Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation

Mixed matrix membrane or MMM, comprising polymeric membrane and inorganic fillers, is promising in gas separation as it combines the advantages of the two components. However, the fabrication of MMM is challenging due to the issue of agglomeration of inorganic fillers and the formation of interfacia...

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Main Author: Zhen, Foo Khai
Format: Final Year Project
Language:English
Published: IRC 2015
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Online Access:http://utpedia.utp.edu.my/15768/1/FOO%20KHAI%20ZHEN_14869_CHE_DISSERTATION.pdf
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spelling my-utp-utpedia.157682017-01-25T09:36:27Z http://utpedia.utp.edu.my/15768/ Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation Zhen, Foo Khai TP Chemical technology Mixed matrix membrane or MMM, comprising polymeric membrane and inorganic fillers, is promising in gas separation as it combines the advantages of the two components. However, the fabrication of MMM is challenging due to the issue of agglomeration of inorganic fillers and the formation of interfacial voids on MMM surface morphology. Nevertheless, the dispersion of the filler and interaction between filler-polymer can be improved by modifying filler with binding agents, which improves the separation performance of MMM. This work is about synthesis and characterization of new modified fillers to be used in MCM-41/Psf MMM for CO2/CH4 separation. Mesoporous MCM-41 silica is modified with primary (APTMS) and secondary amine functional groups (AAPTMS) using grafting method. MMMs with MCM-41, APTMS-MCM-41 and AAPTMS-MCM-41 were synthesized using dry/wet inversion method. The filler loadings were set as 0.1 wt% and 1 wt%. The synthesized MMMs were characterized using TEM, SEM, FT-IR and EDX. The CO2/CH4 separation performance of MMMs was tested using gas permeation test rig, where the permeance and selectivity of MMMs were compared to pure Psf membrane. TEM results showed reduction of particles agglomeration after amine functionalization. Besides, the hexagonal structure of MCM-41 remained intact after functionalization. Based on the results obtained from SEM and EDX, the fillers were uniformly dispersed in the Psf matrix, while the presence of amine functional groups APTMS and AAPTMS on MCM-41 has improved the compatibility between fillers and matrix. FT-IR results confirmed the successful grafting of the amine groups on MCM-41 at the band of ~690 cm-1 and ~1530cm−1. The incorporation of APTMS-MCM-41 into Psf has successfully increased the CO2 permeability by 410.44% (0.1 wt% loading) and 569.97% (1 wt% loading), while AAPTMS-MCM-41 has 114.10% (0.1 wt% loading) and 309.32% (0.1 wt% loading). APTMS-MCM-41 has better overall performance than AAPTMS-MCM-41 in terms of permeance. All MMMs showed an inverse relationship between permeance and ideal selectivity as indicated by Robeson’s trade-off bound. IRC 2015-01 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/15768/1/FOO%20KHAI%20ZHEN_14869_CHE_DISSERTATION.pdf Zhen, Foo Khai (2015) Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation. IRC, Universiti Teknologi PETRONAS. (Unpublished)
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Electronic and Digitized Intellectual Asset
url_provider http://utpedia.utp.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Zhen, Foo Khai
Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation
description Mixed matrix membrane or MMM, comprising polymeric membrane and inorganic fillers, is promising in gas separation as it combines the advantages of the two components. However, the fabrication of MMM is challenging due to the issue of agglomeration of inorganic fillers and the formation of interfacial voids on MMM surface morphology. Nevertheless, the dispersion of the filler and interaction between filler-polymer can be improved by modifying filler with binding agents, which improves the separation performance of MMM. This work is about synthesis and characterization of new modified fillers to be used in MCM-41/Psf MMM for CO2/CH4 separation. Mesoporous MCM-41 silica is modified with primary (APTMS) and secondary amine functional groups (AAPTMS) using grafting method. MMMs with MCM-41, APTMS-MCM-41 and AAPTMS-MCM-41 were synthesized using dry/wet inversion method. The filler loadings were set as 0.1 wt% and 1 wt%. The synthesized MMMs were characterized using TEM, SEM, FT-IR and EDX. The CO2/CH4 separation performance of MMMs was tested using gas permeation test rig, where the permeance and selectivity of MMMs were compared to pure Psf membrane. TEM results showed reduction of particles agglomeration after amine functionalization. Besides, the hexagonal structure of MCM-41 remained intact after functionalization. Based on the results obtained from SEM and EDX, the fillers were uniformly dispersed in the Psf matrix, while the presence of amine functional groups APTMS and AAPTMS on MCM-41 has improved the compatibility between fillers and matrix. FT-IR results confirmed the successful grafting of the amine groups on MCM-41 at the band of ~690 cm-1 and ~1530cm−1. The incorporation of APTMS-MCM-41 into Psf has successfully increased the CO2 permeability by 410.44% (0.1 wt% loading) and 569.97% (1 wt% loading), while AAPTMS-MCM-41 has 114.10% (0.1 wt% loading) and 309.32% (0.1 wt% loading). APTMS-MCM-41 has better overall performance than AAPTMS-MCM-41 in terms of permeance. All MMMs showed an inverse relationship between permeance and ideal selectivity as indicated by Robeson’s trade-off bound.
format Final Year Project
author Zhen, Foo Khai
author_facet Zhen, Foo Khai
author_sort Zhen, Foo Khai
title Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation
title_short Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation
title_full Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation
title_fullStr Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation
title_full_unstemmed Amine-Functionalized MCM-41/Polysulfone Mixed Matrix Membranes: Preparation, Characterization and Its Performance in CO2/CH4 Separation
title_sort amine-functionalized mcm-41/polysulfone mixed matrix membranes: preparation, characterization and its performance in co2/ch4 separation
publisher IRC
publishDate 2015
url http://utpedia.utp.edu.my/15768/1/FOO%20KHAI%20ZHEN_14869_CHE_DISSERTATION.pdf
http://utpedia.utp.edu.my/15768/
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score 13.209306