首页> 外文期刊>Journal of Membrane Science >Grand canonical Monte Carlo and non-equilibrium molecular dynamics simulation study on the selective adsorption and fluxes of oxygenitrogen gas mixtures through carbon membranes
【24h】

Grand canonical Monte Carlo and non-equilibrium molecular dynamics simulation study on the selective adsorption and fluxes of oxygenitrogen gas mixtures through carbon membranes

机译:大经典蒙特卡洛和非平衡分子动力学模拟研究氧气/氮气混合物通过碳膜的选择性吸附和通量

获取原文
获取原文并翻译 | 示例
       

摘要

The equilibrium selective adsorption and fluxes of oxygenitrogen binary gas mixtures through carbon membranes are investigated at 303 K, respectively, using a grand canonical Monte Carlo simulation and a dual control volume grand canonical molecular dynamics method. The carbon membrane pores are modeled as slit-like pores with a two-dimensional structure where carbon atoms are placed according to the structure of graphite layers. The effect of the membrane thickness, bulk pressure, and pore width on the equilibrium selective adsorption and dynamic separation factor is discussed. Meanwhile a new iteration approach to calculate the flux and dynamic separation factor of binary gas mixtures through membranes is proposed, by which we can simulate the permeation and fluxes of gases through the membranes in the presence of pressure gradient and consider the effect of pressure and composition of low-pressure side in the meantime. The simulated results show that bulk pressure and membrane thickness have no effect on the equilibrium selectivity, but they have a great effect on the fluxes and dynamic separation factors of gases. The pore width impacts the equilibrium selectivity and dynamic separation factors strongly, especially when the pore width is very small. Molecular sieving dominates the separation of oxygenitrogen in non-equilibrium simulations. But due to the comparable molecular size of oxygen and nitrogen, we have to modify the carbon membranes in order to improve dynamic separation of atmosphere.
机译:使用经典的蒙特卡洛模拟和双重控制体积经典的分子动力学方法,分别在303 K下研究了氧/氮二元气体混合物通过碳膜的平衡选择性吸附和通量。碳膜孔被建模为具有二维结构的狭缝状孔,其中根据石墨层的结构放置了碳原子。讨论了膜厚度,体积压力和孔宽度对平衡选择性吸附和动态分离因子的影响。同时提出了一种新的迭代方法来计算二元混合气通过膜的通量和动态分离因子,通过这种方法,我们可以在压力梯度存在的情况下模拟气体在膜中的渗透和通量,并考虑压力和成分的影响。同时低压侧的压力。模拟结果表明,体积压力和膜厚度对平衡选择性没有影响,但对气体的通量和动态分离因子有很大的影响。孔宽会强烈影响平衡选择性和动态分离因子,尤其是当孔宽非常小时。在非平衡模拟中,分子筛控制着氧/氮的分离。但是由于氧和氮的分子大小相当,我们必须对碳膜进行修饰,以改善气氛的动态分离。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号