The Transition of Tetragonal to Monoclinic Phase in Bivo4 Coupled with Peroxymonosulfate for Photocatalytic Degradation of Tetracycline Hydrochloride

48 Pages Posted: 11 Sep 2024

See all articles by Weiwei Zhu

Weiwei Zhu

Guangxi Minzu University

Cixin Cheng

Guangxi Minzu University

Huihong Tan

Guangxi Minzu University

Lang Liu

Guangxi Minzu University

Kao Chen

Guangxi Minzu University

Jun Yan

Guangxi Minzu University

Abstract

At present, the mechanism difference between tetragonal BiVO4 (t-BiVO4) and monoclinic BiVO4 (m-BiVO4) coupled peroxymonosulfate (PMS) to realize photocatalysis is still unclear. In this study, m-BiVO4 and t-BiVO4 were obtained by adjusting the bismuth-vanadium ratio in the precursor solution (Bi:V=3:1; 1:1; 1:2 and 1:3). The results of photocatalytic experiments showed that both t-BiVO4 and m-BiVO4 had certain activation effects on PMS, and the prepared monoclinic B1V2 has the strongest photocatalytic performance. Using 20 mg B1V2 to activate 4 mmol L-1 PMS in 30 min, the degradation rate of tetracycline hydrochloride (TCH) reached 92.8%. The free radical quenching experiment and EPR test showed that when m-BiVO4 coupled PMS degraded TCH, the contribution of active species was SO4•->•OH>•O2->h+. Compared with m-BiVO4, the wide band gap of t-BiVO4 makes the photogenerated carrier recombination. When t-BiVO4 coupling PMS, the contribution of active species is •O2->SO4•->•OH>h+. In addition, the intermediate products of TCH degradation were analyzed by LC-MS, and three possible degradation paths of TCH were proposed.

Keywords: BiVO4, TCH, photocatalysis, crystal phase regulation, PMS

Suggested Citation

Zhu, Weiwei and Cheng, Cixin and Tan, Huihong and Liu, Lang and Chen, Kao and Yan, Jun, The Transition of Tetragonal to Monoclinic Phase in Bivo4 Coupled with Peroxymonosulfate for Photocatalytic Degradation of Tetracycline Hydrochloride. Available at SSRN: https://ssrn.com/abstract=4952936 or http://dx.doi.org/10.2139/ssrn.4952936

Weiwei Zhu (Contact Author)

Guangxi Minzu University ( email )

Chiina

Cixin Cheng

Guangxi Minzu University ( email )

Chiina

Huihong Tan

Guangxi Minzu University ( email )

Chiina

Lang Liu

Guangxi Minzu University ( email )

Chiina

Kao Chen

Guangxi Minzu University ( email )

Chiina

Jun Yan

Guangxi Minzu University ( email )

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