首页> 外文会议>International Symposium on Eco-Materials Processing amp; Design; 20050116-18; Jinju(KR) >Semiconductor-Mediated Photocatalysed Degradation of Various Pesticide Derivatives and Other Priority Organic Pollutants in Aqueous Suspensions
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Semiconductor-Mediated Photocatalysed Degradation of Various Pesticide Derivatives and Other Priority Organic Pollutants in Aqueous Suspensions

机译:半导体介导的水悬浮液中各种农药衍生物和其他优先有机污染物的光催化降解

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The photocatalysed degradation of various selected pesticide derivatives, namely N,N-Dimethyl-α-phenyl benzene acetamide (Diphenamid), 1,2-diethyl phthalate (DEP), 5-bromo-3-sec.butyl-6-methyl uracil (Bromacil), 3-tert-butyl-5-chloro-6-methyluracil (Terbacil), 2,4,5-tribromoimidazole (TBI), Methoxychlor, Chlorothalonil and Disulfoton as well as that of two selected priority organic pollutants, namely benzidine and 1,2-diphenyhydrazine (DPH), has been investigated in aqueous suspensions of titanium dioxide (TiO_2) under a variety of conditions. The degradation was studied by monitoring the change in substrate concentration employing UV spectroscopic analysis or HPLC technique and the decrease in total organic carbon (TOC) content, respectively, as a function of irradiation time. The degradation kinetics was studied under different conditions such as reaction pH, substrate and photocatalyst concentration, type of photocatalysts and the presence of alternative additives such as H_2O_2, KBrO_3 and (NH_4)_2S_2O_8 besides molecular oxygen. The degradation rates and the photonic efficiencies were found to be strongly influenced by the above parameters. A toxicity test was performed for irradiated samples of few selected systems measuring the luminescence of bacteria Vibrio fischeri after 30 minutes of incubation.
机译:N,N-二甲基-α-苯基苯乙酰胺(Diphenamid),邻苯二甲酸1,2-二乙基二乙酯(DEP),5-溴-3-仲丁基-6-甲基尿嘧啶( Bromacil),3-叔丁基-5-氯-6-甲基尿嘧啶(Terbacil),2,4,5-三溴咪唑(TBI),甲氧基氯,氯噻酮和Disulfoton以及两种选定的优先有机污染物,即联苯胺和在各种条件下,已经研究了二氧化钛(TiO_2)的水悬浮液中的1,2-二苯肼(DPH)。通过使用紫外光谱分析或HPLC技术监测底物浓度的变化以及总有机碳(TOC)含量的减少来研究降解,该变化是照射时间的函数。研究了在不同条件下的降解动力学,例如反应pH,底物和光催化剂的浓度,光催化剂的类型以及除分子氧以外还存在H_2O_2,KBrO_3和(NH_4)_2S_2O_8等替代添加剂的存在。发现降解速率和光子效率受到上述参数的强烈影响。对少数选定系统的辐照样品进行了毒性测试,测量了孵育30分钟后费氏弧菌的发光。

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