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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structural Arrangements of Isomorphic Substitutions in Smectites: Molecular Simulation of the Swelling Properties, Interlayer Structure, and Dynamics of Hydrated Cs-Montmorillonite Revisited with New Clay Models
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Structural Arrangements of Isomorphic Substitutions in Smectites: Molecular Simulation of the Swelling Properties, Interlayer Structure, and Dynamics of Hydrated Cs-Montmorillonite Revisited with New Clay Models

机译:蒙脱石同构取代基的结构排列:重新模拟粘土模型的水合Cs-蒙脱土的膨胀特性,层间结构和动力学的分子模拟

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摘要

Three new structural models of montmorillonite with differently distributed Al/Si and Mg/Al substitutions in the tetrahedral and octahedral clay layers are systematically developed and studied by means of MD simulations to quantify the possible effects of such substitutional disorder on the swelling behavior, the interlayer structure, and mobility of aqueous species. A very wide range of water content, from 0 to 700 mg_(water)/g_(clay) is explored to derive the swelling properties of Cs—montmorillonite. The determined layer spacing does not differ much depending on the clay model. However, at low water contents up to 1-layer hydrate (~100 mg_(water)/g_(clay)) the variation of specific locations of the tetrahedral and octahedral substitutions in the two TOT clay layers slightly but noticeably affects the total hydration energy of the system. Using atom—atom radial distribution functions and the respective atomic coordination numbers we have identified for the three clay models not only the previously observed binding sites for Cs~+ on the clay surface but also new ones that are correlated with the position of tetrahedral substitution in the structure. The mobility of Cs~+ ions and H2O diffusion coefficients, as expected, gradually increase both with increasing water content and with increasing distance from the clay surface, but they still remain 2 to 4 times lower than the corresponding bulk values. Only small differences were observed between the three Cs— montmorillonite models, but these differences are predicted to increase in the case of higher charge density of the clay layers and/or interlayer cations.
机译:通过MD模拟系统地开发和研究了在四面体和八面体粘土层中具有不同分布的Al / Si和Mg / Al取代基的蒙脱石的三种新结构模型,以量化这种取代紊乱对溶胀行为,中间层的可能影响的结构和流动性种类。研究了范围很广的水含量,从0到700 mg_(水)/ g_(粘土),可以得出Cs-蒙脱石的溶胀性能。取决于粘土模型,确定的层间距相差不大。但是,在含水量低至1层水合物(〜100 mg_(水)/ g_(粘土))的情况下,两个TOT粘土层中四面体和八面体取代的特定位置的变化会稍有变化,但会显着影响总水化能系统的。使用原子-原子径向分布函数和相应的原子配位数,我们为三种粘土模型确定了不仅在粘土表面上先前观察到的Cs〜+结合位点,而且还发现了与四面体取代位置相关的新位点。结构。正如预期的那样,Cs〜+离子的迁移率和H2O扩散系数随着水含量的增加和与粘土表面距离的增加而逐渐增加,但仍比相应的体积值低2至4倍。在这三个Cs-蒙脱土模型之间仅观察到很小的差异,但是预计在粘土层和/或层间阳离子的电荷密度较高的情况下,这些差异会增加。

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