Construction of CeO2/TiO2 heterojunctions immobilized on activated carbon fiber and its synergetic effect between adsorption and photodegradation for toluene removal

被引:0
作者
Yuwei Li
Wei Li
Fang Liu
Meng Li
Xuejin Qi
Ming Xue
Yongqiang Wang
Fenglei Han
机构
[1] China University of Petroleum,College of Chemical Engineering
[2] State Key Laboratory of Petroleum Pollution Control,undefined
来源
Journal of Nanoparticle Research | 2020年 / 22卷
关键词
CeO; /TiO; Activated carbon fiber; Adsorption; Photodegradation; Toluene; Environmental effects;
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中图分类号
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摘要
Toluene, as one of the most representative volatile organic compounds (VOCs), poses a serious threat to the atmospheric environment and human health. Herein, cerium dioxide (CeO2)/TiO2 immobilized on activated carbon fiber (ACF) is fabricated by ultrasonic-assisted sol-gel impregnation method for toluene removal. Characterizations of CeO2/TiO2/ACF composites reveal that CeO2 disperses or covers the surface of TiO2/ACF, and Ce4+ does not enter the lattice of TiO2 to replace Ti4+. The TEM and UV-vis analysis indicate the formation of heterojunction between TiO2 and CeO2. The Ce4+/Ce3+ redox centers significantly boost the separation efficiency of electron-hole pairs. The maximum removal efficiency of 1.5% CeO2/TiO2/ACF can reach up to 90%, much higher than 54% over TiO2/ACF. The CeO2/TiO2/ACF composites exhibit high removal efficiency of toluene due to the synergetic effects between adsorption and photodegradation. The gas-phase photodegradations are benzene, benzaldehyde, hexane, phenol, O-xylene, and phenylethyl acetate.
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