Visible-light sensitization of TiO2 photocatalysts via wet chemical N-doping for the degradation of dissolved organic compounds in wastewater treatment: a review

被引:0
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作者
Wei Zhang
Baoping Jia
Qiuze Wang
Dionysois Dionysiou
机构
[1] University of Cincinnati,Environmental Engineering and Science Program, School of Energy, Environmental, Biological and Medical Engineering
[2] University of South Australia,Centre for Water Management and Reuse
[3] Changzhou University,School of Materials Science and Engineering
来源
Journal of Nanoparticle Research | 2015年 / 17卷
关键词
TiO; Visible-light sensitive; Photocatalysis; Wastewater treatment; Review; Drinking water;
D O I
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中图分类号
学科分类号
摘要
Increased pollution of ground and surface water and emerging new micropollutants from a wide variety of industrial, municipal, and agricultural sources has increased demand on the development of innovative new technologies and materials whereby challenges associated with the provision of safe potable water can be addressed. Heterogeneous photocatalysis using visible-light sensitized TiO2 photocatalysts has attracted a lot of attention as it can effectively remove dissolved organic compound in water without generating harmful by-products. On this note, recent progress on visible-light sensitive TiO2 synthesis via wet chemical N-doping method is reviewed. In a typical visible-light sensitive TiO2 preparation via wet chemical methods, the chemical (e.g., N-doping content and states) and morphological properties (e.g., particle size, surface area, and crystal phase) of TiO2 in as-prepared resultants are sensitively dependent on many experimental variables during the synthesis. This has also made it very difficult to provide a universal guidance at this stage with a certainty for each variable of N-doping preparation. Instead of one-factor-at-a-time style investigation, a statistically valid parameter optimization investigation for general optima of photocatalytic activity will be certainly useful. Optimization of the preparation technique is envisaged to be beneficial to many environmental applications, i.e., dissolved organic compounds removal in wastewater treatment.
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