Two-Ply Composite Membranes with Separation Layers from Chitosan and Sulfoethylcellulose on a Microporous Support Based on Poly(diphenylsulfone-N-phenylphthalimide)

Two-ply composite membranes with separation layers from chitosan and sulfoethylcellulose were developed on a microporous support based on poly(diphenylsulfone-N-phenylphthalimide) and investigated by use of X-ray diffraction and scanning electron microscopy methods. The pervaporation properties of t...

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Main Authors: Svetlana V. Kononova, Elena V. Kruchinina, Valentina A. Petrova, Yulia G. Baklagina, Kira A. Romashkova, Anton S. Orekhov, Vera V. Klechkovskaya, Yury A. Skorik
Format: Article
Language:English
Published: MDPI AG 2017-12-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/22/12/2227
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author Svetlana V. Kononova
Elena V. Kruchinina
Valentina A. Petrova
Yulia G. Baklagina
Kira A. Romashkova
Anton S. Orekhov
Vera V. Klechkovskaya
Yury A. Skorik
author_facet Svetlana V. Kononova
Elena V. Kruchinina
Valentina A. Petrova
Yulia G. Baklagina
Kira A. Romashkova
Anton S. Orekhov
Vera V. Klechkovskaya
Yury A. Skorik
author_sort Svetlana V. Kononova
collection DOAJ
description Two-ply composite membranes with separation layers from chitosan and sulfoethylcellulose were developed on a microporous support based on poly(diphenylsulfone-N-phenylphthalimide) and investigated by use of X-ray diffraction and scanning electron microscopy methods. The pervaporation properties of the membranes were studied for the separation of aqueous alcohol (ethanol, propan-2-ol) mixtures of different compositions. When the mixtures to be separated consist of less than 15 wt % water in propan-2-ol, the membranes composed of polyelectrolytes with the same molar fraction of ionogenic groups (-NH3+ for chitosan and -SO3− for sulfoethylcellulose) show high permselectivity (the water content in the permeate was 100%). Factors affecting the structure of a non-porous layer of the polyelectrolyte complex formed on the substrate surface and the contribution of that complex to changes in the transport properties of membranes are discussed. The results indicate significant prospects for the use of chitosan and sulfoethylcellulose for the formation of highly selective pervaporation membranes.
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spelling doaj.art-24de68dff6d447fbbcce7c14be4969f32022-12-22T03:17:27ZengMDPI AGMolecules1420-30492017-12-012212222710.3390/molecules22122227molecules22122227Two-Ply Composite Membranes with Separation Layers from Chitosan and Sulfoethylcellulose on a Microporous Support Based on Poly(diphenylsulfone-N-phenylphthalimide)Svetlana V. Kononova0Elena V. Kruchinina1Valentina A. Petrova2Yulia G. Baklagina3Kira A. Romashkova4Anton S. Orekhov5Vera V. Klechkovskaya6Yury A. Skorik7Institute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi pr. VO 31, St. Petersburg 199004, RussiaInstitute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi pr. VO 31, St. Petersburg 199004, RussiaInstitute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi pr. VO 31, St. Petersburg 199004, RussiaInstitute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi pr. VO 31, St. Petersburg 199004, RussiaInstitute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi pr. VO 31, St. Petersburg 199004, RussiaShubnikov Institute of Crystallography, Federal Scientific Research Centre “Crystallography and Photonics”, Russian Academy of Sciences, Leninskiy pr. 59, Moscow 119333, RussiaShubnikov Institute of Crystallography, Federal Scientific Research Centre “Crystallography and Photonics”, Russian Academy of Sciences, Leninskiy pr. 59, Moscow 119333, RussiaInstitute of Macromolecular Compounds of the Russian Academy of Sciences, Bolshoi pr. VO 31, St. Petersburg 199004, RussiaTwo-ply composite membranes with separation layers from chitosan and sulfoethylcellulose were developed on a microporous support based on poly(diphenylsulfone-N-phenylphthalimide) and investigated by use of X-ray diffraction and scanning electron microscopy methods. The pervaporation properties of the membranes were studied for the separation of aqueous alcohol (ethanol, propan-2-ol) mixtures of different compositions. When the mixtures to be separated consist of less than 15 wt % water in propan-2-ol, the membranes composed of polyelectrolytes with the same molar fraction of ionogenic groups (-NH3+ for chitosan and -SO3− for sulfoethylcellulose) show high permselectivity (the water content in the permeate was 100%). Factors affecting the structure of a non-porous layer of the polyelectrolyte complex formed on the substrate surface and the contribution of that complex to changes in the transport properties of membranes are discussed. The results indicate significant prospects for the use of chitosan and sulfoethylcellulose for the formation of highly selective pervaporation membranes.https://www.mdpi.com/1420-3049/22/12/2227two-ply membranechitosansulfoethylcellulosepolyelectrolyte complexpoly(diphenylsulfone-N-phenylphthalimide)porous substratepervaporation
spellingShingle Svetlana V. Kononova
Elena V. Kruchinina
Valentina A. Petrova
Yulia G. Baklagina
Kira A. Romashkova
Anton S. Orekhov
Vera V. Klechkovskaya
Yury A. Skorik
Two-Ply Composite Membranes with Separation Layers from Chitosan and Sulfoethylcellulose on a Microporous Support Based on Poly(diphenylsulfone-N-phenylphthalimide)
Molecules
two-ply membrane
chitosan
sulfoethylcellulose
polyelectrolyte complex
poly(diphenylsulfone-N-phenylphthalimide)
porous substrate
pervaporation
title Two-Ply Composite Membranes with Separation Layers from Chitosan and Sulfoethylcellulose on a Microporous Support Based on Poly(diphenylsulfone-N-phenylphthalimide)
title_full Two-Ply Composite Membranes with Separation Layers from Chitosan and Sulfoethylcellulose on a Microporous Support Based on Poly(diphenylsulfone-N-phenylphthalimide)
title_fullStr Two-Ply Composite Membranes with Separation Layers from Chitosan and Sulfoethylcellulose on a Microporous Support Based on Poly(diphenylsulfone-N-phenylphthalimide)
title_full_unstemmed Two-Ply Composite Membranes with Separation Layers from Chitosan and Sulfoethylcellulose on a Microporous Support Based on Poly(diphenylsulfone-N-phenylphthalimide)
title_short Two-Ply Composite Membranes with Separation Layers from Chitosan and Sulfoethylcellulose on a Microporous Support Based on Poly(diphenylsulfone-N-phenylphthalimide)
title_sort two ply composite membranes with separation layers from chitosan and sulfoethylcellulose on a microporous support based on poly diphenylsulfone n phenylphthalimide
topic two-ply membrane
chitosan
sulfoethylcellulose
polyelectrolyte complex
poly(diphenylsulfone-N-phenylphthalimide)
porous substrate
pervaporation
url https://www.mdpi.com/1420-3049/22/12/2227
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