Revealing the synergistic effect between radical and non-radical species of sulfur-doped carbon nitride for ciprofloxacin removal: Based on density functional theory study
Author:
Funder
Scientific Research Foundation of Hunan Provincial Education Department
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference74 articles.
1. Analysis of degradation pathways and intermediates products for ciprofloxacin using a highly porous photocatalyst;Ahamad;Chem. Eng. J.,2021
2. Trading oxidation power for efficiency: differential inhibition of photo-generated hydroxyl radicals versus singlet oxygen;Brame;Water Res.,2014
3. Efficient decontamination of organic pollutants under high salinity conditions by a nonradical peroxymo- nosulfate activation system;Chen;Water Res.,2021
4. Activation of peroxymonosulfate by Co2P via interfacial radical pathway for the degradation and mineralization of carbamazepine;Chen;Surf. Interfaces,2023
5. C60 aminofullerene-magnetite nanocomposite designed for efficient visible light photocatalysis and magnetic recovery;Choi;Carbon,2014
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