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Modelling of ζ-potential of the montmorillonite/electrolyte solution interface

机译:蒙脱石/电解质溶液界面的ζ电位建模

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The electrokinetic potential (ζ-potential) is calculated using the combination of the Poisson-Boltzmann equation and the Surface Complexation Models for energetically heterogeneous surface. This approach gives negative values of ζ for the whole pH region, which is in agreement with the published results of ζ-potential measurements. Moreover, the correct changes of ζ-potential values for different types of montmorillonite are observed. It is shown that electrokinetic properties of the considered systems are not as sensitive to surface heterogeneity as the adsorption isotherms and surface charge densities. As it was shown in our previous paper [P. Zarzycki, F. Thomas, J. Colloid Interface Sci. 302 (2006) 547-559], the presented model predicts parallel titration curves for reasonably small equilibrium constants of exchange processes. Here, we show further development of this model in order to predict ζ-potential.
机译:电动势(ζ势)是使用Poisson-Boltzmann方程和能量非均质表面的表面络合模型的组合来计算的。该方法在整个pH范围内给出ζ的负值,这与已公布的ζ电位测量结果一致。此外,观察到了不同类型的蒙脱石的ζ电位值的正确变化。结果表明,所考虑的系统的电动特性对表面异质性的敏感性不如吸附等温线和表面电荷密度高。正如我们之前的论文所显示的[P. Zarzycki,F。Thomas,J。胶体界面科学。 302(2006)547-559],提出的模型预测了交换过程中相当小的平衡常数的平行滴定曲线。在这里,我们展示了该模型的进一步发展,以便预测ζ电位。

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