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平面光催化微反应器的优化与参数研究

Optimization and Parameter Investigation of the Planar Photocatalytic Microreactor.

作者信息

Chen Yukai, Wang Ruizhe, Dong Rulin, Kou Jiahui, Lu Chunhua

机构信息

Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis and Green Manufacturing Collaborative Innovation Center, School of Petrochemical Engineering, Changzhou University, Changzhou 213164, China.

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Materials Science and Engineering, Nanjing Tech University, Nanjing 210009, P. R. China.

出版信息

Langmuir. 2024 Jun 4;40(22):11590-11598. doi: 10.1021/acs.langmuir.4c00805. Epub 2024 May 22.

Abstract

The microreactor could break the limitation of mass transfer and photon transmission in photocatalysis. Through a facile assembly method, a planar photocatalytic microreactor was constructed to fit most of the photocatalysts regardless of their strict preparation method. This microreactor exhibits a 2.41-fold efficiency compared to a bulk reactor. Parameters that affect the photocatalytic performance were discussed in detail by experiment and calculation. The diffusion rate is the main bottleneck in a planar microreactor under a laminar flow. The microreactor with lower height shows higher efficiency owing to faster mass transfer, while the length and width affect slightly. Elevating the light power density provides a diminishing benefit. Faster flow speed reduces the apparent degradation percent but increases the chemical reaction rate, in fact. The reaction rate increases to 9.31 times by reducing the height from 500 to 100 μm and grows another 1.76 times by adding the flow speed from 10 to 40 mL/h. This work illustrates the influence of parameters on planar photocatalytic microreactors and offers a promising prospect for large-volume photocatalytic water treatment.

摘要

微反应器可以打破光催化中传质和光子传输的限制。通过一种简便的组装方法,构建了一种平面光催化微反应器,以适配大多数光催化剂,而不论其严格的制备方法如何。与块状反应器相比,这种微反应器的效率提高了2.41倍。通过实验和计算详细讨论了影响光催化性能的参数。在层流条件下,扩散速率是平面微反应器中的主要瓶颈。高度较低的微反应器由于传质更快而显示出更高的效率,而长度和宽度的影响较小。提高光功率密度带来的益处逐渐减少。实际上,更快的流速会降低表观降解率,但会提高化学反应速率。通过将高度从500μm降低到100μm,反应速率提高到9.31倍,通过将流速从10mL/h增加到40mL/h,反应速率又提高了1.76倍。这项工作阐明了参数对平面光催化微反应器的影响,并为大规模光催化水处理提供了广阔的前景。

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