期刊
WATER SCIENCE AND TECHNOLOGY
卷 81, 期 9, 页码 1882-1893出版社
IWA PUBLISHING
DOI: 10.2166/wst.2020.244
关键词
composite; composite-TiO2; TiO2; phenol; photodegradation; supported TiO(2)photocatalysts; UV-C light
资金
- Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [EXC 2008-390540038 -UniSysCat']
- Erasmusthorn KA 107 project
- Federal Ministry of Education and Research of Germany [033RC003]
Different types of commercial titania (P25, P90, PC500, and C-TiO2) were immobilized as single or mixed photocatalyst onto the surface of a natural support material made of cement, clay, and wood fibers. The successful immobilization was studied by different techniques showing a composite material with the mechanical properties of the support material and the photocatalytic behavior of the immobilized titania. The supported photocatalyst showed high mechanical stability and was applied to the photocatalytic degradation of phenol as a model pollutant under UV light irradiation. As the most active photocatalytic material, a mixture PC500 and P90 (comp-PC500/P90) was identified with an apparent pseudo first-order kinetic rate constant (k(app)) of 0.010 min(-1)at a degradation efficiency of 100%. The catalyst was used several times and showed minor loss in activity during four runs due to degradation intermediates adsorbed to the surface, shown by a color change from white to yellow.
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