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通过氧化锌微米和纳米颗粒产生自由基实现罗丹明B染料的声光催化降解机制

Sonophotocatalytic degradation mechanisms of Rhodamine B dye via radicals generation by micro- and nano-particles of ZnO.

作者信息

Lops Carmine, Ancona Andrea, Di Cesare Katia, Dumontel Bianca, Garino Nadia, Canavese Giancarlo, Hérnandez Simelys, Cauda Valentina

机构信息

Department of Applied Science and Technology, Politecnico di Torino, C.so Duca degli Abruzzi 24, 10129 Turin, Italy.

Center for Sustainable Future Technologies - CSFT@POLITO, Istituto Italiano di Tecnologia, Corso Trento 21, 10129 Turin, Italy.

出版信息

Appl Catal B. 2019 Apr;243:629-640. doi: 10.1016/j.apcatb.2018.10.078.

Abstract

In this work, it is proposed an environmental friendly sonophotocatalytic approach to efficiently treat polluted waters from industrial dyes exploiting ZnO micro- and nano-materials. For the first time, we deeply investigated the generation of reactive oxygen species (ROS) under ultrasound stimulation of different ZnO structures by Electron Paramagnetic Resonance Spectroscopy (EPR). Indeed, five zinc oxide (ZnO) micro- and nano-structures, Desert Roses (DRs), Multipods (MPs), Microwires (MWs), Nanoparticles (NPs) and Nanowires (NWs), were studied for the Rhodamine B (RhB) sonodegradation under ultrasonic irradiation. The DRs microparticles demonstrated the best sonocatalytic performance (100% degradation of RhB in 180 min) and the highest OH radicals generation under ultrasonic irradiation. Strikingly, the coupling of ultrasound and sun-light irradiation in a sonophotodegradation approach led to 100% degradation efficiency, color reduction, of RhB in just 10 min, revealing a great positive synergy between the photocatalytic and sonocatalytic mechanisms. The RhB sonophotocatalytic degradation was also evaluated at different initial dye concentrations and with the presence of anions in solution. It was demonstrated a good stability over repeated cycles of dye treatment, which probe the applicability of this technique with industrial effluents. In conclusion, sonophotocatalytic degradation synergizing sunlight and ultrasound in the presence of DRs microparticles shows a great potential and a starting point to investigate further the efficient treatment of organic dyes in wastewater.

摘要

在这项工作中,提出了一种环境友好的声光催化方法,利用氧化锌微米和纳米材料高效处理工业染料污染的水体。我们首次通过电子顺磁共振光谱(EPR)深入研究了不同氧化锌结构在超声刺激下活性氧物种(ROS)的产生。实际上,研究了五种氧化锌(ZnO)微米和纳米结构,即沙漠玫瑰(DRs)、多足体(MPs)、微丝(MWs)、纳米颗粒(NPs)和纳米线(NWs)在超声辐照下对罗丹明B(RhB)的声降解情况。DRs微粒表现出最佳的声催化性能(180分钟内RhB降解率达100%)以及超声辐照下最高的羟基自由基生成量。引人注目的是,在声光降解方法中超声与阳光辐照的耦合使得RhB在仅10分钟内就实现了100%的降解效率,即颜色去除,这揭示了光催化和声催化机制之间巨大的正协同效应。还在不同的初始染料浓度以及溶液中存在阴离子的情况下评估了RhB的声光催化降解。结果表明,在重复的染料处理循环中该方法具有良好的稳定性,这证明了该技术在工业废水中的适用性。总之,在DRs微粒存在下协同阳光和超声的声光催化降解显示出巨大的潜力,是进一步研究废水中有机染料高效处理的一个起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c46/6420045/328a6376225d/emss-82207-f001.jpg

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