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Enhanced photocatalysis by defect-engineered CeO2 with sulfite activation under visible light irradiation

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URI: http://hdl.handle.net/10498/34619

DOI: 10.1016/j.apsusc. 2024.161072

ISSN: 2590-1230

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2024 appl sruface science preproof.pdf (2.625Mb)
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Author/s
Han, YaningAuthority UCA; Chen, XiaoweiAuthority UCA; Tinoco, Miguel; Fernández-Garcia, SusanaAuthority UCA; Hungría Hernández, Ana BelénAuthority UCA; Li, Youxun; Nai, Jiyuan; Wu, Ren’an; Aguinaco Martín, AlmudenaAuthority UCA; Blanco Ollero, EduardoAuthority UCA; Calvino, José J.; Lei, Jiang
Date
2024
Department
Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica; Física de la Materia Condensada
Abstract
Sulfite-based advanced oxidation processes (s-AOP) have recently garnered significant attention due to their ability to generate highly oxidative sulfate radicals and eliminate contaminants from water. A state-of-the-art platform has been developed through the synergistic combination of s-AOP and photocatalysis under visible light as weak as ambient indoor daylight. This platform achieved an enhanced degradation efficiency for defect-engineered CeO2 nanocubes by using sodium sulfite instead of SO2, resulting in a synergy factor of up to 88%. The reaction pathways, intermediates, ion leaching and the possible influence of aqueous conditions during the methyl orange degradation have been investigated. The CeO2/Na2SO3/vis-light platform exhibits promising prospect as a system to enhance conventional s-AOP in wastewater treatment or disinfection. It demonstrates excellent performance in terms of pH sensitivity, anion influence, and resistance to leaching. This highlights its significant potential for practical applications and future process scale-up.
Subjects
Lanthanum-doped cerium oxide; Photocatalytic kinetics; Rare-earth metal oxides; Radical scavenging; Surface defects
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Attribution-NonCommercial-NoDerivatives 4.0 Internacional
This work is under a Creative Commons License Attribution-NonCommercial-NoDerivatives 4.0 Internacional

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