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Couple Model fof Concentration Polarization and Pore transport in Crossflow Nanofiltration

机译:夫妇模型FOF浓度极化和孔隙运输在十字流纳滤中

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摘要

A coupled model of concentration polarization and pore transport of multicomponent salt mixtures in crossflow nanofiltration rgigorously predicts local variations of ionic concentrations, flux and individual ion rejections along a rectangular crossflow filtration channel by a coupled solution of the convective-diffusion and extended Nernst-Planck equations. Coupling the pore transport model with the multicomponent convective-diffusion equation in the concentration polarization layer provides a comprehensive understanding of the interplay between concentration polarization and salt rejection. The coupled model is used to predict the local variations of ion rejection, permeate flux and mixture composition in a rectangular crossflow filtration channel for three-component salt mixtures. The total membrane surface concentration of the ions and the ratio of different ions in the mixture (salt ratio0 can change considerably along a crossflow filtration channel, and, consequently, cause remarkable variations in intrinsic ion rejections with axial position in the channel.
机译:通过对流扩散的耦合解决方案,通过对流扩散的耦合解决方案促使沿矩形交叉流过滤通道的离子浓度,磁通量和各个离子抑制的局部变化来预测离子浓度,磁通量和单独离子抑制的局部变化。 。在浓度偏振层中与多组分对流 - 扩散方程耦合耦合孔传输模型提供了对浓度极化和盐排斥之间的相互作用的综合了解。耦合模型用于预测用于三组分盐混合物的矩形交叉流过滤通道中的离子排斥,渗透助焊剂和混合物组合物的局部变化。离子的总膜表面浓度和混合物中的不同离子的比例(盐比沿横流过滤通道可以大大变化,因此,在通道中具有轴向位置的固有离子抑制的显着变化。

著录项

  • 来源
    《AIChE Journal》 |2001年第12期|共13页
  • 作者单位

    Dept. of Chemical Engineering environmental Engineering Program Yale University New Haven CT 06520;

    Dept. of Chemical Engineering environmental Engineering Program Yale University New Haven CT 06520;

    Dept. of Chemical Engineering environmental Engineering Program Yale University New Haven CT 06520;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

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