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  4. Interfacially polymerized thin-film composite polyamide membrane: Positron annihilation spectroscopic study, characterization and pervaporation performance
 
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Interfacially polymerized thin-film composite polyamide membrane: Positron annihilation spectroscopic study, characterization and pervaporation performance

Journal
Polymer Journal
Journal Volume
42
Journal Issue
3
Pages
242-248
Date Issued
2010
Author(s)
Kao S.-T.
Huang S.-H.
Liaw D.-J.
Chao W.-C.
Hu C.-C.
Li C.-L.
Wang D.-M.  
Lee K.-R.
Lai J.-Y.
DOI
10.1038/pj.2009.334
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/406366
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-77949466699&doi=10.1038%2fpj.2009.334&partnerID=40&md5=2471e9607fc2776aa506d2fccf32b802
Abstract
To improve the pervaporation performance of polyamide membrane, thin-film composite (TFC) polyamide membranes were prepared through the interfacial polymerization between m-phenylenediamine (MPDA) or 1,3-phenylenediamine-4- sulfonic acid (MPDASA) and trimesoyl chloride (TMC) on the surface of the modified asymmetric polyacrylonitrile (mPAN) membrane and applied in the pervaporation separation of 70 weight % aqueous isopropanol solutions at 25 ¢XC. The variations in the free volume and the thickness of the active polyamide layer of composite membrane were obtained by positron annihilation spectroscopy (PAS) experiments, in which a variable monoenergy slow-positron beam was used. FTIR-ATR spectroscopy, XPS, scanning electron microscopy, AFM and water contact angle measurements were applied to analyze chemical structures, surface elemental compositions, morphologies, surface roughness and hydrophilicity of the active polyamide layer of composite membrane. From the result of PAS experiments, the S parameter (corresponding to the free volume size and amount) and the thickness of the active polyamide MPDASA-TMC/mPAN layer were found to be lower than those of the active MPDA-TMC/mPAN layer. In the aqueous isopropanol solution dehydration, the MPDASA-TMC/mPAN membrane exhibited a higher permeation rate than but maintained the same water concentration in the permeate as did the MPDA-TMC/mPAN membrane. This is in good agreement with the analysis by PAS. ? The Society of Polymer Science, Japan (SPSJ) All rights reserved.
Subjects
Interfacial polymerization
PAS
Pervaporation
Polyamide
TFC membrane
Type
journal article

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