Song Tiehong, Wang Zhe, Jiang Yi, Yang Shenggang, Deng Qiyuan
Key Laboratory of Songliao Aquatic Environment, Ministry of Education, Jilin Jianzhu University, Changchun 130118, China.
Molecules. 2024 May 29;29(11):2562. doi: 10.3390/molecules29112562.
In recent years, the efficient removal of organic pollutants from wastewater has emerged as a critical area of global research interest. Against this backdrop, an array of innovative technologies for wastewater treatment has been developed. Among numerous advanced oxidation processes (AOPs), periodate (PI), an emerging oxidizing agent in AOPs, has garnered significant attention from researchers. Particularly, the integration of ultrasound (US)-activated PI systems has been recognized as an exceptionally promising approach for the synergistic degradation of organic pollutants in wastewater. In this paper, we conducted a thorough analysis of the mechanisms underlying the degradation of organic pollutants using the US/PI system. Furthermore, we comprehensively delineated the effects of ultrasonic power, periodate concentration, temperature, pH, coexisting inorganic ions, and dissolved organic matter on the removal efficiency of organic pollutants and summarized application cases of the US/PI system for the degradation of different pollutants. Finally, we also offered prospective discussions on the future trajectories of US/PI technology development.
近年来,从废水中有效去除有机污染物已成为全球研究关注的关键领域。在此背景下,一系列创新的废水处理技术得以开发。在众多高级氧化工艺(AOPs)中,高碘酸盐(PI)作为AOPs中一种新兴的氧化剂,已引起研究人员的广泛关注。特别是,超声(US)活化PI体系的整合已被认为是一种极具前景的协同降解废水中有机污染物的方法。在本文中,我们对使用US/PI体系降解有机污染物的潜在机制进行了深入分析。此外,我们全面阐述了超声功率、高碘酸盐浓度、温度、pH值、共存无机离子和溶解有机物对有机污染物去除效率的影响,并总结了US/PI体系降解不同污染物的应用案例。最后,我们还对US/PI技术发展的未来方向进行了前瞻性讨论。