Graphitic-carbon-nitride-hydrophilicity-dependent photocatalytic degradation of antibiotics with different log Kow
Author:
Funder
Korea Environmental Industry and Technology Institute
Ministry of Environment
Publisher
Elsevier BV
Reference68 articles.
1. A comparative review on adsorption and photocatalytic degradation of classified dyes with metal/non-metal-based modification of graphitic carbon nitride nanocomposites: synthesis, mechanism, and affecting parameters;Ahmadi;J. Clean. Prod.,2023
2. Aqueous singlet oxygen reaction kinetics of furfuryl alcohol: effect of temperature, pH, and salt content;Appiani;Environ. Sci. Process Impact.,2017
3. Photocatalytic degradation of Penicillin G in aqueous solutions: kinetic, degradation pathway, and microbioassays assessment;Berkani;J. Hazard Mater.,2022
4. Validation of quenching effectiveness and pollutant degradation ability of singlet oxygen through model reaction system;Cai;J. Hazard Mater.,2023
5. Photocatalytic activation of sulfite by nitrogen vacancy modified graphitic carbon nitride for efficient degradation of carbamazepine;Cao;Appl. Catal. B Environ.,2019
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