The integrated microfluidic photocatalytic planar reactor under continuous operation

An integrated microfluidic planar reactor is essential for achieving efficient and enhanced photocatalytic water treatment. Optimization of catalysts is an area of intense study owing to the need to enhance the performances of microreactors. A high-efficiency photocatalytic microreactor is presented...

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Veröffentlicht in:Frontiers in chemical engineering 2024-04, Vol.6
Hauptverfasser: Ge, Xue-hui, Wei, Nanjie, Hu, Xinyue, Xie, Qinyin, Wang, Xiaoda, Li, Ling, Qiu, Ting
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Sprache:eng
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Zusammenfassung:An integrated microfluidic planar reactor is essential for achieving efficient and enhanced photocatalytic water treatment. Optimization of catalysts is an area of intense study owing to the need to enhance the performances of microreactors. A high-efficiency photocatalytic microreactor is presented here by combining a planar microreactor with a high-efficiency photocatalyst. TiO 2 nanoparticles doped with Y and Yb were prepared to improve the photocatalytic reaction efficiency. First, better performance is achieved with the Y, Yb/TiO 2 and TiO 2 microreactors than conventional bulk reactors because of good photodegradation and a high reaction rate. Then, the Y, Yb/TiO 2 film microreactor exhibits not only efficient catalytic activity with UV light but also higher photocatalytic activity under visible light irradiation than that achieved by a TiO 2 film microreactor. The reaction rate constant of the Y, Yb/TiO 2 film microreactor is approximately 0.530 s –1 , which is twice that of the TiO 2 film microreactor. Moreover, the performances under continuous and intermittent reactions are compared to evaluate the stability of the microreactor, thereby building the foundation for practical application of continuous water treatment in the microreactor.The planar microreactor provides a convenient platform for studying photodegradation under various conditions, such as different temperatures, flow rates, light irradiation (UV and Vis), and reaction modes (continuous and intermittent).
ISSN:2673-2718
2673-2718
DOI:10.3389/fceng.2024.1375071