» Articles » PMID: 35248631

A Critical Review on Plasma-catalytic Removal of VOCs: Catalyst Development, Process Parameters and Synergetic Reaction Mechanism

Overview
Date 2022 Mar 6
PMID 35248631
Authors
Affiliations
Soon will be listed here.
Abstract

It is urgent to control the emission of volatile organic compounds (VOCs) due to their harmful effects on the environment and human health. A hybrid system integrating non-thermal-plasma and catalysis is regarded as one of the most promising technologies for VOCs removal due to their high VOCs removal efficiency, product selectivity and energy efficiency. This review systematically documents the main findings and improvements of VOCs removal using plasma-catalysis technology in recent 10 years. To better understand the fundamental relation between different aspects of this research field, this review mainly addresses the catalyst development, key influential factors, generation of by-products and reaction mechanism of VOCs decomposition in the plasma-catalysis process. Also, a comparison of the performance in various VOCs removal processes is provided. Particular emphasis is given to the importance of the selected catalyst and the synergy of plasma and catalyst in the VOCs removal in the hybrid system, which can be used as a reference point for future studies in this field.

Citing Articles

Unlocking High-Throughput Plasma-Catalytic Low-Temperature Oxidation of -Hexane over Single-Atom Ag/MnO Catalysts.

Ye Z, Han C, Yang S, Wang Y, Wang K, Nikiforov A JACS Au. 2025; 5(1):111-120.

PMID: 39886590 PMC: 11775692. DOI: 10.1021/jacsau.4c00826.


Enhanced photocatalytic activity of ZnS/TiO nanocomposite by nitrogen and tetrafluoromethane plasma treatments.

Khosravi S, Chaibakhsh N, Jafari S, Nilkar M Sci Rep. 2024; 14(1):28385.

PMID: 39551837 PMC: 11570603. DOI: 10.1038/s41598-024-78009-x.


Abatement of Aerosols by Ionic Wind Extracted From Dielectric Barrier Discharge Plasma.

Arshad T, Rafique M, Bashir S, Hayat A, Murtaza M, Muneeb A Environ Health Insights. 2024; 18:11786302241262879.

PMID: 39055117 PMC: 11271097. DOI: 10.1177/11786302241262879.


Catalytic Oxidation of Benzene over Atomic Active Site AgNi/BCN Catalysts at Room Temperature.

Zuo X, Zhang L, Gao G, Xin C, Fu B, Liu S Molecules. 2024; 29(7).

PMID: 38611743 PMC: 11013234. DOI: 10.3390/molecules29071463.


Optimizing Winter Air Quality in Pig-Fattening Houses: A Plasma Deodorization Approach.

Zhang L, Zhang M, Yu Q, Su S, Wang Y, Fang Y Sensors (Basel). 2024; 24(2).

PMID: 38257419 PMC: 10818906. DOI: 10.3390/s24020324.