Solar Energy Lab, Department of Chemistry, Thiruvalluvar University, Vellore 632115, Tamilnadu, India.
Centre of Excellence for Energy Research, Sathyabama Institute of Science and Technology, Deemed to be University, Chennai 600119, India.
Molecules. 2019 Sep 13;24(18):3341. doi: 10.3390/molecules24183341.
Sonochemical oxidation of organic pollutants in an aqueous environment is considered to be a green process. This mode of degradation of organic pollutants in an aqueous environment is considered to render reputable outcomes in terms of minimal chemical utilization and no need of extreme physical conditions. Indiscriminate discharge of toxic organic pollutants in an aqueous environment by anthropogenic activities has posed major health implications for both human and aquatic lives. Hence, numerous research endeavours are in progress to improve the efficiency of degradation and mineralization of organic contaminants. Being an extensively used advanced oxidation process, ultrasonic irradiation can be utilized for complete mineralization of persistent organic pollutants by coupling/integrating it with homogeneous and heterogeneous photocatalytic processes. In this regard, scientists have reported on sonophotocatalysis as an effective strategy towards the degradation of many toxic environmental pollutants. The combined effect of sonolysis and photocatalysis has been proved to enhance the production of high reactive-free radicals in aqueous medium which aid in the complete mineralization of organic pollutants. In this manuscript, we provide an overview on the ultrasound-based hybrid technologies for the degradation of organic pollutants in an aqueous environment.
声化学氧化法被认为是一种绿色的处理水环境污染中有机污染物的方法。这种在水环境污染中降解有机污染物的方式被认为在最小化化学物质使用和无需极端物理条件方面能产生可靠的结果。人为活动在水环境污染中不加区分地排放有毒有机污染物,对人类和水生生物的健康都构成了重大威胁。因此,许多研究工作正在进行中,以提高有机污染物降解和矿化的效率。超声辐射作为一种广泛应用的高级氧化工艺,通过与均相和多相光催化过程耦合/集成,可以用于持久有机污染物的完全矿化。在这方面,科学家们已经报道了声光催化作为一种有效策略,用于降解许多有毒环境污染物。超声降解和光催化的协同作用已被证明可以在水介质中产生更多高活性自由基,从而有助于有机污染物的完全矿化。在本文中,我们提供了一种概述,介绍了基于超声波的混合技术在水环境污染中降解有机污染物的应用。