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Adsorption of textile dyes using Agave americana (L.) fibres: Equilibrium and kinetics modelling

机译:用龙舌兰纤维吸附纺织品染料的平衡和动力学模型

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This study was carried out to examine the potential of Agave americana fibres (AAF) for the treatment of wastewater contaminated with dyes. The batch mode adsorption of two dyes, viz. Sumfixe Supra Red (SSR) and Alpacelle Lumiere Brown (ALB), by AAF was investigated at different pH values, temperatures and initial dye concentrations. The highest dye adsorption capacities at 30 degrees C were attained at pH 2.0 for SSR and at pH 2.5 for ALB. In both cases, an increase in temperature increased the velocity of the reaction. The maximum amounts of dyes desorbed were at basic pH values. To compare our results with studies on other biomaterials, the adsorption isotherms and kinetic data were analysed employing the usual models (Freundlich, Langmuir and Temkin isotherms and first- and second-order kinetics). Conventional analysis indicated that the kinetics of the processes were closer to pseudo-second order rather than first order. The data were also modelled with a new method of analysis based on the statistical theory of complex systems and the heterogeneity of the sorption energy (energy landscape). This enabled the adsorption process to be characterised in terms of a greater number of physical parameters.
机译:进行这项研究以检查龙舌兰纤维(AAF)在处理被染料污染的废水中的潜力。两种染料的分批模式吸附,即。通过AAF在不同的pH值,温度和初始染料浓度下研究了Sumfixe Supra Red(SSR)和Alpacelle Lumiere Brown(ALB)。 SSR的pH值为2.0,ALB的pH值为2.5,在30摄氏度时可获得最高的染料吸附能力。在两种情况下,温度升高都增加了反应速度。解吸的染料最大量是在碱性pH值下。为了将我们的结果与其他生物材料的研究进行比较,采用常用模型(Freundlich,Langmuir和Temkin等温线以及一阶和二阶动力学)分析了吸附等温线和动力学数据。常规分析表明,该过程的动力学接近于伪二级而不是一级。还基于复杂系统的统计理论和吸附能的非均质性(能量分布),使用新的分析方法对数据进行建模。这使得能够根据大量的物理参数表征吸附过程。

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