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光催化和超声协同催化在处理有机染料废水中的应用及超声与光的协同效应。

Application of Photocatalysis and Sonocatalysis for Treatment of Organic Dye Wastewater and the Synergistic Effect of Ultrasound and Light.

机构信息

MOE Key Laboratory for Earth Surface Processes, College of Urban and Environmental Sciences, Peking University, Beijing 100871, China.

出版信息

Molecules. 2023 Apr 25;28(9):3706. doi: 10.3390/molecules28093706.

Abstract

Organic dyes play vital roles in the textile industry, while the discharge of organic dye wastewater in the production and utilization of dyes has caused significant damage to the aquatic ecosystem. This review aims to summarize the mechanisms of photocatalysis, sonocatalysis, and sonophotocatalysis in the treatment of organic dye wastewater and the recent advances in catalyst development, with a focus on the synergistic effect of ultrasound and light in the catalytic degradation of organic dyes. The performance of TiO-based catalysts for organic dye degradation in photocatalytic, sonocatalytic, and sonophotocatalytic systems is compared. With significant synergistic effect of ultrasound and light, sonophotocatalysis generally performs much better than sonocatalysis or photocatalysis alone in pollutant degradation, yet it has a much higher energy requirement. Future research directions are proposed to expand the fundamental knowledge on the sonophotocatalysis process and to enhance its practical application in degrading organic dyes in wastewater.

摘要

有机染料在纺织工业中起着至关重要的作用,而在染料的生产和使用过程中排放的有机染料废水对水生态系统造成了重大破坏。本综述旨在总结光催化、声催化和超声光催化处理有机染料废水的机制,以及催化剂开发的最新进展,重点关注超声和光在有机染料催化降解中的协同作用。比较了 TiO2 基催化剂在光催化、声催化和超声光催化系统中对有机染料降解的性能。超声和光具有显著的协同效应,超声光催化在污染物降解方面通常比单独的声催化或光催化效果好得多,但它的能量需求也高得多。提出了未来的研究方向,以扩展对超声光催化过程的基础认识,并增强其在降解废水中有机染料方面的实际应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9180/10180204/8d68dff3935e/molecules-28-03706-g001.jpg

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