Removal of Reactive Green Dye from Textile Waste Water by Photo Fenton Process: Modeling, Kinetic, and Thermodynamic.

Tabarek Abdulsajad Jabar, K. M. Al-zobai
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引用次数: 1

Abstract

This work investigated the removal of the reactive green (R.G) dye from wastewater using the photo-Fenton process. Batch experiments were carried out to research the role of the Impacts of operating parameters. The dosage of H2O2; dosage Fe+2; pH; temperature, and irradiation time were examined. Maximum decolorization efficiencies green dye were achieved at the [H2O2]=100 ppm; [Fe2+]=20 ppm; pH 3; temperature=56 °C and irradiation time=90 min. This research focuses on modeling, kinetics and thermodynamics of the removal of pollutant (reactive green dye) of water. The results showed that the decolorization kinetic of R.G followed pseudo-first-order reaction kinetic. Also the thermodynamic parameters ∆G˚, ∆H˚ and ∆S˚ were determined using the Van't Hoff equation for the oxidation processes. The changes in Gibbs free energy showed the oxidation process under normal conditions is non-spontaneous.
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光芬顿法去除纺织废水中的活性绿色染料:建模、动力学和热力学。
研究了光fenton法去除废水中的活性绿色染料。进行了批量试验,研究了操作参数的影响作用。H2O2用量;剂量铁+ 2;pH值;检测温度和辐照时间。绿色染料在[H2O2]=100 ppm时脱色效率最高;(价)= 20 ppm;pH值3;温度=56°C,辐照时间=90 min。本研究着重于水中污染物(活性绿色染料)去除的建模、动力学和热力学。结果表明,rg的脱色动力学符合拟一级反应动力学。采用范霍夫方程确定了氧化过程的热力学参数∆G˚,∆H˚和∆S˚。吉布斯自由能的变化表明在正常条件下氧化过程是非自发的。
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