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Microbial-assisted synthesis of Schwertmannite@g-C3N4composite for bisphenol AF degradation through visible light-driven peroxymonosulfate activation

Authors :
Li, Yilong
Zhang, Yongkui
Wang, Xuqian
Wang, Yabo
Source :
Journal of Environmental Chemical Engineering; December 2023, Vol. 11 Issue: 6
Publication Year :
2023

Abstract

Iron-based materials are considered as excellent environmental catalysts due to the characteristics of abundant reserves, low biological toxicities, and rich chemical states for redox reactions. The sea urchin-like microscopic morphology of biosynthesized schwertmannite (Sch) with abundant surface active sites is beneficial to the environmental catalytic process. In this study, flake-type graphitic carbon nitride (g-C3N4) was introduced into the mineralization process of Acidithiobacillus ferrooxidans(A. ferrooxidans) as the additive to regulate the biomineralization process and directly control the morphology and structure of iron-based minerals. Schwertmannite@g-C3N4composites (Sch-CN) with a desired structure of sea urchin-like well-dispersed biosynthesized Sch loaded on flaky g-C3N4were successfully prepared by A. ferrooxidans-induced biomineralization process. A Light/Peroxymonosulfate/Sch-CN catalytic system was constructed to degrade the model organic pollutant bisphenol AF (BPAF). The system combined two advanced oxidation systems of photocatalysis and peroxymonosulfate (PMS) activation, showing excellent catalytic degradation ability and wide pH adaptability. In addition, the system was also applicable to the catalytic degradation of other bisphenol pollutants. The mechanism was deduced by the results of quenching experiments and electron paramagnetic resonance (EPR) measurements. Several degradation intermediate products were identified and the probable degradation pathways of BPAF were proposed. The toxicity activities of BPAF solution towards Raphidocelis subcapitatawere largely reduced after treatment by the photochemical process. Overall, the Light/PMS/Sch-CN system has great potential in treating bisphenol wastewater.

Details

Language :
English
ISSN :
22132929 and 22133437
Volume :
11
Issue :
6
Database :
Supplemental Index
Journal :
Journal of Environmental Chemical Engineering
Publication Type :
Periodical
Accession number :
ejs64000223
Full Text :
https://doi.org/10.1016/j.jece.2023.111048