Naffrechoux E, Chanoux S, Petrier C, Suptil J
Laboratoire de Chimie Moléculaire et Environnement, ESIGEC, Université de Savoie, Le Bourget du Lac, France.
Ultrason Sonochem. 2000 Oct;7(4):255-9. doi: 10.1016/s1350-4177(00)00054-7.
Recent developments in sonochemistry have led us to study its use to treat water and wastewater. The effects of ultrasound wave in hydrophilic chemical oxidations are mainly due to hydroxyl radical production during the cavitation-induced water decomposition. Currently, the sonochemical destruction of aromatic compounds in water solution is obtained with low rates. The aim of this work is to evaluate the efficiency of the sonochemical effect in conjunction with a photochemical irradiation. Taking phenol as an example, the combined action of sonochemistry and photochemistry has been considered in a 'sonuv' reactor. An important enhancement of the degradation rate of phenol has been observed. It may be the result of three different oxidative processes: direct photochemical action, high frequency sonochemistry and reaction with ozone (produced by UV irradiation of air). The process has been successfully tested to lower the chemical oxygen demand of a municipal wastewater.
声化学领域的最新进展促使我们研究其在处理水和废水方面的应用。超声波在亲水性化学氧化中的作用主要归因于空化诱导水分解过程中产生的羟基自由基。目前,水溶液中芳香族化合物的声化学降解速率较低。这项工作的目的是评估声化学效应与光化学辐照相结合的效率。以苯酚为例,在一个“声紫外”反应器中考虑了声化学和光化学的联合作用。已观察到苯酚降解速率有显著提高。这可能是三种不同氧化过程的结果:直接光化学作用、高频声化学以及与臭氧(由空气的紫外线照射产生)的反应。该工艺已成功用于降低城市废水的化学需氧量。