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Pervaporation and vapor permeation - separation through nonporous membranes

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This work reviews pervaporation and vapor permeation - membrane separation techniques used to separate liquid mixtures and/or gas/vapors mixtures. Performance parameters of membranes and the modules arrangements are described. The paper discusses theories applied for theoretical description of pervaporation and vapor permeation processes. Examples of the practical applications of pervaporation and vapor permeation are also outlined.
Rocznik
Strony
1--7
Opis fizyczny
Bibliogr. 33 poz., rys., tab.
Twórcy
autor
Bibliografia
  • (1) Mulder M.H.Y.; Basic principles of membrane technology; Kluwer Academic Publishers; Dordrecht, Boston, London, 1991.
  • (2) Neel J.; Introduction to Pervaporation; in: Pervaporation Membrane Separation Processes; R. Y. M. Huang (Ed.); Amsterdam 1991, 1 - 81.
  • (3) Böddeker K.W.; Terminology in pervaporation, J. Membrane. Sci., 1990, 51, 259.
  • (4) Kujawski W., Application of pervaporation and vapor permeation in environmental protection, Polish J. Environmental Studies, 2000, 9, 13.
  • (5) Kujawski w., Dyfuzyjne techniki separacji membranowej - separacja par i gazów, perwaporacja, Proc. Membrane School 2002, Jachranka, W.Piatkiewicz (Ed.), Technical University of Warsaw, 2002, 48.
  • (6) Okada T., Matsuura T., A new transport model for pervaporation, J. Membrane Sci., 1991, 59, 133.
  • (7) Okada T., Matsuura T., Predictability of transport equations for pervaporation on the basis of pore-flow mechanism, J. Membrane Sci., 1992, 70, 163.
  • (8) Kujawski W., Transport Phenomena in Pervaporation of Water-Alcohol Mixtures Based on Pore-Flow Model, Proc. of 28th International Conference of Slovak Society of Chemical Engineering, 2001, L98, 1.
  • (9) Wijmans J.G., Baker R.W., The solution-diffusion model: a review, J. Membrane Sci., 1995, 107, 1.
  • (10) Schaetzel P., Vauclair C., Luo G., Nguyen Q.T, J., The solution-diffusion model. Order of magnitude calculation of coupling between the fluxes in pervaporation, Membrane Sci., 2001, 191, 103.
  • (11) Shieh J.-J., Huang R.Y.M., A pseudophase-Change Solution-Diffusion Model for Pervaporation. I. Single Component Permeation, Sep. Science Technl!., 1998, 33, 767.
  • (12) Mulder M.H.Y., Smolders C.A., mass Transport Phenomena in Pervaporation Process, Sep. Science Technol., 1991, 26, 85.
  • (13) Kedem O., The Role of Coupling in Pervaporation, J. Membrane Sci., 1989, 47, 277.
  • (14) Koter S., Kujawski w., Analysis of membrane Selectivity in the Pressure driven Transport in Terms of the Solution-Diffusion Models and Irreversible Thermodynamics, Polish J. Chern., 2002, 76, 1637.
  • (15) Yoshikawa M., Yukoshi T., Sanu i K., Ogata N., Selective Separation of Water-Ethanol Mixture through Synthetic Polymer Membranes Having Carboxylic Acid as a Functional Group, J. Pol. Sci.: A: Po!. Chern., 1986, 24, 1585.
  • (16) Imai Y., Membrane Transport System Modeled by Network Thermodynamics, J. Membrane Sci., 1989, 41, 3.
  • (17) Simon A.M., Doran P., Paterson R., Assessment of diffusion coupling effects in membrane separation. I. Network ther-modynamics modelling, J. Membrane Sci., 1996, 109, 231.
  • (18) Koops G.H., Smolders C.A.; Estimation and Evaluation of Polymeric MateriaIs for Pervaporation Membranes; in: Pervaporation Membrane Separation Processes; Huang R. Y. M. (Ed.); EIsevier, Amsterdam, 1991, 253.
  • (19) Semenova S.I., Ohya H., Soontarapa K., Hydrophilic membranes for pervaporation: An analytical review, Desalination, 1997, 110, 251.
  • (20) Karlsson H.O.E., Tragardh G., Pervaporation of dilute organic-waters mixtures. A literature review on modeliing studies and applications to aroma compound recovery, J. Membrane Sci., 1993, 76, 121.
  • (21) van Gemert R.W., Cuperus F.P, Newly developed ceramic membranes for dehydration and separation of organic mixtures by pervaporation, J. Membrane Sci., 1995, 105, 287.
  • (22) Zhou M., Persin M., Kujawski W., Sarrazin J., Electrochemical Preparation of Polypyrrole Membranes and Their Application in Ethanol-Cyclohexane Separation by Pervaporation, J. Membrane Sci. 1995, 108, 89.
  • (23) Rautenbach R., Herion C., Meyer-Blumenroth U., Engineering aspects of pervaporation: calculation of transport resistances, module optimization and plant design, in: Pervaporation Membrane Separation Processes; Huang R.Y.M. (Ed.); EIsevier, Amsterdam, 1991, 181.
  • (24) Scott K., Handbook of Industrial Membranes, Scott K. (Ed.), EIsevier, Oxford, 1995.
  • (25) Binning R.C., Lee RJ., Jennings J.F., Martin E.c., Separation of liquid mixtures by permeation, Industrial Eng. Chemistry, 1961, 53, 45.
  • (26) Jonquieres A., Clement R., Lochon P., Neel J., Dresch M., Chretien B., Industrial state-of-the-art of pervaporation and vapor permeation in the western countries, J. membrane Sci., 2002, 206, 87.
  • (27) Sander U., Janssen H., Industrial application of vapor permeation, J. Membrane Sci., 1991, 61, 113.
  • (28) Vauclair C,; Tarjus H.; Schaetzel P., Permselective properties of PVA-PAA blended membrane used for dehydration of fusel oil by pervaporation, J. Membrane Sci., 1997, 125, 293.
  • (29) Kujawski W., Capala w., Palczewska-Tulińska M., Ratajczak w., Linkiewicz D., Michalak B., Application of Membrane Pervaporation Process to the Enhanced Separation of Fusel Oils, Chem. Pap., 2002, 56, 3.
  • (30) Kujawski W., Capala w., Poręski T., Application of Membrane Pervaporation to the Dehydration of Ethanol, Proc. of 27th International Conference of Slovak Society of Chemical Engineering, 2000, M13, 1 - 10.
  • (31) Böddeker K. W.; Bengtson, Selective pervaporation of organics from water, in: Pervaporation Membrane Separation Processes; Huang R. Y. M. (Ed.); EIsevier, Amsterdam, 1991, 437.
  • (32) Kujawski W., Pervaporative removal of organics from water using hydrophobic membranes. Binary mixtures, Sep. Science Technol., 2000, 35, 89.
  • (33) Simrnons Y., Kaschemekat J., Jacobs M.L., Dortmundt D.D.., Membrane Systems Offer a New Way to Recover Volatile Organie Air Pollutants, Chemical Engineering, 1994, 9, 92.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS3-0002-0076
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