School of Life Science, Shaoxing University, Shaoxing 312000, PR China; College of Environmental Science and Engineering, North China Electric Power University, Beijing, 102206, PR China.
College of Environmental Science and Engineering, North China Electric Power University, Beijing, 102206, PR China.
Sci Total Environ. 2023 Apr 15;869:161767. doi: 10.1016/j.scitotenv.2023.161767. Epub 2023 Jan 23.
With the rapid development of industrialization and agriculture, a series of critical imminent environmental problems and water pollution have caught wide attention from the public and society. Piezoelectric catalysis technology with piezoelectric materials is a green and environmental method that can efficiently improve the separation of electron-hole pairs, then generating the active substances such as OH, HO and O, which can degrade water pollutants. Therefore, we firstly surveyed the piezoelectric catalysis in piezoelectric materials and systematically concluded and emphasized the relationship between piezoelectric materials and the piezoelectric catalytic mechanism, the goal to elucidate the effect of polarization on piezoelectric catalytic performance and enhance piezoelectric catalytic performance. Subsequently, the applications of piezoelectric materials in water treatment and environmental pollutant remediation were discussed including degradation of organic pollutants, removal of heavy mental ions, radionuclides, bacteria disinfection and water splitting for H generation. Finally, the development prospects and future outlooks of piezoelectric catalysis were presented in detail.
随着工业化和农业的快速发展,一系列紧迫的环境问题和水污染引起了公众和社会的广泛关注。压电催化技术利用压电材料是一种绿色环保的方法,可以有效地提高电子-空穴对的分离,然后产生 OH、HO 和 O 等活性物质,从而降解水污染物。因此,我们首先调查了压电材料中的压电催化,并系统地总结和强调了压电材料与压电催化机制之间的关系,目的是阐明极化对压电催化性能的影响并提高压电催化性能。随后,讨论了压电材料在水处理和环境污染物修复中的应用,包括有机污染物的降解、重金属离子、放射性核素、细菌消毒和水分解生成 H2。最后,详细介绍了压电催化的发展前景和未来展望。