Highly efficient activation of peroxymonosulfate by the (3R + 2H)-CuFeO2 nanocomposite photocatalyst: Intermediate toxicity, BVS validation ionic migration and degradation pathway
Author:
Publisher
Elsevier BV
Subject
Filtration and Separation,Analytical Chemistry
Reference64 articles.
1. The degradation pathways of carbamazepine in advanced oxidation process: A mini review coupled with DFT calculation;Li;Sci. Total Environ.,2021
2. Enhanced removal of bisphenol A from contaminated soil by coupling Bacillus subtilis HV-3 with electrochemical system;Mohan;Chemosphere,2020
3. Construction of high-efficient visible photoelectrocatalytic system for carbamazepine degradation: Kinetics, degradation pathway and mechanism;Guo;Chin. Chem. Lett.,2020
4. Analysis and advanced oxidation treatment of a persistent pharmaceutical compound in wastewater and wastewater sludge-carbamazepine;Mohapatra;Sci. Total Environ.,2014
5. Occurrence and fate of eleven classes of antibiotics in two typical wastewater treatment plants in South China;Zhou;Sci. Total Environ.,2013
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