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Photocatalytic Degradation of Phenol Using ImmobilizedTiO2Nanotube Photocatalysts
[摘要] TiO2nanotubes immobilized on silica gel were used in the photocatalytic degradation of phenol in a batch reactor. The highest rate of photocatalytic activity was observed when the ratios of TiO2nanotubes: silica gel: colloidal silica were 3 : 2 : 20. The optimal air flow rate for phenol degradation was 0.3 L/min while pH 3 was optimal for the reaction medium. Decreasing the initial phenol concentration led to an increase in phenol degradation efficiency due to more hydroxyl radicals being presented on the catalyst surface. Immobilized TiO2nanotubes showed higher photocatalytic activity than that of the pure TiO2which only achieved 87% degradation. Compared with pure TiO2, the immobilized TiO2nanotubes benefited from a larger specific surface area and a low recombination rate of photogenerated electron-hole pairs. After three operating cycles, the decrease in photocatalytic activity of the immobilized TiO2nanotubes was slight, indicating that the immobilized TiO2nanotubes have excellent stability and reusability.
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[效力级别]  [学科分类] 材料工程
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