School of Life Science, Qufu Normal University, Qufu, 273165, People's Republic of China.
Environ Sci Pollut Res Int. 2022 Jul;29(32):47902-47914. doi: 10.1007/s11356-022-20645-9. Epub 2022 May 6.
The healthy development of biodiversity has been threatened frequent water eutrophication. In recent years, photocatalytic technology, which has attracted researchers' attention, not only showed increasing potential in the field of organic pollutant degradation, but also many kinds of photocatalysts were used in the field of red tide pollution control at present, which showed superior ability to inactivate harmful algae and degrade algal toxins. Researches have also explored the mechanisms of photocatalytic algae inhibition. In this study, the current research progress in the field of photocatalytic algae inhibition was systematically discussed from several aspects, such as common types of photocatalysts, modification methods of photocatalysts, types of tested algae for photocatalytic algae inhibition, and action mechanism of inactivated algae cells, so as to provide a certain theoretical basis for further application research of photocatalysts in the field of algae removal in the later period.
生物多样性的健康发展受到了频繁的水体富营养化的威胁。近年来,光催化技术引起了研究人员的关注,它不仅在有机污染物降解领域显示出越来越大的潜力,而且目前许多种光催化剂也被用于赤潮污染控制领域,表现出了优越的灭活有害藻类和降解藻毒素的能力。研究人员还探索了光催化抑制藻类的机制。在这项研究中,从常见的光催化剂类型、光催化剂的改性方法、用于光催化抑制藻类的测试藻类类型以及失活藻类细胞的作用机制等几个方面,系统地讨论了光催化抑制藻类的当前研究进展,以期为后期光催化剂在藻类去除领域的进一步应用研究提供一定的理论基础。