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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >A comparison of potential functions for molecular dynamic simulation of methane sorption in the silicalite
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A comparison of potential functions for molecular dynamic simulation of methane sorption in the silicalite

机译:硅铁中甲烷吸附分子动态模拟潜在功能的比较

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In order to make the best choice, two types of a force field have been studied to access a possibility of application of one of them to simulation of adsorption and transport processes in the silicalite (synthetic zeolite)-methane system. To accomplish this, the molecular dynamic technique implemented in the LAMMPS package was used. Priority criteria of the choice were retention of the structure completeness during long simulation runs, the system’s stability, the possibility of simulation of a separate good-sized zeolite cluster without using periodic boundary conditions for multiplying zeolite’s lattice in space. For the force-field, which met these requirements, some structural, thermodynamic and transport characteristics of the system were calculated. Radial and angular distribution functions for different atom pairs and triplets were obtained for both the pure zeolite and the silicalite-methane system. A good agreement of all obtained characteristics with literature data of numerical and natural experiments was achieved.
机译:为了使最佳选择,已经研究了两种类型的力场,以进入将其中一个应用于硅沸石(合成沸石) - 甲烷系统中的吸附和运输过程的可能性。为此,使用在LAMMPS包中实施的分子动态技术。选择优先权标准在长仿真运行期间保持结构完整性,系统的稳定性,模拟单独的良好沸石簇的可能性,而不使用周期边界条件,用于将沸石的格子在空间中乘以乘法。对于符合这些要求的力场,计算了系统的一些结构,热力学和传输特性。为纯沸石和硅沸石 - 甲烷系统获得不同原子对和三胞胎的径向和角分布函数。达到了与数值和天然实验的文献数据的所有获得特征的良好一致性。

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