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弗伦德利希吸附中的尺寸控制容量和等容量浓度

Size-Controlled Capacity and Isocapacity Concentration in Freundlich Adsorption.

作者信息

Na Chongzheng

机构信息

Department of Civil, Environmental, and Construction Engineering, Texas Tech University, Box 41023, Lubbock, Texas 79409, United States.

出版信息

ACS Omega. 2020 May 22;5(22):13130-13135. doi: 10.1021/acsomega.0c01144. eCollection 2020 Jun 9.

Abstract

The Freundlich isotherm is a classic model widely used to analyze the equilibrium of solution-phase adsorption. Further analysis of the adsorption mechanism has, however, been hindered by the empirical nature of the Freundlich isotherm. By deriving the Freundlich isotherm from the Gibbs equation, this study presents a novel interpretation of the classic model with theoretical definitions for model parameters. The new interpretation shows that the inverse of the Freundlich power is linearly correlated with the molecular weight of an adsorbate for congeners with similar chemical structures, revealing a previously unappreciated dependence of adsorption capacity on the molecular size of the adsorbate. The new interpretation also shows a linear correlation between the Freundlich power and the logarithm of the equilibrium constant, exposing the existence of an isocapacity concentration for the adsorption of congeners. The quantitative structure-activity relationships, known as QSARs, represented by these linear correlations are validated using experimental data reported in the literature, including the adsorption of aliphatic alcohols by an activated carbon and the adsorption of aromatic hydrocarbons adsorption by an aquitard soil. These results provide an unprecedented explanatory power to understanding experimental observations of solution-phase adsorption using the Freundlich isotherm.

摘要

弗伦德利希等温线是一种广泛用于分析溶液相吸附平衡的经典模型。然而,由于弗伦德利希等温线的经验性质,对吸附机理的进一步分析受到了阻碍。通过从吉布斯方程推导弗伦德利希等温线,本研究对经典模型提出了一种新的解释,并对模型参数给出了理论定义。新的解释表明,对于化学结构相似的同系物,弗伦德利希幂的倒数与吸附质的分子量呈线性相关,揭示了吸附容量对吸附质分子大小的一种前所未有的依赖性。新的解释还表明,弗伦德利希幂与平衡常数的对数之间存在线性相关性,揭示了同系物吸附存在等容量浓度。这些线性相关性所代表的定量构效关系(QSARs)使用文献中报道的实验数据进行了验证,包括活性炭对脂肪醇的吸附以及隔水层土壤对芳烃的吸附。这些结果为理解使用弗伦德利希等温线进行溶液相吸附的实验观察提供了前所未有的解释力。

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