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12.4埃铯蒙脱石水合物层间结构与动力学的分子模拟

Molecular Simulation of Interlayer Structure and Dynamics in 12.4 Å Cs-Smectite Hydrates.

作者信息

Sutton Rebecca, Sposito Garrison

机构信息

Geochemistry Department, Earth Sciences Division, Lawrence Berkeley National Laboratory, Mail Stop 90/1116, Berkeley, California, 94720

出版信息

J Colloid Interface Sci. 2001 May 15;237(2):174-184. doi: 10.1006/jcis.2000.7416.

Abstract

A detailed understanding of hydrated Cs-smectites is necessary to predict the permeability of clay liners to radiocesium cations at nuclear waste containment facilities. Monte Carlo (MC) and molecular dynamics (MD) modeling techniques were applied to three representative Cs-smectites to interpret a variety of experimental data on interlayer structure and dynamics. Spectroscopic and surface chemistry methods that attempt to differentiate interlayer water from water residing in micropores have provided data suggesting that, in stable 12.4 Å Cs-smectite hydrates, the interlamellar water content is less than one-half monolayer. Convergence profiles in MC simulations predicted stable hydrates at interlayer water contents of 1/3 or possibly 2/3 water monolayer. Radial distribution functions and coordination number data illustrated the ability of Cs(+) to organize water molecules into partial hydration shells and displayed the distortions of water structure induced by the clay surface. Molecular dynamics simulations of the MC-stable Cs-smectites revealed interlayer Cs(+) to be strongly bound as innersphere surface complexes, in agreement with published bulk diffusion coefficients. The strongly adsorbed Cs(+) can be associated with one of the species identified in (133)Cs NMR spectroscopic studies of hydrated Cs-smectites. These cations typically exhibited jump diffusion, whereas continuous diffusion of H(2)O occurred. Copyright 2001 Academic Press.

摘要

要预测核废料储存设施中粘土衬里对放射性铯阳离子的渗透性,就必须详细了解水合铯蒙脱石。蒙特卡罗(MC)和分子动力学(MD)建模技术被应用于三种具有代表性的铯蒙脱石,以解释关于层间结构和动力学的各种实验数据。试图区分层间水和微孔中所含水分的光谱学和表面化学方法提供的数据表明,在稳定的12.4 Å铯蒙脱石水合物中,层间水含量小于半个单层。MC模拟中的收敛曲线预测,在层间水含量为1/3或可能为2/3水单层时会形成稳定的水合物。径向分布函数和配位数数据表明,Cs(+)能够将水分子组织成部分水合壳,并显示了粘土表面引起的水结构畸变。对MC稳定的铯蒙脱石进行的分子动力学模拟表明,层间Cs(+)作为内球表面络合物被强烈结合,这与已发表的体扩散系数一致。强烈吸附的Cs(+)可能与水合铯蒙脱石的(133)Cs NMR光谱研究中确定的一种物种有关。这些阳离子通常表现出跳跃扩散,而H(2)O则发生连续扩散。版权所有2001年学术出版社。

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