The SEC Strategic Research Cluster and the Centre for Synthesis and Chemical Biology, School of Chemical and Bioprocess Engineering, University College Dublin, Belfield, Dublin 4, Ireland.
J Chem Phys. 2013 Sep 7;139(9):094701. doi: 10.1063/1.4819269.
Equilibrium and non-equilibrium molecular dynamics (MD) simulations have been performed to investigate thermal-driven break-up of planar CO2 hydrate interfaces in liquid water at 300-320 K. Different guest compositions, at 85%, 95%, and 100% of maximum theoretical occupation, led to statistically-significant differences in the observed initial dissociation rates. The melting temperatures of each interface were estimated, and dissociation rates were observed to be strongly dependent on temperature, with higher dissociation rates at larger over-temperatures vis-à-vis melting. A simple coupled mass and heat transfer model developed previously was applied to fit the observed dissociation profiles, and this helps to identify clearly two distinct régimes of break-up; a second well-defined region is essentially independent of composition and temperature, in which the remaining nanoscale, de facto two-dimensional system's lattice framework is intrinsically unstable. From equilibrium MD of the two-phase systems at their melting point, the relaxation times of the auto-correlation functions of fluctuations in number of enclathrated guest molecules were used as a basis for comparison of the variation in the underlying, non-equilibrium, thermal-driven dissociation rates via Onsager's hypothesis, and statistically significant differences were found, confirming the value of a fluctuation-dissipation approach in this case.
已进行平衡和非平衡分子动力学(MD)模拟,以研究在 300-320 K 的液态水中热驱动的平面 CO2 水合物界面断裂。不同的客体组成,85%、95%和 100%的最大理论占据,导致观察到的初始解离速率存在显著差异。估计了每个界面的熔化温度,并且观察到解离速率强烈依赖于温度,相对于熔化,过温度越高,解离速率越高。先前开发的简单耦合质量和传热模型被应用于拟合观察到的解离曲线,这有助于清楚地识别两个不同的断裂阶段;第二个明确定义的区域基本上与组成和温度无关,其中剩余的纳米级、事实上的二维系统的晶格框架本质上是不稳定的。通过在熔点处的两相系统的平衡 MD,笼合物分子数量波动的自相关函数的弛豫时间被用作比较非平衡、热驱动解离速率变化的基础,通过 Onsager 的假设,并且发现了统计学上的显著差异,这证实了在这种情况下波动耗散方法的价值。