Continuous photocatalysis via photo-charging and dark-discharging for sustainable environmental remediation: Performance, mechanism, and influencing factors

Continuous photocatalysis via photo-charging and dark-discharging presents a paradigm shift in conventional photocatalysis with the requirement of continuous illumination to maintain the catalytic activity. This is expected to meet the ever-increasing demand for sustainable development of energy and...

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Published inJournal of hazardous materials Vol. 420; p. 126607
Main Authors Zhang, Chi, Li, Yi, Li, Mengqiao, Shuai, Danmeng, Zhou, Xinyi, Xiong, Xinyan, Wang, Chao, Hu, Qing
Format Journal Article
LanguageEnglish
Published Elsevier B.V 15.10.2021
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Summary:Continuous photocatalysis via photo-charging and dark-discharging presents a paradigm shift in conventional photocatalysis with the requirement of continuous illumination to maintain the catalytic activity. This is expected to meet the ever-increasing demand for sustainable development of energy and environment driven by natural day-night cycles. Substantial advances in continuous photocatalysis for various environmental applications under light-dark cycles have been witnessed during the last decade. However, there lacks a systematic and critical review on basic but important information of continuous photocatalysis for environmental remediation, challenging robust scientific progress of this technology towards potential practical use. Here, the general description of continuous photocatalysis involving energy storage mechanisms (hole and electron storage) and characterizations (electron storage behaviors, release behaviors and storage capacity) has been first introduced. Importantly, the remediation performance and mechanism of continuous photocatalysis for environmental applications are qualitatively and quantitatively demonstrated, including chemical pollutant oxidation and reduction, microbial pathogen inactivation, and multifunctional treatment. In addition, key factors influencing its remediation performance are analyzed, for the first time, from both operational and environmental views. The ample opportunities in the field of continuous photocatalysis for sustainable environmental remediation are also pointed out, calling for more efforts to fill current knowledge gaps in the future. [Display omitted] •Continuous photocatalysis is reviewed towards sustainable environmental remediation.•Remediation performance and mechanism are qualitatively and quantitatively described.•Key influencing factors are analyzed from both operational and environmental views.•Ample opportunities and challenges are available for future research before practice.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2021.126607