Sunlight photocatalytic activity of CdS modified TiO2 loaded on activated carbon fibers
β Scribed by Wenxia Zhao; Zhipeng Bai; Ailing Ren; Bin Guo; Can Wu
- Book ID
- 104001768
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 314 KB
- Volume
- 256
- Category
- Article
- ISSN
- 0169-4332
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β¦ Synopsis
To improve the photocatalytic application performances of TiO 2 , in this work, firstly CdS modified Degussa P25 TiO 2 (CdS/TiO 2 ) composites were prepared by two methods, sol-gel method and precipitation method. Next they, sol-gel-CdS/TiO 2 (sg-CdS/TiO 2 ) and precipitation-CdS/TiO 2 (pp-CdS/ TiO 2 ), were loaded on activated carbon fibers (ACFs) by dip-coating method using the sodium carboxymethyl cellulose as adhesives. The composites were characterized by XRD, UV-vis absorbance spectra, SEM, EDS and BET. The photocatalytic activities under sunlight were investigated by the degradation of methylene blue. The results showed that CdS/TiO 2 composites were mainly composed of anatase-TiO 2 and little CdS cubic phases. The absorption wavelengths of sg-CdS/TiO 2 and pp-CdS/TiO 2 composites were extended to 590 nm and 740 nm, respectively. The absorption edge had a pronounced 'red shift'. From EDS analysis, the elemental contents of CdS/TiO 2 were mainly Ti and O and a small quantity of S and Cd. CdS/TiO 2 loaded on ACFs were in the form of small clusters, but not very uniform; compared with the original ACFs, the surface area and pore volume of CdS/TiO 2 /ACFs decreased slightly, respectively, while the average pore diameter was not changed. The photodegradation rate of methylene blue under sunlight with CdS/TiO 2 /ACFs composites was markedly higher than that of P25-TiO 2 /ACFs, and the effect of pp-CdS/TiO 2 /ACFs composites was better than that of sg-CdS/TiO 2 /ACFs, when irradiated for 180 min, and the photodegradation rate of methylene blue reached to 90.1%. The photodegradation kinetics of the methylene blue fitted with the Langmuir-Hinshelwood equation. The apparent reaction rate constants of sg-CdS/TiO 2 /ACFs and pp-CdS/TiO 2 were 0.0105 min Γ1 and 0.0146 min Γ1 , respectively, which were about 1.3-1.7 times as large as that of P25-TiO 2 /ACFs.
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