Soumia Fassi, Petrier Christian
Department of Chemistry, Faculty of Sciences, University of Constantine, Algeria.
Laboratoire de Rhéologie et Procédés, 1301 rue de la Piscine, Domaine Universitaire, BP 53, 38041 Grenoble cedex 9, France.
Ultrason Sonochem. 2016 Sep;32:343-347. doi: 10.1016/j.ultsonch.2016.03.032. Epub 2016 Apr 1.
In this study, removal of Cresol Red (CR), a cationic triphenylmethane dye, by 300kHz ultrasound was investigated. The effect of additive such as potassium monopersulfate (oxone) was studied. Additionally, sonolytic degradation of CR was investigated at varying power and initial pH. RC can be readily eliminated by the ultrasound process. The obtained results showed that. Sonochemical degradation of CR was strongly affected by ultrasonic power and pH. The degradation rate of the dye increased substantially with increasing ultrasonic power in the range of 20-80W. This improvement could be explained by the increase in the number of active cavitation bubbles. The significant degradation was achieved in acidic conditions (pH=2) where the color removal was 99% higher than those observed in higher pH aqueous solutions. The ultrasonic degradation of dye was enhanced by potassium monopersulfate (oxone) addition. It was found that the degradation of the dye was accelerated with increased concentrations of oxone for a reaction time of 75min.
在本研究中,研究了通过300kHz超声去除阳离子三苯甲烷染料甲酚红(CR)的情况。研究了过一硫酸钾(过氧单磺酸钾,oxone)等添加剂的影响。此外,还研究了在不同功率和初始pH值下CR的声解降解情况。通过超声过程可以很容易地消除RC。所得结果表明,CR的声化学降解受到超声功率和pH值的强烈影响。在20 - 80W范围内,随着超声功率的增加,染料的降解速率大幅提高。这种改善可以通过活性空化气泡数量的增加来解释。在酸性条件(pH = 2)下实现了显著降解,此时脱色率比在较高pH值水溶液中观察到的高出99%。添加过一硫酸钾(oxone)可增强染料的超声降解。发现在反应时间为75分钟时,随着oxone浓度的增加,染料的降解加速。