...
首页> 外文期刊>Separation and Purification Reviews >Kinetic Modeling of Pure and Multicomponent Gas Permeation Through Microporous Membranes: Diffusion Mechanisms and Influence of Isotherm Type
【24h】

Kinetic Modeling of Pure and Multicomponent Gas Permeation Through Microporous Membranes: Diffusion Mechanisms and Influence of Isotherm Type

机译:通过微孔膜渗透纯净和多组分气体的动力学模型:扩散机理和等温线类型的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The main transport mechanisms involved in pure and multicomponent gas permeation through real microporous membranes are reviewed in this article. They include viscous flow, Knudsen diffusion, bulk diffusion (in mixtures), surface diffusion, and activated gaseous diffusion. The individual contribution of each mechanism may be discriminated from permeation experiments, and can be used to detect the occurrence of defects in the membrane structure. In the case of multicomponent mixtures, the milestone theory of Maxwell-Stefan can be advantageously applied to model the transfer mechanisms embodied. The separation of mixtures can be predicted from data measured for pure gases; here, computer simulations may provide relevant information concerning the loading influence upon diffusivities. With respect to surface diffusion, equilibrium plays a major role in the process, which requires accurate isotherms to compute the corresponding Maxwell-Stefan thermodynamic factors. New single/multicomponent factors are derived here for the first time for Freundlich, Dual-site Langmuir, and Dual-site Langmuir-Freundlich isotherms. The influence of loading upon the surface diffusivities is also addressed, and the most significant theories and approaches adopted to model the phenomenon are discussed.
机译:本文综述了纯气体和多成分气体通过真正的微孔膜渗透的主要传输机理。它们包括粘性流,克努森扩散,本体扩散(混合),表面扩散和活化气体扩散。每种机制的单独贡献可与渗透实验区分开,并可用于检测膜结构中缺陷的发生。在多组分混合物的情况下,Maxwell-Stefan的里程碑理论可以有利地应用于对所体现的传递机制进行建模。混合物的分离可以从测量纯气体的数据中预测出来;在此,计算机模拟可以提供有关载荷对扩散率影响的相关信息。关于表面扩散,平衡在该过程中起主要作用,这需要精确的等温线来计算相应的麦克斯韦-斯特凡热力学因子。首次针对Freundlich,Langmuir双站点和Langmuir-Freundlich双站点等温线首次导出新的单/多分量因子。还讨论了载荷对表面扩散率的影响,并讨论了对现象进行建模的最重要的理论和方法。

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