硅酸铝
插层(化学)
蒙脱石
分子动力学
粘土矿物
二氧化碳
化学物理
碳纤维
力场(虚构)
分子
材料科学
固碳
化学工程
扩散
化学
纳米技术
矿物学
计算化学
无机化学
热力学
有机化学
复合材料
计算机科学
物理
催化作用
人工智能
工程类
复合数
作者
Randall T. Cygan,Vyacheslav Romanov,Evgeniy M. Myshakin
摘要
Naturally occurring clay minerals provide a distinctive material for carbon capture and carbon dioxide sequestration. Swelling clay minerals, such as the smectite variety, possess an aluminosilicate structure that is controlled by low-charge layers that readily expand to accommodate water molecules and, potentially, CO2. Recent experimental studies have demonstrated the efficacy of intercalating CO2 in the interlayer of layered clays, but little is known about the molecular mechanisms of the process and the extent of carbon capture as a function of clay charge and structure. A series of molecular dynamics simulations and vibrational analyses have been completed to assess the molecular interactions associated with incorporation of CO2 and H2O in the interlayer of montmorillonite clay and to help validate the models with experimental observation. An accurate and fully flexible set of interatomic potentials for CO2 is developed and combined with Clayff potentials to help evaluate the intercalation mechanism and examine the effect of molecular flexibility on the diffusion rate of CO2 in water.
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