期刊
JOURNAL OF COLLOID AND INTERFACE SCIENCE
卷 608, 期 -, 页码 942-953出版社
ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcis.2021.10.033
关键词
Visible light-driven; Synergistic effect; MnFe2O4; MoS2; Photo-Fenton process
A flower-like MnFe2O4-MoS2 (FMW) catalyst was prepared for photo-Fenton oxidation, exhibiting good catalytic stability and recoverability. The FMW possessed large open surface area and a p-n heterojunction, ensuring fast electron transfer and active site exposure for tetracycline degradation.
In this work, a flower-like MnFe2O4-MoS2 (FMW) catalyst was successfully prepared as a catalyst for photo-Fenton oxidation. The flower-like structured FMW possessed large open surface area, which exposed enough active sites and can fully contact with tetracycline (TC). We studied the effect of different FMW composites, H2O2 concentration and light intensity on the photo-Fenton process. 1FMW (MnFe2O4 : MoS2 = 1:10 in mol) exhibited the best degradation effect on TC, and 1 mmol/L of H2O2 and 398.73 mW/cm(2) of light were the optimum parameters. A p-n heterojunction was formed in 1FMW, ensuring the stability of composite and the fast electron transfer. Holes, center dot O-2 and center dot OH were generated in photo-Fenton process and participated in TC degradation. Notably, FMW can be recycled quickly under an external magnetic field due to its magnetic properties. Overall, FMW shows good catalytic stability and recoverability in photo-Fenton oxidation process, which has a broad application prospect. (C) 2021 Elsevier Inc. All rights reserved.
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