Progress on mechanism and efficacy of heterogeneous photocatalysis coupled oxidant activation as an advanced oxidation process for water decontamination

•Fundamentals of heterogeneous photo-activated oxidant processes were introduced.•Difference and comparability of photo-activated mechanism were summarized.•Quantitative and qualitative analytic means of reactive species were compared.•Synergy between photocatalysis and oxidant activation was case-b...

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Veröffentlicht in:Water research (Oxford) 2024-03, Vol.251, p.121119-121119, Article 121119
Hauptverfasser: Su, Ruidian, Zhu, Yongfa, Gao, Baoyu, Li, Qian
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Sprache:eng
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Zusammenfassung:•Fundamentals of heterogeneous photo-activated oxidant processes were introduced.•Difference and comparability of photo-activated mechanism were summarized.•Quantitative and qualitative analytic means of reactive species were compared.•Synergy between photocatalysis and oxidant activation was case-by-case discussed.•Challenges of coupled techniques for water decontamination were proposed. The rising debate on the dilemma of photocatalytic water treatment technologies has driven researchers to revisit its prospects in water decontamination. Nowadays, heterogeneous photocatalysis coupled oxidant activation techniques are intensively studied due to their dual advantages of high mineralization and high oxidation efficiency in pollutant degradation. This paved a new way for the development of solar-driven oxidation technologies. Previous reviews focused on the advances in one specific coupling technique, such as photocatalytic persulfate activation and photocatalytic ozonation, but lack a consolidated understanding of the synergy between photocatalytic oxidation and oxidant activation. The synergy involves the migration of photogenerated carriers, radical reaction, and the increase in oxidation rate and mineralization. This review systematically summarizes the fundamentals of activation mechanism, advanced characterization techniques and synergistic effects of coupling techniques for water decontamination. Besides, specific cases that lead researchers astray in revealing mechanisms and assessing synergy are critically discussed. Finally, the prospects and challenges are put forward to further deepen the research on heterogeneous photocatalytic activation of oxidants. This work provides a consolidated view of the existing heterogeneous photocatalysis coupled oxidant activation techniques and inspires researchers to develop more promising solar-driven technologies for water decontamination. [Display omitted]
ISSN:0043-1354
1879-2448
DOI:10.1016/j.watres.2024.121119