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Optofluidics-based membrane microreactor for wastewater treatment by photocatalytic ozonation

机译:基于光流体的膜微反应器通过光催化臭氧化处理废水

摘要

Conventional photocatalytic ozonation usually suffers from the mass transport issue associated with low specific surface area and gas/liquid interface and liquid film. To address this issue, a new membrane microreactor based on optofluidics was developed for wastewater treatment by the photocatalytic ozonation in this work. The key component of the photocatalytic membrane was prepared by coating TiO2 onto carbon paper followed by the hydrophobic treatment with polytetrafluoroethylene. Such design offered several advantages such as large surface-area-to-volume ratio, enhanced mass transport, intense and uniform light irradiation, efficient separation of the liquid/gas phases, and good gas permeability. The performance of the developed microreactor was evaluated by methylene blue degradation, and the products were analyzed by the ion chromatography. Experimental results showed that because of these advantages, the optofluidic membrane microreactor not only yielded better performance but also showed more complete oxidation as compared to photocatalysis and ozonation. Parametric studies indicated that increasing the residence time and decreasing the methylene blue concentration could improve the degradation efficiency. High light intensity benefited photocatalytic ozonation. The obtained results demonstrate that the developed optofluidic membrane microreactor is feasible for wastewater treatment by photocatalytic ozonation. Besides, this new type of microreactor can also be applied to other photocatalytic systems.
机译:常规的光催化臭氧化通常遭受与低比表面积以及气/液界面和液膜相关的传质问题。为了解决这个问题,在这项工作中,开发了一种基于光流体的新型膜微反应器,用于通过光催化臭氧化处理废水。通过将TiO2涂布在碳纸上,然后用聚四氟乙烯进行疏水处理,可以制备光催化膜的关键成分。这种设计具有许多优点,例如较大的表面积/体积比,增强的质量传输,强且均匀的光辐照,液相/气相的有效分离以及良好的透气性。通过亚甲基蓝降解评估所开发的微反应器的性能,并通过离子色谱法分析产物。实验结果表明,由于这些优点,与光催化和臭氧化相比,光流体膜微反应器不仅产生更好的性能,而且显示出更完全的氧化。参数研究表明,增加停留时间和降低亚甲基蓝浓度可以提高降解效率。高光强度有利于光催化臭氧化。获得的结果表明,开发的光流体膜微反应器对于光催化臭氧化处理废水是可行的。此外,这种新型的微反应器也可以应用于其他光催化系统。

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