A review of non-thermal plasma -catalysis: The mutual influence and sources of synergetic effect for boosting volatile organic compounds removal

This review is aimed at researchers in air pollution control seeking to understand the latest advancements in volatile organic compound (VOC) removal. Implementing of plasma-catalysis technology for the removal of volatile organic compounds (VOCs) led to a significant boost in terms of degradation y...

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Veröffentlicht in:Environmental research 2024-09, Vol.257, p.119333, Article 119333
Hauptverfasser: Belkessa, Nacer, Assadi, Aymen Amin, Bouzaza, Abdelkrim, Nguyen-Tri, Phuong, Amrane, Abdetif, Khezami, Lotfi
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Sprache:eng
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Zusammenfassung:This review is aimed at researchers in air pollution control seeking to understand the latest advancements in volatile organic compound (VOC) removal. Implementing of plasma-catalysis technology for the removal of volatile organic compounds (VOCs) led to a significant boost in terms of degradation yield and mineralization rate with low by-product formation. The plasma-catalysis combination can be used in two distinct ways: (I) the catalyst is positioned downstream of the plasma discharge, known as the “post plasma catalysis configuration” (PPC), and (II) the catalyst is located in the plasma zone and exposed directly to the discharge, called “in plasma catalysis configuration” (IPC). Coupling these two technologies, especially for VOCs elimination has attracted the interest of many researchers in recent years. The term “synergy” is widely reported in their works and associated with the positive effect of the plasma catalysis combination. This review paper investigates the state of the art of newly published papers about catalysis, photocatalysis, non-thermal plasma, and their combination for VOC removal application. The focus is on understanding different synergy sources operating mutually between plasma and catalysis discussed and classified into two main parts: the effect of the plasma discharge on the catalyst and the effect of the catalyst on plasma discharge. This approach has the potential for application in air purification systems for industrial processes or indoor environments.
ISSN:0013-9351
1096-0953
1096-0953
DOI:10.1016/j.envres.2024.119333