CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane

In this study, the capability of a mixed matrix composite membrane (MMCM)fabricated using polyether block amide polymer PEBAX MH1657 from Arkema and in lab synthesized aminated partially reduced graphene oxide (A-prGO)nanofiller as a selective layer has been studied for gas separation. Moreover, the...

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Main Authors: Mohammed, Shawqi Ali, Nasir, A. M., Aziz, F., Kumar, G., Sallehhudin, W., Jaafar, J., Lau, W. J., Yusof, N., W.Salleh, W. N., Ismail, A. F.
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Published: Elsevier B.V. 2019
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Online Access:http://eprints.utm.my/id/eprint/88670/
http://dx.doi.org/10.1016/j.seppur.2019.04.061
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spelling my.utm.886702020-12-15T10:39:19Z http://eprints.utm.my/id/eprint/88670/ CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane Mohammed, Shawqi Ali Nasir, A. M. Aziz, F. Kumar, G. Sallehhudin, W. Jaafar, J. Lau, W. J. Yusof, N. W.Salleh, W. N. Ismail, A. F. TP Chemical technology In this study, the capability of a mixed matrix composite membrane (MMCM)fabricated using polyether block amide polymer PEBAX MH1657 from Arkema and in lab synthesized aminated partially reduced graphene oxide (A-prGO)nanofiller as a selective layer has been studied for gas separation. Moreover, the effects of nanofiller addition on membrane structure properties and performance were examined. The PEBAX/A-prGO membrane was fabricated as a selective layer on top of a supporting substrate layer of polysulfone 1700. MMCM was prepared in five different loadings of A-prGO nanofiller (0, 0.05, 0.1, 0.2, 0.6 (w/w)%)of the used PEBAX amount. The synthesized nanofiller and fabricated MMCM were characterized using different characterization tests (XRD, FTIR, EDX, and SEM). The optimum separation of the membrane was found when the loading of A-prGO was 0.1%. The permeability of the membrane for CO2, N2 and CH4 gases were 47.5 Barrer for CO2, 0.45 Barrer for N2 & 2 Barrer for CH4 while the selectivity of CO2/N2 and CO2/CH4 are 105.6 and 23.75, respectively. Surprisingly, the fabricated membrane performance found to be above the Robeson 2008 upper bound of permeability- selectivity relation for CO2/N2 gases separation. Elsevier B.V. 2019-09-15 Article PeerReviewed Mohammed, Shawqi Ali and Nasir, A. M. and Aziz, F. and Kumar, G. and Sallehhudin, W. and Jaafar, J. and Lau, W. J. and Yusof, N. and W.Salleh, W. N. and Ismail, A. F. (2019) CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane. Separation and Purification Technology, 223 . pp. 142-153. ISSN 1383-5866 http://dx.doi.org/10.1016/j.seppur.2019.04.061 DOI:10.1016/j.seppur.2019.04.061
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Mohammed, Shawqi Ali
Nasir, A. M.
Aziz, F.
Kumar, G.
Sallehhudin, W.
Jaafar, J.
Lau, W. J.
Yusof, N.
W.Salleh, W. N.
Ismail, A. F.
CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane
description In this study, the capability of a mixed matrix composite membrane (MMCM)fabricated using polyether block amide polymer PEBAX MH1657 from Arkema and in lab synthesized aminated partially reduced graphene oxide (A-prGO)nanofiller as a selective layer has been studied for gas separation. Moreover, the effects of nanofiller addition on membrane structure properties and performance were examined. The PEBAX/A-prGO membrane was fabricated as a selective layer on top of a supporting substrate layer of polysulfone 1700. MMCM was prepared in five different loadings of A-prGO nanofiller (0, 0.05, 0.1, 0.2, 0.6 (w/w)%)of the used PEBAX amount. The synthesized nanofiller and fabricated MMCM were characterized using different characterization tests (XRD, FTIR, EDX, and SEM). The optimum separation of the membrane was found when the loading of A-prGO was 0.1%. The permeability of the membrane for CO2, N2 and CH4 gases were 47.5 Barrer for CO2, 0.45 Barrer for N2 & 2 Barrer for CH4 while the selectivity of CO2/N2 and CO2/CH4 are 105.6 and 23.75, respectively. Surprisingly, the fabricated membrane performance found to be above the Robeson 2008 upper bound of permeability- selectivity relation for CO2/N2 gases separation.
format Article
author Mohammed, Shawqi Ali
Nasir, A. M.
Aziz, F.
Kumar, G.
Sallehhudin, W.
Jaafar, J.
Lau, W. J.
Yusof, N.
W.Salleh, W. N.
Ismail, A. F.
author_facet Mohammed, Shawqi Ali
Nasir, A. M.
Aziz, F.
Kumar, G.
Sallehhudin, W.
Jaafar, J.
Lau, W. J.
Yusof, N.
W.Salleh, W. N.
Ismail, A. F.
author_sort Mohammed, Shawqi Ali
title CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane
title_short CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane
title_full CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane
title_fullStr CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane
title_full_unstemmed CO2/N2 selectivity enhancement of PEBAX MH 1657/Aminated partially reduced graphene oxide mixed matrix composite membrane
title_sort co2/n2 selectivity enhancement of pebax mh 1657/aminated partially reduced graphene oxide mixed matrix composite membrane
publisher Elsevier B.V.
publishDate 2019
url http://eprints.utm.my/id/eprint/88670/
http://dx.doi.org/10.1016/j.seppur.2019.04.061
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