A state-of-the-art review on heterogeneous catalysts-mediated activation of peracetic acid for micropollutants degradation: Classification of reaction pathways, mechanisms, influencing factors and DFT calculation

[Display omitted] •Existing research on heterogeneous PAA-AOPs are comprehensively reviewed.•The reaction pathways of heterogeneous PAA-AOPs are summarized.•Factors influencing heterogeneous PAA-AOP are proposed.•DFT calculation on heterogeneous PAA-AOPs is condensed.•Key limitations and development...

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Veröffentlicht in:Chemical engineering journal (Lausanne, Switzerland : 1996) Switzerland : 1996), 2023-12, Vol.477, p.147051, Article 147051
Hauptverfasser: Wang, Linhao, Wei, Jia, Li, Yanan, Huo, Jiangkai, Ji, Wei, Cui, Nan, Li, Jiamei, Niu, Xiruo, Jiang, Zijian, Cui, Xueru, Li, Jun
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Sprache:eng
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Zusammenfassung:[Display omitted] •Existing research on heterogeneous PAA-AOPs are comprehensively reviewed.•The reaction pathways of heterogeneous PAA-AOPs are summarized.•Factors influencing heterogeneous PAA-AOP are proposed.•DFT calculation on heterogeneous PAA-AOPs is condensed.•Key limitations and development directions of heterogeneous PAA-AOPs are outlined. Emerging micropollutants (MPs) in water present growing environmental concerns, drawing considerable attention in recent years. Of the numerous advanced oxidation processes (AOPs) for MPs removal, the approach based on peracetic acid (PAA) has especially attracted interest from both the academic and industrial realms. This comprehensive review systematically investigates the activation of PAA for MPs degradation using heterogeneous catalysts. The discussion starts with an overview of the fundamental aspects of PAA, along with the research background and prospects of PAA-AOPs. Subsequently, the generation and detection methods of organic radical (R-O) and non-organic radical (non-R-O) pathways in heterogeneous catalyst/PAA systems are discussed. Furthermore, the activation mechanisms of metal- and carbon-based catalysts are extensively revealed. After that, the influencing factors that significantly affect the performance of heterogeneous catalyst/PAA systems are proposed. Additionally, the application of density functional theory (DFT) calculation associated with heterogeneous catalyst/PAA systems is summarized. Finally, the current limitations and future research directions of heterogeneous catalyst/PAA systems are taken over. This review strives to enhance the comprehension of the heterogeneous catalyst-activated PAA systems in removal of MPs, while offering innovative perspectives and outlining future research avenues regarding the applications of these systems.
ISSN:1385-8947
1873-3212
DOI:10.1016/j.cej.2023.147051