State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, PR China.
School of Chemical Engineering, University of Chinese Academy of Sciences, Beijing 100049, PR China.
ACS Appl Mater Interfaces. 2021 Apr 7;13(13):14844-14865. doi: 10.1021/acsami.1c01131. Epub 2021 Mar 26.
Photocatalysis is an effective and environmentally friendly approach for degrading organic pollutants, particularly in scenarios where sunlight can be utilized as the energy source. Opportunities are emerging to apply materials and methods from photocatalytic pollutant degradation to address the challenge of fouling. Membrane fouling, attributed to organic foulants, is a prevalent problem for all membrane-based technologies and represents a major deleterious impact on membrane performance. Integration of tactics developed in photocatalysis more broadly to membranes reveals new strategies for membrane fouling control-an approach taken by an increasing number of researchers. This review summarizes key developments in photocatalytic materials and methods in water treatment and presents recent progress in the development of processes for photocatalytic alleviation of membrane fouling, including photocatalyst design and modification strategies aimed at enhancing photocatalytic efficiency, as well as different configurations of photocatalysis-membrane systems (PMS). Perspectives on future research and development opportunities for photocatalytic membrane fouling control are also provided.
光催化是一种有效且环保的方法,可用于降解有机污染物,特别是在可以利用阳光作为能源的情况下。将光催化污染物降解中的材料和方法应用于解决污染问题的机会正在出现。膜污染是所有基于膜的技术中普遍存在的问题,是对膜性能的主要有害影响,其归因于有机污染物。将更广泛的光催化策略整合到膜中可以揭示出用于膜污染控制的新策略,越来越多的研究人员正在采取这种方法。本综述总结了水处理用光催化材料和方法的关键进展,并介绍了开发用于光催化缓解膜污染的工艺的最新进展,包括旨在提高光催化效率的光催化剂设计和改性策略,以及不同配置的光催化-膜系统 (PMS)。还提供了对光催化膜污染控制未来研究和发展机会的展望。