Preparation of pg-C3N4/BiOBr/Ag Composite and Photocatalytic Degradation of Sulfamethoxazole

被引:0
|
作者
Yang, Li-Wei [1 ]
Liu, Li-Jun [1 ,2 ]
Xia, Xun-Feng [2 ]
Zhu, Jian-Chao [2 ]
Gao, Sheng-Wang [2 ]
Wang, Hong-Liang [2 ]
Wang, Shu-Ping [2 ]
机构
[1] College of Civil Engineering, Chang'an University, Xi'an,710000, China
[2] Chinese Research Academy of Environmental Sciences, Beijing,100012, China
来源
Huanjing Kexue/Environmental Science | 2021年 / 42卷 / 06期
关键词
D O I
10.13227/j.hjkx.202009213
中图分类号
学科分类号
摘要
A pg-C3N4/BiOBr/Ag composite was successfully prepared by simple high-temperature calcination and co-precipitation methods. The composite was characterized by means of XRD, SEM, TEM, XPS, UV-Vis, BET, and photocurrent analyses alongside other detection methods, and the degradation of 10 mg•L-1 sulfamethoxazole was investigated under simulated visible light irradiation. The results showed that the pg-C3N4/BiOBr/Ag composite had the best degradation effect on sulfamethoxazole when the loading ratio of silver was 5%. Compared with pg-C3N4, BiOBr monomer, and pg-C3N4/BiOBr composite, the photocatalytic degradation effect of the pg-C3N4/BiOBr/Ag (5%) was significantly improved, and the degradation rate was almost 100% within 30 min. The reaction rate constant (0.210 16 min-1) was 13.15 times that of pg-C3N4/BiOBr. Through radical quenching experiments, it was shown that the main active substances in the photocatalytic degradation were holes (h+), superoxide radicals (•O2-), and singlet oxygen (1O2), among which superoxide radicals (•O2-) contributed the most. Cyclic tests of pg-C3N4/BiOBr/Ag showed that the synthesized material has good recyclability and application prospects. © 2021, Science Press. All right reserved.
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页码:2896 / 2907
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