Surface Modification of AMH-3 for Development of Mixed Matrix Membranes

AMH-3 layered silicate is chosen for this study as its 3D structure with crystallographic pore size of 3.4 Å makes it an attractive material for gas separation applications. AMH-3 layered silicate was synthesized via hydrothermal synthesis method and then functionalized using octyl(methyl)dimethoxys...

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Main Author: Nyuk Tzi, Elaine Chong
Format: Final Year Project
Language:English
Published: IRC 2015
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Online Access:http://utpedia.utp.edu.my/15818/1/DISSERTATION_MAY_2015_16791.pdf
http://utpedia.utp.edu.my/15818/
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spelling my-utp-utpedia.158182017-01-25T09:35:37Z http://utpedia.utp.edu.my/15818/ Surface Modification of AMH-3 for Development of Mixed Matrix Membranes Nyuk Tzi, Elaine Chong TP Chemical technology AMH-3 layered silicate is chosen for this study as its 3D structure with crystallographic pore size of 3.4 Å makes it an attractive material for gas separation applications. AMH-3 layered silicate was synthesized via hydrothermal synthesis method and then functionalized using octyl(methyl)dimethoxysilane to enhance its hydrophobicity for good adhesion and dispersion in mixed matrix membrane. In this work, high permeability polysulfone (PSf) was incorporated with AMH-3 for fabrication of mixed matrix membranes. The critical polymer concentration of PSf was studied to suppress the formation of macrovoids in mixed matrix membranes. Flat sheet PSf/AMH-3 membranes were then prepared by dry/wet phase inversion technique with different loadings of AMH-3 in PSf matrix. The synthesized AMH-3 layered silicate is verified by FT-IR and XRD analysis. Structural changes of AMH-3 after functionalization are observed in FT-IR, XRD and SAP analysis. Functionalized AMH-3 shows higher surface area and reduced pore size. The MMMs of pristine and functionalized AMH-3 have similar surface and cross-sectional morphologies, showing good distribution and dispersion of inorganic filler. AMH-3 shows improved hydrophobicity after functionalization, resulting in better adhesion and compatibility with polysulfone IRC 2015-05 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/15818/1/DISSERTATION_MAY_2015_16791.pdf Nyuk Tzi, Elaine Chong (2015) Surface Modification of AMH-3 for Development of Mixed Matrix Membranes. 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
Nyuk Tzi, Elaine Chong
Surface Modification of AMH-3 for Development of Mixed Matrix Membranes
description AMH-3 layered silicate is chosen for this study as its 3D structure with crystallographic pore size of 3.4 Å makes it an attractive material for gas separation applications. AMH-3 layered silicate was synthesized via hydrothermal synthesis method and then functionalized using octyl(methyl)dimethoxysilane to enhance its hydrophobicity for good adhesion and dispersion in mixed matrix membrane. In this work, high permeability polysulfone (PSf) was incorporated with AMH-3 for fabrication of mixed matrix membranes. The critical polymer concentration of PSf was studied to suppress the formation of macrovoids in mixed matrix membranes. Flat sheet PSf/AMH-3 membranes were then prepared by dry/wet phase inversion technique with different loadings of AMH-3 in PSf matrix. The synthesized AMH-3 layered silicate is verified by FT-IR and XRD analysis. Structural changes of AMH-3 after functionalization are observed in FT-IR, XRD and SAP analysis. Functionalized AMH-3 shows higher surface area and reduced pore size. The MMMs of pristine and functionalized AMH-3 have similar surface and cross-sectional morphologies, showing good distribution and dispersion of inorganic filler. AMH-3 shows improved hydrophobicity after functionalization, resulting in better adhesion and compatibility with polysulfone
format Final Year Project
author Nyuk Tzi, Elaine Chong
author_facet Nyuk Tzi, Elaine Chong
author_sort Nyuk Tzi, Elaine Chong
title Surface Modification of AMH-3 for Development of Mixed Matrix Membranes
title_short Surface Modification of AMH-3 for Development of Mixed Matrix Membranes
title_full Surface Modification of AMH-3 for Development of Mixed Matrix Membranes
title_fullStr Surface Modification of AMH-3 for Development of Mixed Matrix Membranes
title_full_unstemmed Surface Modification of AMH-3 for Development of Mixed Matrix Membranes
title_sort surface modification of amh-3 for development of mixed matrix membranes
publisher IRC
publishDate 2015
url http://utpedia.utp.edu.my/15818/1/DISSERTATION_MAY_2015_16791.pdf
http://utpedia.utp.edu.my/15818/
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score 13.18916