Laboratory of Quantum physics LR 18 ES 18, Faculty of Sciences of Monastir, Monastir, Tunisia E-mail:
Institute of Chemistry, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre, RS, Brazil.
Water Sci Technol. 2020 Aug;82(4):651-662. doi: 10.2166/wst.2020.347.
The adsorption isotherms of Reactive Red 120 (RR-120) on Brazilian pine-fruit shell activated carbon, at six temperatures (298, 303, 308, 313, 318 and 323 K) and pH = 6, were determined and interpreted using a double layer model with one energy. A statistical physics treatment established the formulation of this model. Steric and energetic parameters related to the adsorption process, such as the number of adsorbed molecules per site, the receptor sites density and the concentration at half-saturation, have been considered. Thermodynamic potential functions such as entropy, internal energy and Gibbs free enthalpy are analyzed, and the choice of the models is based on assumptions in correlation with experimental conditions. By numerical fitting, the investigated parameters were deduced. The theoretical expressions provide a good understanding and interpretation of the adsorption isotherms at the microscopic level. We believe that our work contributes to new theoretical insights on the dye adsorption in order to know the physical nature of the adsorption process.
在 pH = 6 及六个温度(298、303、308、313、318 和 323 K)条件下,用双层模型(一种能量)对赤藓红 120(RR-120)在巴西松果壳活性炭上的吸附等温线进行了测定和解释。统计物理处理确定了该模型的公式。已考虑与吸附过程相关的位阻和能量参数,例如每个位的吸附分子数、受体位密度和半饱和浓度。分析了热力学势函数,如熵、内能和吉布斯自由焓,并根据与实验条件相关的假设选择了模型。通过数值拟合,推导出了研究参数。理论表达式从微观角度很好地理解和解释了吸附等温线。我们相信,我们的工作有助于对染料吸附进行新的理论研究,以了解吸附过程的物理性质。