首页> 外文期刊>Journal of Colloid and Interface Science >CONSTRAINTS UPON ELECTROLYTE BINDING CONSTANTS IN TRIPLE-LAYER MODEL CALCULATIONS AND CONSEQUENCES OF THE CHOICE OF THE THERMODYNAMIC FRAMEWORK
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CONSTRAINTS UPON ELECTROLYTE BINDING CONSTANTS IN TRIPLE-LAYER MODEL CALCULATIONS AND CONSEQUENCES OF THE CHOICE OF THE THERMODYNAMIC FRAMEWORK

机译:在三层模型计算中对电解质结合常数的约束以及热力学框架选择的后果

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We discuss parameter extraction procedures for electrolyte binding constants in the triple-layer model (TLM) involving constraint equations arising from common intersection points in titration curves for (hydr) oxide surfaces. In model parameter estimation within the triple-layer surface complexation model the constraint arising from the point of zero charge condition, when derived from the respective defining surface chemical reactions, is different for two limiting thermodynamic frameworks of the TLM. For the two frameworks, when the parameter estimation procedure proposed by K. F. Hayes, G. Redden, W. Ela, and J. O. Leckie (J. Colloid Interface Sci. 142, 448 (1991)) is used, the intrinsic acidity constants will be the same, and the intrinsic electrolyte binding constants very similar. Constraints on electrolyte binding as used in the paper by Hayes et al. have consequences arising from the TLM framework that should be rigorously respected. Literature model parameters for the TLM exhibit nonsymmetrical electrolyte binding in most cases. A reasonable use of the constraint equations must be expected to result in symmetrical electrolyte binding. For the data sets we investigated, it was possible to obtain fits to the data that were as good when symmetrical electrolyte binding was imposed as when the possibility of nonsymmetrical electrolyte binding was accepted. Therefore, it appears reasonable to impose symmetrical electrolyte binding, which is consistent with the constraint equations used. (C) 1995 Academic Press, Inc. [References: 24]
机译:我们讨论了三层模型(TLM)中电解质结合常数的参数提取程序,该程序涉及约束方程,该约束方程由(水)氧化物表面滴定曲线中的公共交点产生。在三层表面络合模型中的模型参数估计中,当从TLM的两个有限热力学框架中分别得出时,从零电荷条件的角度得出的约束条件是不同的。对于这两个框架,当使用KF Hayes,G.Redden,W.Ela和JO Leckie(J. Colloid Interface Sci。142,448(1991))提出的参数估计程序时,固有酸度常数将为相同,并且固有电解质结合常数非常相似。 Hayes等人在论文中使用的电解质结合约束。由TLM框架引起的后果应予以严格尊重。在大多数情况下,TLM的文献模型参数表现出非对称的电解质结合。必须期望合理使用约束方程式才能产生对称的电解质结合。对于我们研究的数据集,有可能获得与拟合对称电解质结合时的数据和接受非对称电解质结合可能性时一样好的数据。因此,施加对称的电解质结合似乎是合理的,这与所使用的约束方程式是一致的。 (C)1995 Academic Press,Inc. [参考:24]

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