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Inactivation of Escherichia coil on Immobilized CuO/CoFe2O4-TiO2 Thin-Film under Simulated Sunlight Irradiation 被引量:2

Inactivation of Escherichia coil on Immobilized CuO/CoFe2O4-TiO2 Thin-Film under Simulated Sunlight Irradiation
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摘要 Composite photocatalysts of CuO/CoFe2O4-TiO2 were successfully synthesized by a sol-gel method and fixed on ordinary tiles. The photosterilization of Escherichia coli was examined on CuO/CoFe2O4-TiO2 thin films under a xenon lamp irradiation. The film was characterized by XRD, and the morphology was observed by SEM. Disinfection data indicated that CuO/CoFe2O4-TiO2 composite photocatalysts have the much better photocatalytic activity than CuO/CoFe2O4 and TiO2. The optimized composition of the nanocomposites has been found to be CuO/CoFe2O4: mTio2=3:7, with loadings ranging from 790 to 1400 mg/m2. The photocatalytic inactivated rate of E. coli (105 CFU/mL) reached 98.4% under the xenon lamp of 150 W within 30 min. Composite photocatalysts of CuO/CoFe2O4-TiO2 were successfully synthesized by a sol-gel method and fixed on ordinary tiles. The photosterilization of Escherichia coli was examined on CuO/CoFe2O4-TiO2 thin films under a xenon lamp irradiation. The film was characterized by XRD, and the morphology was observed by SEM. Disinfection data indicated that CuO/CoFe2O4-TiO2 composite photocatalysts have the much better photocatalytic activity than CuO/CoFe2O4 and TiO2. The optimized composition of the nanocomposites has been found to be CuO/CoFe2O4: mTio2=3:7, with loadings ranging from 790 to 1400 mg/m2. The photocatalytic inactivated rate of E. coli (105 CFU/mL) reached 98.4% under the xenon lamp of 150 W within 30 min.
出处 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2011年第6期1133-1138,共6页 中国化学(英文版)
基金 Project supported by the Natural Science Foundation of China (No. 20876039) Aid Program for Science and Technology Innovative Research Team in Higher Educational Instituions of Hunan Province.
关键词 CuO/CoFe2O4-TiO2 Escherichia coli PHOTOOXIDATION thin films CuO/CoFe2O4-TiO2, Escherichia coli, photooxidation, thin films
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