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应用单一模型研究泼尼松龙在六种含碳材料上的吸附平衡。

Application of a single model to study the adsorption equilibrium of prednisolone on six carbonaceous materials.

作者信息

Valenzuela-Calahorro C, Cuerda-Correa E, Navarrete-Guijosa A, Gonzalez-Pradas E

机构信息

Department of Inorganic Chemistry, Faculty of Pharmacy, University of Granada, Granada, E-18071, Spain.

出版信息

J Colloid Interface Sci. 2002 Jun 1;250(1):67-73. doi: 10.1006/jcis.2002.8329.

Abstract

The knowledge of sorption processes of nonelectrolytes in solution by solid adsorbents implies the study of kinetics, equilibrium, and thermodynamic functions. However, quite frequently the equilibrium isotherms are studied by comparing them with those corresponding to the Giles et al. classification (1); these isotherms are also analyzed by fitting them to equations based on thermodynamic or kinetic criteria, and even to empirical equations. Nevertheless, information obtained is more coherent and satisfactory if the adsorption isotherms are fitted by using an equation describing the equilibrium isotherms according to the kinetic laws. These mentioned laws would determine each one of the unitary processes (one or more) which condition the global process. In this paper, an adsorption process of prednisolone in solution by six carbonaceous materials is explained according to a previously proposed single model, which allows to establish a kinetic law which fits satisfactorily most of C vs t isotherms (2). According to the above-mentioned kinetic law, equations describing sorption equilibrium processes have been deducted, and experimental data points have been fitted to these equations; such a fitting yields to different values of adsorption capacity and kinetic equilibrium constants for the different processes at several temperatures. However, in spite of their practical interest, these constants have no thermodynamic signification. Thus, the thermodynamic equilibrium constant (K) has been calculated by using a modified expression of the Gaines et al. equation (3). Global average values of the thermodynamic functions have also been calculated from the K values. Information related to variations of DeltaH and DeltaS with the surface coverage fraction was obtained by using the corresponding Clausius-Clapeyron equations.

摘要

了解固体吸附剂对溶液中非电解质的吸附过程意味着要研究动力学、平衡和热力学函数。然而,人们常常通过将平衡等温线与吉尔斯等人的分类(1)所对应的等温线进行比较来研究平衡等温线;这些等温线也通过将它们拟合到基于热力学或动力学标准的方程,甚至是经验方程来进行分析。尽管如此,如果使用一个根据动力学定律描述平衡等温线的方程来拟合吸附等温线,所获得的信息会更加连贯和令人满意。上述定律将确定构成整体过程的每个单一过程(一个或多个)。在本文中,根据先前提出的单一模型解释了六种含碳材料对溶液中泼尼松龙的吸附过程,该模型允许建立一个能令人满意地拟合大多数C对t等温线的动力学定律(2)。根据上述动力学定律,推导了描述吸附平衡过程的方程,并将实验数据点拟合到这些方程;这样的拟合在几个温度下针对不同过程得出了不同的吸附容量和动力学平衡常数。然而,尽管这些常数具有实际意义,但它们没有热力学意义。因此,通过使用盖恩斯等人方程(3)的修正表达式计算了热力学平衡常数(K)。还从K值计算了热力学函数的全局平均值。通过使用相应的克劳修斯 - 克拉佩龙方程获得了与ΔH和ΔS随表面覆盖分数变化相关的信息。

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