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Review

Recent Research on the Anti-Poisoning Catalysts in the Catalytic Oxidation of VOCs: A Review

1
Flavors and Fragrance Engineering and Technology Research Center of Henan Province, College of Tobacco Science, Henan Agricultural University, Zhengzhou 450046, China
2
China Tobacco Shaanxi Industrial, Co., Ltd., Xi’an 710065, China
3
School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Catalysts 2025, 15(3), 234; https://doi.org/10.3390/catal15030234
Submission received: 27 January 2025 / Revised: 18 February 2025 / Accepted: 26 February 2025 / Published: 28 February 2025
(This article belongs to the Special Issue Catalyst Immobilization)

Abstract

Volatile organic compounds (VOCs) from petrochemical, pharmaceutical, and other industries have serious damage to human health and the environment. Catalytic oxidation is a promising method to eliminate air pollution due to its high efficiency, wide application range, and environmental friendliness. However, in the actual industrial environment, the composition of industrial exhaust gases is complex, including VOCs, water vapour, chloride, sulfide and so on. The impurities would have competitive adsorption with reactants or react with the active sites, leading to the decline of catalytic activity, even the deactivation of catalysts. Therefore, this review summarises the recent research on the anti-poisoning ability of catalysts in the catalytic oxidation of VOCs, primarily focusing on the effect of water vapour, chloride, and sulfide. The catalytic oxidation mechanism manifested that the adsorption and activation of reactants are significant in VOCs degradation. On this basis, the mechanism of catalyst poisoning was analysed, and the inhibitory effect of impurities on the oxidation reaction was elucidated. According to the research status, three anti-poisoning strategies are proposed, including building a bimetallic system, modifying supports, and establishing the protected coating. This work provides a theoretical foundation and reference point for the rational construction of anti-poisoning catalysts in VOCs elimination.
Keywords: homogeneous catalysis; catalyst immobilization; VOCs catalytic oxidation; catalyst poisoning mechanism; the anti-poisoning catalysts homogeneous catalysis; catalyst immobilization; VOCs catalytic oxidation; catalyst poisoning mechanism; the anti-poisoning catalysts
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MDPI and ACS Style

Wang, L.; Huang, C.; Gao, Z.; Cui, B.; Zhao, M.; Xiao, M.; Yu, X. Recent Research on the Anti-Poisoning Catalysts in the Catalytic Oxidation of VOCs: A Review. Catalysts 2025, 15, 234. https://doi.org/10.3390/catal15030234

AMA Style

Wang L, Huang C, Gao Z, Cui B, Zhao M, Xiao M, Yu X. Recent Research on the Anti-Poisoning Catalysts in the Catalytic Oxidation of VOCs: A Review. Catalysts. 2025; 15(3):234. https://doi.org/10.3390/catal15030234

Chicago/Turabian Style

Wang, Longfei, Chun Huang, Ziting Gao, Bing Cui, Mingqin Zhao, Menglan Xiao, and Xiaolin Yu. 2025. "Recent Research on the Anti-Poisoning Catalysts in the Catalytic Oxidation of VOCs: A Review" Catalysts 15, no. 3: 234. https://doi.org/10.3390/catal15030234

APA Style

Wang, L., Huang, C., Gao, Z., Cui, B., Zhao, M., Xiao, M., & Yu, X. (2025). Recent Research on the Anti-Poisoning Catalysts in the Catalytic Oxidation of VOCs: A Review. Catalysts, 15(3), 234. https://doi.org/10.3390/catal15030234

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