Department of Chemistry, Research Institute of Physics and Chemistry, Jeonbuk National University, Jeonju, 54896, Republic of Korea.
Department of Chemistry, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences, Chennai, 602105, India.
Chemosphere. 2022 Sep;302:134827. doi: 10.1016/j.chemosphere.2022.134827. Epub 2022 May 5.
Harmful Algal Blooms (HABs) have turned out to be a global occurrence owing to the detrimental phenomenon like eutrophication and global climate change caused by human activities. This newly emergent threat imposes a severe hazardous to public health, ecosystems and fishery-based economies. Rapid and exponential growth of certain delirious and toxic algal species shall be held causative to the formation of HABs. The potential disadvantages they pose, make it necessary the identification of efficient treatment methodologies. Photocatalysis has been identified as the most promising solution amongst all the identified and investigated methods, for the environmental and economic benefits beheld. Different treatment methodologies were evaluated and light has been thrown on the advantages beheld by photocatalysis over the other methods. Focus has been given to the different photocatalysts that have been so far put to use towards photocatalytic disinfection of HABs and algal toxins. This present study provides useful information on the application of the traditional and photocatalysis process for removal of HABs in water bodies. Moreover, the results revealed that photocatalysis method could cause potent inhibitory effect on growth of algae species and disrupted algal cells membranes to some extent. Finally, the conventional treatment techniques have been recognized to be insufficient for removal of HABs. However, the photocatalyst technology have been utilized mostly for the mineralization and neutralization of the algal pollutants without any harmful secondary pollutants.
有害藻华(HABs)由于人类活动引起的富营养化和全球气候变化等有害现象,已成为全球性问题。这种新出现的威胁对公共健康、生态系统和渔业经济构成了严重危害。某些藻类的快速和指数增长被认为是 HABs 形成的原因。它们所带来的潜在不利影响,使得有必要确定有效的处理方法。在所有已确定和研究的方法中,光催化被认为是最有前途的解决方案,因为它具有环境和经济效益。对不同的处理方法进行了评估,并阐明了光催化相对于其他方法的优势。重点介绍了迄今为止用于光催化消毒 HABs 和藻毒素的不同光催化剂。本研究提供了有关传统和光催化工艺在水体中去除 HABs 的应用的有用信息。此外,研究结果表明,光催化方法可以在一定程度上对藻类的生长产生强大的抑制作用,并破坏藻类细胞的膜。最后,人们认识到传统的处理技术对于去除 HABs 是不够的。然而,光催化剂技术主要用于藻类污染物的矿化和中和,而不会产生任何有害的二次污染物。