Visible-light photo-Fenton catalytic MgFe2O4 spinel: Reaction sintering synthesis and DFT study
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference62 articles.
1. Treatment of waters and wastewaters containing sulfur dyes: a review;Nguyen;Chem. Eng. J.,2013
2. Detoxification of azo dyes in the context of environmental processes;Rawat;Chemosphere,2016
3. Fabrication of novel polyaniline/ZnO heterojunction for exceptional photocatalytic hydrogen production and degradation of fluorescein dye through direct Z-scheme mechanism;Hamdy;Opt. Mater.,2021
4. Production, characterization and treatment of textile effluents: a critical review;Ghaly;J. Chem. Eng. Process Technol.,2014
5. A review on the photoelectro-Fenton process as efficient electrochemical advanced oxidation for wastewater remediation. Treatment with UV light, sunlight, and coupling with conventional and other photo-assisted advanced technologies;Brillas;Chemosphere,2020
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