An S-scheme TiO2/g-C3N4 nanocomposite effectively degrades phenanthrene under visible light

被引:0
|
作者
Li, Ting-Ting [1 ,2 ]
Xie, Meng-Meng [1 ]
Wang, Hong-Yang [3 ]
Wang, Jun-Sheng [3 ]
Lin, Jia-Horng [1 ,4 ,5 ]
Lou, Ching-Wen [1 ,6 ,7 ]
机构
[1] Tiangong Univ, Sch Text Sci & Engn, Tianjin 300387, Peoples R China
[2] Tiangong Univ, Tianjin & Minist Educ, Key Lab Adv Text Composite Mat, Tianjin 300387, Peoples R China
[3] Tianjin Fire Sci & Technol Res Inst MEM, Tianjin 300381, Peoples R China
[4] Feng Chia Univ, Dept Fiber & Composite Mat, Lab Fiber Applicat & Mfg, Taichung 407102, Taiwan
[5] China Med Univ, Sch Chinese Med, Taichung 404333, Taiwan
[6] Asia Univ, Dept Bioinformat & Med Engn, Taichung 413305, Taiwan
[7] China Med Univ, China Med Univ Hosp, Dept Med Res, Taichung 404333, Taiwan
关键词
Phenanthrene; Photocatalytic degradation; TiO2/g-C3N4; S -scheme heterojunction; POLYCYCLIC AROMATIC-HYDROCARBONS; GRAPHITIC CARBON NITRIDE; PHOTOCATALYTIC DEGRADATION; TIO2; NANOPARTICLES; PHOTODEGRADATION; PERFORMANCE; COMPOSITE; MEMBRANES; FILMS;
D O I
10.1016/j.colsurfa.2024.135554
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
It is a challenge to effectively degrade phenanthrene (PHE) pollutants, which are widely present in aquatic environments, in order to reduce harm to humans and ecosystems. In this study, an S-scheme TiO2/g-C3N4 2 /g-C 3 N 4 photocatalytic system is constructed using 0D TiO2 2 nanospheres and 2D g-C3N4 3 N 4 nanosheets for the removal of PHE from water under sunlight irradiation. The effects of irradiation time, quality ratio of TiO2 2 to g-C3N4, 3 N 4 , and cycle time on the performance of the TiO2/CN 2 /CN photocatalyst are investigated. The experimental results show that the ratio of TiO2 2 to g-C3N4 3 N 4 significantly affects the photocatalytic activity of the photocatalyst. Under the optimal ratio of TiO2 2 to g-C3N4 3 N 4 (50 % TiO2/CN), 2 /CN), the apparent reaction rate constant for phenanthrene reached 0.00796 min(-1), which is 11.5 times higher than that of pure TiO2 2 (0.00069 min(-1)). The tests of optical performance and photoelectrochemical properties further confirmed that the construction of the TiO2/g-C3N4 2 /g-C 3 N 4 Stype photocatalyst successfully enhanced the spatial separation efficiency of photogenerated carriers and ensured a continuous supply of energy during the redox reaction process. Converting highly toxic phenanthrene into a non-toxic green degradation product provides an practical strategy for the safe treatment of PHE in aqueous environments through the use of visible-light-driven heterojunction photocatalysts. Additionally, the data collected on phenanthrene degradation in this study will provide valuable references for developing degradation methods for other PAHs, such as naphthalene, anthracene, and pyrene.
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页数:11
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