强烈依赖于催化剂浓度、初始pH值,和底物浓度。UV射线强度的变化,催化剂的回收以及面积/体积也研究了实际应用。降解率为观察一阶动力学。pH值5.0,C0 = 25毫克~(1)优化获得更好的降解条件利率。生成铵进一步表示各国议会联盟的矿化。玻璃板和小型水泥石板消除了浆的缺点photo-catalysis模式。也尝试识别中间体(降解产物)质分析。

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