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Basic equations of the mass transport through a membrane - download pdf or read online

By Endre Nagy

ISBN-10: 0124160255

ISBN-13: 9780124160255

With a close research of the mass shipping via membrane layers and its influence on diversified separation procedures, this publication offers a accomplished examine the theoretical and functional features of membrane delivery houses and features. easy equations for each membrane are supplied to foretell the mass move fee, the focus distribution, the convective pace, the separation potency, and the impression of chemical or biochemical response considering the heterogeneity of the membrane layer to aid greater comprehend the mechanisms of the separation tactics. The reader may be capable of describe membrane separation strategies and the membrane reactors in addition to select the main compatible membrane constitution for separation and for membrane reactor. Containing certain dialogue of the most recent ends up in delivery techniques and separation procedures, this booklet is key for chemistry scholars and practitioners of chemical engineering and approach engineering.

  • Detailed survey of the theoretical and sensible points of each membrane approach with particular equations
  • Practical examples mentioned intimately with transparent steps
  • Will help in making plans and education of extra effective membrane constitution separation

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1966) Diffusion in binary solutions. Ind. Eng. Chem. Fund. 5, 189À199. , and Krishna, R. (1990) Mass Transfer. K. , and Krishna, R. (2000) Mass Transfer in Multicomponent Mixture. Delft University Press, Delft. G. (2004) The role of permeant molar volume in the solution-diffusion model transport equations. J. Membr. Sci. 237, 39À50. W. (1995) The solution-diffusion model: a review. J. Membr. Sci. 107, 1À21. A. (1998) TEOM: a unique technique for measuring adsorption properties. Light alkanes in silicalite-1.

Eng. J. 57, 145À153. , and Krishna, R. (2000) The generalized MaxwellÀStefan model for diffusion in zeolites: sorbate molecules with different saturation loadings. Chem. Eng. Sci. 55, 2923À2930. Krishna, R. (1990) Multicomponent surface diffusion of adsorbed species: a description based on the generalized MaxwellÀStefan equations. Chem. Eng. Sci. 45, 1779À1791. Krishna, R. (1993) A unified approach to the modeling of intraparticle diffusion in adsorption processes. Gas. Sep. Purif. 7, 91. , and Baur, R.

Chem. Eng. J. 57, 145À153. , and Krishna, R. (2000) The generalized MaxwellÀStefan model for diffusion in zeolites: sorbate molecules with different saturation loadings. Chem. Eng. Sci. 55, 2923À2930. Krishna, R. (1990) Multicomponent surface diffusion of adsorbed species: a description based on the generalized MaxwellÀStefan equations. Chem. Eng. Sci. 45, 1779À1791. Krishna, R. (1993) A unified approach to the modeling of intraparticle diffusion in adsorption processes. Gas. Sep. Purif. 7, 91.

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Basic equations of the mass transport through a membrane layer by Endre Nagy


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