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Molecular dynamics simulation of a lignite structure simplified model absorbing water

机译:褐煤结构的分子动力学模拟简化模型吸收水

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To study the formation mechanism of hydration films, a lignite molecular model based on FTIR analysis was established. Both the positive and negative extreme values (?184.76 kJ/mol) of the electrostatic potential appear around oxygen-containing functional groups. Water molecules are mainly adsorbed near oxygen-containing functional groups. This paper studies the absorption of lignite for water molecules using MD simulation. With the addition of water molecules, the number of polar groups increases, and the electrostatic potential level of the system increases, causing an increase in the number of active sites. When the amount of water is inadequate for covering the surface of lignite, water molecules adsorb at active sites and places with lower z values. As the number of water molecules increase, the average length of hydrogen bonds between water molecules and that between lignite and water are close to the set values (1.97 and 1.8??, respectively). The short-range order structure of the interface has little effect on the average bond length of water molecules, but it reduces the average bond angle by 1?2?. After a hydration film forms, the increase to the thickness of the hydration film is primarily attributed to hydrogen-bond interaction between water molecules.
机译:为了研究水合膜的形成机制,建立了基于FTIR分析的褐煤分子模型。静电电位的正极和负极值(α184.76kj/ mol)均出现含氧官能团。水分子主要吸附在含氧官能团附近。本文研究了使用MD模拟的褐煤对水分子的吸收。随着水分子的添加,极性组的数量增加,系统的静电电位水平增加,导致有源点的数量增加。当水量不充分时用于覆盖褐煤表面时,水分子在活性位点吸附和​​具有较低Z值的地方。随着水分子的数量增加,水分子之间的氢键与褐煤和水之间的平均长度靠近设定值(分别为1.97和1.8Ω)。界面的短距离顺序结构对水分子的平均键长几乎没有影响,但它会将平均键角减少1?2。在水合膜形成之后,水合膜的厚度的增加主要归因于水分子之间的氢键相互作用。

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