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Resolving diffusion in clay minerals at different time scales: Combination of experimental and modeling approaches

机译:解决不同时间尺度下粘土矿物中的扩散问题:实验方法与建模方法的组合

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摘要

Since no single experimental or modeling technique provides data that allow a description of transport processes in clays and clay minerals at all relevant scales, several complementary approaches have to be combined to understand and explain the interplay between transport relevant phenomena. In this paper molecular dynamics simulations (MD) were used to investigate the mobility of water in the interlayer of montmorillonite (Mt), and to estimate the influence of mineral surfaces and interlayer ions on the water diffusion. Random Walk (RW) simulations based on a simplified representation of pore space in Mt were used to estimate and understand the effect of the arrangement of Mt particles on the meso- to macroscopic diffusivity of water. These theoretical calculations were complemented with quasielastic neutron scattering (QENS) measurements of aqueous diffusion in Mt with two pseudo-layers of water performed at four significantly different energy resolutions (i.e. observation times). The size of the interlayer and the size of Mt particles are two characteristic dimensions which determine the time dependent behavior of water diffusion in Mt. MD simulations show that at very short time scales water dynamics has the characteristic features of an oscillatory motion in the cage formed by neighbors in the first coordination shell. At longer time scales, the interaction of water with the surface determines the water dynamics, and the effect of confinement on the overall water mobility within the interlayer becomes evident. At time scales corresponding to an average water displacement equivalent to the average size of Mt particles, the effects of tortuosity are observed in the meso- to macroscopic pore scale simulations. Consistent with the picture obtained in the simulations, the QENS data can be described using a (local) 3D diffusion at short observation times, whereas at sufficiently long observation times a 2D diffusive motion is clearly observed. The effects of tortuosity measured in macroscopic tracer diffusion experiments are in qualitative agreement with RW simulations. By using experimental data to calibrate molecular and mesoscopic theoretical models, a consistent description of water mobility in clay minerals from the molecular to the macroscopic scale can be achieved. In turn, simulations help in choosing optimal conditions for the experimental measurements and the data interpretation.
机译:由于没有单一的实验或建模技术能够提供描述所有相关规模的黏土和黏土矿物中运输过程的数据,因此必须结合几种互补方法来理解和解释与运输有关的现象之间的相互作用。在本文中,分子动力学模拟(MD)用于研究蒙脱石(Mt)夹层中水的迁移率,并估计矿物表面和夹层离子对水扩散的影响。基于简化的Mt中孔隙空间表示的随机游走(RW)模拟被用来估计和理解Mt颗粒排列对水的中观到宏观扩散的影响。这些理论计算得到了准弹性中子散射(QENS)对Mt中水扩散的测量的补充,其中在两个明显不同的能量分辨率(即观察时间)下进行了两层假水层测量。中间层的尺寸和Mt颗粒的尺寸是两个特征尺寸,它们决定了Mt中水扩散的时间依赖性。 MD模拟表明,在很短的时间尺度内,水动力学具有特征,即第一协调壳中的邻居在笼子中形成了振荡运动。在较长的时间尺度上,水与地表的相互作用决定了水的动力学,而约束作用对中间层内总体水迁移率的影响变得明显。在对应于等于Mt颗粒平均大小的平均水驱替量的时间尺度上,在中观到宏观孔隙尺度模拟中观察到曲折的影响。与在仿真中获得的图片一致,可以在较短的观察时间使用(局部)3D扩散来描述QENS数据,而在足够长的观察时间下,可以清楚地观察到2D扩散运动。在宏观示踪剂扩散实验中测得的曲折度的影响与RW模拟在质量上是一致的。通过使用实验数据校准分子和介观理论模型,可以实现从分子到宏观尺度的黏土矿物中水迁移率的一致描述。反过来,模拟则有助于为实验测量和数据解释选择最佳条件。

著录项

  • 来源
    《Applied clay science》 |2014年第7期|36-44|共9页
  • 作者单位

    Laboratory for Waste Management, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland;

    Laboratory for Waste Management, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland,Institute of Geological Sciences, University of Bern, CH-3012 Bern, Switzerland;

    Forschungsneutronenquelle Heinz Maier-Leibnitz (FRM Ⅱ), 85747 Garching, Germany,Lehrstuhl fuer Kristallografie und Strukturphysik, D-91058 Erlangen, Germany;

    Laboratory for Waste Management, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland;

    Laboratory for Neutron Scattering, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Restricted water diffusion; QENS; Molecular dynamics; 2D confinement; Montmorillonite;

    机译:限制水扩散;QENS;分子动力学;2D限制;蒙脱石;

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