Basturk Emine, Karatas Mustafa
Aksaray University, Engineering Faculty, Department of Environmental Engineering, 68100 Aksaray, Turkey.
Aksaray University, Engineering Faculty, Department of Environmental Engineering, 68100 Aksaray, Turkey.
Ultrason Sonochem. 2014 Sep;21(5):1881-5. doi: 10.1016/j.ultsonch.2014.03.026. Epub 2014 Apr 3.
In this work, the decolorization of C.I. Reactive Blue 181 (RB181), an anthraquinone dye, by Ultrasound and Fe(2+) H2O2 processes was investigated. The effects of operating parameters, such as Fe(2+) dosage, H2O2 dosage, pH value, reaction time and temperature were examined. Process optimisation [pH, ferrous ion (Fe(2+)), hydrogen peroxide (H2O2), and reaction time], kinetic studies and their comparison were carried out for both of the processes. The Sono-Fenton process was performed by indirect sonication in an ultrasonic water bath, which was operated at a fixed 35-kHz frequency. The optimum conditions were determined as [Fe(2+)]=30 mg/L, [H2O2]=50 mg/L and pH=3 for the Fenton process and [Fe(2+)]=10 mg/L, [H2O2]=40 mg/L and pH=3 for the Sono-Fenton process. The colour removals were 88% and 93.5% by the Fenton and Sono-Fenton processes, respectively. The highest decolorization was achieved by the Sono-Fenton process because of the production of some oxidising agents as a result of sonication. The paper also discussed kinetic parameters. The decolorization kinetic of RB181 followed pseudo-second-order reaction (Fenton study) and Behnajady kinetics (Sono-Fenton study).
在本研究中,考察了超声和Fe(2+)/H2O2工艺对蒽醌染料C.I.活性蓝181(RB181)的脱色效果。研究了Fe(2+)用量、H2O2用量、pH值、反应时间和温度等操作参数的影响。对这两种工艺进行了工艺优化(pH、亚铁离子(Fe(2+))、过氧化氢(H2O2)和反应时间)、动力学研究及其比较。超声芬顿工艺在超声水浴中间接超声处理,固定频率为35kHz。芬顿工艺的最佳条件确定为[Fe(2+)] = 30mg/L,[H2O2] = 50mg/L,pH = 3;超声芬顿工艺的最佳条件为[Fe(2+)] = 10mg/L,[H2O2] = 40mg/L,pH = 3。芬顿法和超声芬顿法的脱色率分别为88%和93.5%。超声芬顿工艺由于超声处理产生了一些氧化剂,脱色效果最佳。本文还讨论了动力学参数。RB181的脱色动力学符合伪二级反应(芬顿研究)和贝纳贾迪动力学(超声芬顿研究)。