Nanomaterials & Solar Energy Conversion Lab, Department of Chemistry, National Institute of Technology, Trichy 620 015, India.
Department of Medicinal and Applied Chemistry & Research Center for Environmental Medicine, Kaohsiung Medical University, Kaohsiung City 807, Taiwan.
Ultrason Sonochem. 2020 Oct;67:105130. doi: 10.1016/j.ultsonch.2020.105130. Epub 2020 Apr 13.
The creation of the modern world requires many industrial sectors, however, sustainability needs to be considered while developing industries. In particular, organic pollutants generated by many of these industries contaminate the environment leading to health and other issues. Advanced oxidation processes (AOPs) have been introduced to remove organic pollutants present in wastewater. Sonolytic degradation of organic pollutants is considered as one of the AOPs, however, this process has its limitations. In order to overcome the limitations, hybrid techniques involving ultrasound and other AOPs have been developed. That is, ultrasound combined with heterogeneous AOPs (ultrasound/metal ions, ultrasound/metal oxides, and ultrasound/photocatalysis) and homogeneous AOPs (ultrasound/ozone, ultrasound/HO, and ultrasound/persulfate) for the degradation/mineralization of organic pollutants. This review highlights the advantages of using hybrid techniques involving ultrasound for the degradation of organic pollutants in aqueous solutions.
现代世界的创建需要许多工业部门,但在发展工业的同时需要考虑可持续性。特别是,许多这些工业产生的有机污染物污染了环境,导致了健康和其他问题。已经引入了高级氧化工艺(AOPs)来去除废水中存在的有机污染物。超声降解有机污染物被认为是 AOPs 之一,但该过程存在局限性。为了克服这些局限性,已经开发出涉及超声和其他 AOPs 的混合技术。也就是说,超声与多相 AOP(超声/金属离子、超声/金属氧化物和超声/光催化)和单相 AOP(超声/臭氧、超声/HO 和超声/过硫酸盐)结合使用,以降解/矿化有机污染物。本文综述了使用超声混合技术降解水溶液中有机污染物的优点。