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Kinetics and thermodynamics of reactive and vat dyes adsorption on MgO nanoparticles

机译:活性染料和还原染料在MgO纳米颗粒上的吸附动力学和热力学

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In the present study, magnesium oxide (MgO) nanoparticles have been synthesized and their adsorption behavior was tested for the removal of dyes found in textile wastewater. Levaflx Fast Red CA (LFR) and Indanthren Blue BC (IB) were chosen as models for reactive and vat dyes respectively. The prepared MgO was highly crystalline with a crystallite size in the range of 25-30 nm. The effect of parameters like pH, contact time and temperature on the adsorption process was studied. Equilibrium experiments showed that MgO nanoparticles are more selective towards LFR than IB which may be related to the more number of reactive groups found in LFR. Langmuir adsorption isotherm fitted well into the experimental data with high correlation coefficients. Kinetic modeling suggested that pseudo-second-order model can better describe the adsorption of dyes onto nanomagnesia and film diffusion was the rate limiting step. The heat of adsorption (AH°) indicated the exothermic nature of the process and negative values of free energy (AG°) indicated that the adsorption is spontaneous.
机译:在本研究中,已经合成了氧化镁(MgO)纳米颗粒,并测试了其吸附行为以去除纺织废水中发现的染料。分别选择Levaflx坚牢红CA(LFR)和靛蓝蓝BC(IB)作为反应性染料和还原染料的模型。所制备的MgO是高度结晶的,具有25-30nm范围内的微晶尺寸。研究了pH,接触时间和温度等参数对吸附过程的影响。平衡实验表明,MgO纳米颗粒对LFR的选择性高于IB,这可能与LFR中发现的更多反应基团有关。 Langmuir吸附等温线很好地拟合了具有高相关系数的实验数据。动力学建模表明,伪二级模型可以更好地描述染料在纳米氧化镁上的吸附,而膜扩散是限速步骤。吸附热(AH°)表示该过程的放热性质,自由能的负值(AG°)表示吸附是自发的。

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