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在 0.1M NaCl-蒙脱石体系中,对三层模型和修正的古伊-查普曼模型的分子动力学模拟进行比较。

Comparison of molecular dynamics simulations with triple layer and modified Gouy-Chapman models in a 0.1M NaCl-montmorillonite system.

机构信息

BRGM, French Geological Survey, Orléans, France.

出版信息

J Colloid Interface Sci. 2009 Nov 15;339(2):533-41. doi: 10.1016/j.jcis.2009.06.051. Epub 2009 Jun 27.

Abstract

Molecular dynamics (MD) simulations of a montmorillonite/water interface at the pore scale were carried out at 0.1molL(-1) NaCl concentration in order to constrain cation, anion, and water distribution and mobility influenced by the mineral surface. MD results enabled anion exclusion and cation condensation at the surface to be quantified. MD-derived values could then be compared with macroscopic model results obtained from the Modified Gouy-Chapman (MGC) theory. While the Na concentration profile is well reproduced in the diffuse layer, anion exclusion is overestimated by the MGC theory under our experimental conditions. We also showed that MD simulations can be used to constrain Basic Stern model parameters or, in combination with zeta potential measurements, can be used to constrain triple layer model (TLM) parameters by providing suitable values for the capacitance values. Na sorption intrinsic equilibrium constant values for clay basal surfaces are given accordingly.

摘要

为了约束受矿物表面影响的阳离子、阴离子和水的分布和迁移,在 0.1mol/L NaCl 浓度下对蒙脱石/水界面进行了微孔尺度的分子动力学 (MD) 模拟。MD 结果使表面处的阴离子排斥和阳离子缩合能够定量。然后可以将 MD 得出的值与从修正的古伊-查普曼 (MGC) 理论获得的宏观模型结果进行比较。虽然在扩散层中很好地再现了 Na 浓度分布,但在我们的实验条件下,MGC 理论高估了阴离子排斥。我们还表明,MD 模拟可用于约束基本斯特恩模型参数,或者通过与 ζ 电位测量相结合,通过为电容值提供合适的值来约束三层模型 (TLM) 参数。相应地给出了粘土基面的 Na 吸附固有平衡常数值。

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