SRM Research Institute, SRM University, Kattankulathur, Chennai, 603203, Tamilnadu, India.
Department of Chemical Engineering, Centre for Catalysis Research and c*change (DST-NRF Centre of Excellence in Catalysis), University of Cape Town, Cape Town, 7701, South Africa.
Top Curr Chem (Cham). 2016 Oct;374(5):75. doi: 10.1007/s41061-016-0072-9. Epub 2016 Oct 5.
This chapter describes the use of ultrasound in remediation of wastewater contaminated with organic pollutants in the absence and presence of other advanced oxidation processes (AOPs) such as sonolysis, sono-ozone process, sonophotocatalysis, sonoFenton systems and sonophoto-Fenton methods in detail. All these methods are explained with the suitable literature illustrations. In most of the cases, hybrid AOPs (combination of ultrasound with one or more AOPs) resulted in superior efficacy to that of individual AOP. The advantageous effects such as additive and synergistic effects obtained by operating the hybrid AOPs are highlighted with appropriate examples. It is worth to mention here that the utilization of ultrasound is not only restricted in preparation of modern active catalysts but also extensively used for the wastewater treatment. Interestingly, ultrasound coupled AOPs are operationally simple, efficient, and environmentally benign, and can be readily applied for large scale industrial processes which make them economically viable.
本章详细描述了在没有其他高级氧化工艺(AOPs)如超声、超声-臭氧、声光催化、超声-Fenton 系统和超声光-Fenton 法以及存在这些 AOPs 的情况下,利用超声波修复被有机污染物污染的废水的方法。所有这些方法都结合了适当的文献插图进行了解释。在大多数情况下,混合 AOPs(超声与一种或多种 AOP 的组合)的效果优于单个 AOP。通过操作混合 AOPs 获得的有利效果,如加和协同效应,都用适当的例子进行了强调。值得一提的是,超声波的利用不仅限于现代活性催化剂的制备,还广泛应用于废水处理。有趣的是,超声耦合 AOPs 操作简单、高效、环境友好,并且可以很容易地应用于大规模的工业过程,使它们具有经济可行性。