UPMC University Paris 06, UMR 7195, PECSA, F-75005 Paris, France.
Environ Sci Technol. 2011 Apr 1;45(7):2850-5. doi: 10.1021/es1031932. Epub 2011 Mar 7.
Within the wider context of water behavior in soils, and with a particular emphasis on clays surrounding underground radioactive waste packages, we present here the translational dynamics of water in clays in low hydrated states as studied by coupling molecular dynamics (MD) simulations and quasielastic neutron scattering experiments by neutron spin echo (NSE). A natural montmorillonite clay of interest is modeled by a synthetic clay which allows us to understand the determining parameters from MD simulations by comparison with the experimental values. We focus on temperatures between 300 and 350 K, i.e., the range relevant to the highlighted application. The activation energy Ea experimentally determined is 6.6 kJ/mol higher than that for bulk water. Simulations are in good agreement with experiments for the relevant set of conditions, and they give more insight into the origin of the observed dynamics.
在土壤中水分行为的更广泛背景下,特别是在地下放射性废物包周围的粘土中,我们在这里介绍了通过耦合分子动力学 (MD) 模拟和通过中子自旋回波 (NSE) 的准弹性中子散射实验研究的低水合状态下粘土中水分的输运动力学。通过与实验值进行比较,由合成粘土模拟出感兴趣的天然蒙脱石粘土,从而使我们能够从 MD 模拟中理解确定参数。我们专注于 300 至 350 K 之间的温度,即与突出应用相关的范围。实验确定的激活能 Ea 比体相水高 6.6 kJ/mol。对于相关条件集,模拟与实验非常吻合,并且它们深入了解了观察到的动力学的起源。