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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular Dynamics Simulations of Water and Sodium Diffusion in Smectite interlayer Nanopores as a Function of Pore Size and Temperature
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Molecular Dynamics Simulations of Water and Sodium Diffusion in Smectite interlayer Nanopores as a Function of Pore Size and Temperature

机译:蒙脱石层间纳米孔中水和钠扩散随孔径和温度变化的分子动力学模拟

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The diffosion coefficients (D) of water and solutes in nanoporous Na-smectite clay barriers have been widely studied because of their importance in high-level radioactive waste (HLRW) management and in the isolation of contaminated sites. However, few measurements have been carried out at the high temperatures that are expected to occur in HLRW repositories. We address this knowledge gap by using molecular dynamics (MD) simulations to predict the temperature dependence of diffusion in clay interlayer nanopores, expressed as a pore scale activation energy of diffusion (E_a). Our sensitivity analysis shows that accurate prediction of pore scale D and E_a values requires careful consideration of the influence of pore size, simulation cell size, and clay structure flexibility on MD simulation results. We find that predicted D values in clay interlayer nanopores are insensitive to the size of the simulation cell (contrary to the behavior observed in simulation of bulk liquid water) but sensitive to the vibrational motions of clay atoms (particularly in the smallest pores investigated here, the one-, two-, and three-layer hydrates). Our predicted D and E_a values are consistent with experimental data. They reveal, for both water and Na~+, that E_a increases by ~6 kJ mol~(-1) with increasing confinement, when going from bulk liquid water to the one-layer hydrate of Na-montmorillonite.
机译:水和溶质在纳孔蒙脱石纳米多孔粘土屏障中的扩散系数(D)已被广泛研究,因为它们在高放废物(HLRW)管理和隔离污染场所中的重要性。但是,在预期在HLRW储存库中发生的高温下进行的测量很少。我们通过使用分子动力学(MD)模拟来预测粘土层间纳米孔中扩散的温度依赖性(表示为扩散的孔尺度活化能(E_a))来解决这一知识鸿沟。我们的敏感性分析表明,要准确预测孔隙度D和E_a值,需要仔细考虑孔径,模拟孔尺寸和粘土结构柔韧性对MD模拟结果的影响。我们发现,粘土层间纳米孔中的预测D值对模拟单元的大小不敏感(与大体积液态水模拟中观察到的行为相反),但对粘土原子的振动运动(特别是在这里研究的最小孔中)敏感,一,二和三层水合物)。我们的预测D和E_a值与实验数据一致。他们揭示了当从大量液态水变为钠蒙脱土的单层水合物时,对于水和Na〜+,E_a随封闭度的增加而增加〜6 kJ mol〜(-1)。

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