Ce-doped BiFeO3 as a photocatalyst to enhance photo-Fenton degradation of tetracycline
Author:
Publisher
Elsevier BV
Subject
General Physics and Astronomy,General Chemical Engineering,General Chemistry
Reference59 articles.
1. Comprehensive evaluation of antibiotics emission and fate in the river basins of China: source analysis, multimedia modeling, and linkage to bacterial resistance;Zhang;Environ. Sci. Tech.,2015
2. Trends in antibiotic resistance genes occurrence in the Haihe River, China;Luo;Environ. Sci. Tech.,2010
3. Recent developments in functional nanocomposite photocatalysts for wastewater treatment a review;Li;Adv. Sustain. Syst.,2022
4. Novel Cd0.5Zn0.5S/Bi2MoO6 S-scheme heterojunction for boosting the photodegradation of antibiotic enrofloxacin: degradation pathway, mechanism and toxicity assessment;Cai;Sep. Purif. Technol.,2023
5. Ultrathin mesoporous g-C3N4/NH2-MIL-101(Fe) octahedron heterojunctions as efficient photo-Fenton-like system for enhanced photo-thermal effect and promoted visible-light-driven photocatalytic performance;Su;Appl. Surf. Sci.,2021
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1. Construction of recyclable Z-scheme MoS2/Fe/Bi2MoO6 heterojunctions for efficient photo-Fenton degradation performance;Journal of Molecular Structure;2024-08
2. Thermal modified sediments photocatalyst: A new strategy using waste to treat waste for tetracycline degradation and transformation product-associated risks;Journal of Water Process Engineering;2024-07
3. Understanding the nature of Ce–Fe synergy in the structure CaWO4 scheelite for enhanced photocatalytic performance under visible light;Ceramics International;2024-06
4. Metronidazole degradation mechanism by sono-photo-Fenton processes using a spinel ferrite cobalt on activated carbon catalyst;Chemosphere;2024-06
5. Kinetic Comparison of Photocatalysis with the Photo-Fenton Process on the Removal of Tetracycline Using Bismuth-Modified Lanthanum Orthoferrite Nanostructures;ACS Applied Nano Materials;2024-05-10
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