Zhao Deqiang, Lu Heng, Cheng Qingkong, Huang Qi, Ai Jing, Zhang Zhibo, Liu Hainan, He Zongfei, Li Qiuhong
School of River and Ocean Engineering, Chongqing Jiaotong University, Chongqing 400074, China.
National Engineering Research Center for Inland Waterway Regulation, Key Laboratory of Hydraulic and Waterway Engineering of the Ministry of Education, Chongqing 400074, China.
Materials (Basel). 2023 Dec 21;17(1):44. doi: 10.3390/ma17010044.
Infectious diseases caused by waterborne viruses have attracted researchers' great attention. To ensure a safe water environment, it is important to advance water treatment and disinfection technology. Photocatalytic technology offers an efficient and practical approach for achieving this goal. This paper reviews the latest studies on visible-light composite catalysts for bacteriophage inactivation, with a main focus on three distinct categories: modified UV materials, direct visible-light materials and carbon-based materials. This review gives an insight into the progress in photocatalytic material development and offers a promising solution for bacteriophage inactivation.
水传播病毒引起的传染病已引起研究人员的高度关注。为确保安全的水环境,推进水处理和消毒技术至关重要。光催化技术为实现这一目标提供了一种高效且实用的方法。本文综述了关于用于噬菌体灭活的可见光复合催化剂的最新研究,主要聚焦于三个不同类别:改性紫外材料、直接可见光材料和碳基材料。本综述深入了解了光催化材料开发的进展,并为噬菌体灭活提供了一个有前景的解决方案。