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Photolysis of chlortetracycline in aqueous solution:Kinetics,toxicity and products 被引量:6
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作者 Yong Chen Hua Li +3 位作者 Zongping Wang Tao Tao Dongbin Wei Chun Hu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2012年第2期254-260,共7页
The aqueous photodegradation of the widely used antibiotic chlortetracycline(CTC) was investigated under simulated sunlight.The quantum yield of photodegradation increased from 3.3 × 10-4 to 8.5 × 10-3 wit... The aqueous photodegradation of the widely used antibiotic chlortetracycline(CTC) was investigated under simulated sunlight.The quantum yield of photodegradation increased from 3.3 × 10-4 to 8.5 × 10-3 within the pH range of 6.0 to 9.0.The presence of Ca2+,Fe3+,and NO3-enhanced the photodegradation of CTC,whereas Mg2+,Mn2+,and Zn2+ inhibited the degradation with the order Mn2+ Zn2+ Mg2+ at pH 7.3.The monovalent cations(Na+ and K+) had negligible effect on the photolysis of CTC.Fulvic acid(FA) decreased the photodegradation of CTC due to light screening effect.Hydrogen peroxide(H2O2) was formed concurrently with direct photodegradation of CTC.The generation rate of H2O2 increased from 0.027 to 0.086 μmol/(L.min) when the pH ranged from 6.0 to 9.0.The CTC solution was about three-fold more toxic to the Photobacterium phosphoreum bacteria after irradiation,suggesting that the photoproducts and H2O2 formed in the CTC solution exhibited high risk on the bacteria.By LC-ESI(+)-MS,the photoproducts of CTC were identified.The direct photodegradation of CTC was involved in hydroxylation and N-demethyl/dedismethyl processes.The main photoproducts included the iso-CTC analog containing hydroxyl groups(m/z 511.4 and 495.4),and the N-demethyl/dedismethyl products of the photoproduct m/z 495.4(m/z 481.3 and 467.4).In addition,the photochemical dechlorination of CTC led to tetracycline(m/z 445.5). 展开更多
关键词 CHLORTETRACYCLINE direct photodegradation PHOTOTOXICITY PHOTOPRODUCTS
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4种有机农药在水中的光降解对比研究 被引量:2
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作者 刘津伶 马利民 李卫卫 《四川环境》 2019年第1期29-35,共7页
为了解不同化学结构有机农药的光降解规律,以汞灯、氙灯为光源,在实验室中同时测定四种有机农药阿特拉津、异丙隆、灭草隆以及2,4-D丁酯,研究其在水体中的光解特性。结果表明,4种农药的光降解均符合一级降解动力学(r^2>0.9)。直接光... 为了解不同化学结构有机农药的光降解规律,以汞灯、氙灯为光源,在实验室中同时测定四种有机农药阿特拉津、异丙隆、灭草隆以及2,4-D丁酯,研究其在水体中的光解特性。结果表明,4种农药的光降解均符合一级降解动力学(r^2>0.9)。直接光解途径下,降解速率在两种光源下均遵循MN>ATZ>2,4-D>IPU(汞灯下半衰期7, 22, 4, 14 min,氙灯下半衰期16, 239, 8, 39 h);间接光解途径下,四种有机农药中IPU更容易受硝酸根诱导而加速降解(k_(indirect)/k_(direct)=8),ATZ降解速率几乎没有变化(k_(indirect)/k_(direct)=1),光解速率遵循MN>2,4-D>IPU>ATZ。从有机农药母体分子结构出发,提出芳环上取代基不同与光解机理对不同种农药光解动力学的影响。 展开更多
关键词 直接光降解 间接光降解 阿特拉津 异丙隆 灭草隆 2 4-D
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