FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN CO2/CH4 SEPARATION
Over the past few years, mixed matrix membranes (MMMs) have received worldwide attention in gas separation industry. It stems from the fact that MMMs are highly potential in CO2 and CH4 gas permeation application. In reference to different inorganic fillers, zeolites with well-defined, uniform pore...
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my-utp-utpedia.204662021-08-19T22:51:19Z http://utpedia.utp.edu.my/20466/ FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN CO2/CH4 SEPARATION YIT SIEW, TIFFANY NG TP Chemical technology Over the past few years, mixed matrix membranes (MMMs) have received worldwide attention in gas separation industry. It stems from the fact that MMMs are highly potential in CO2 and CH4 gas permeation application. In reference to different inorganic fillers, zeolites with well-defined, uniform pore channels and molecular sieving properties are able to provide high gas separation performance compared to polymeric membranes. However, the incorporation of zeolite into MMMs has usually led to the formation of undesirable interfacial voids and filler agglomeration which may jeopardize the gas permeation performance of the MMMs. In current work, zeolite RHO and amine-modified zeolite RHO (NH2-RHO) were separately incorporated into polysulfone (PSf) to form MMMs. 2020-09 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/20466/1/Tiffany%20Yit%20Siew%20Ng_16001691.pdf YIT SIEW, TIFFANY NG (2020) FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN CO2/CH4 SEPARATION. Masters thesis, Universiti Teknologi PETRONAS. |
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TP Chemical technology YIT SIEW, TIFFANY NG FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN CO2/CH4 SEPARATION |
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Over the past few years, mixed matrix membranes (MMMs) have received worldwide attention in gas separation industry. It stems from the fact that MMMs are highly potential in CO2 and CH4 gas permeation application. In reference to different inorganic fillers, zeolites with well-defined, uniform pore channels and molecular sieving properties are able to provide high gas separation performance compared to polymeric membranes. However, the incorporation of zeolite into MMMs has usually led to the formation of undesirable interfacial voids and filler agglomeration which may jeopardize the gas permeation performance of the MMMs. In current work, zeolite RHO and amine-modified zeolite RHO (NH2-RHO) were separately incorporated into polysulfone (PSf) to form MMMs. |
format |
Thesis |
author |
YIT SIEW, TIFFANY NG |
author_facet |
YIT SIEW, TIFFANY NG |
author_sort |
YIT SIEW, TIFFANY NG |
title |
FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN
CO2/CH4 SEPARATION |
title_short |
FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN
CO2/CH4 SEPARATION |
title_full |
FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN
CO2/CH4 SEPARATION |
title_fullStr |
FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN
CO2/CH4 SEPARATION |
title_full_unstemmed |
FABRICATION AND PERFORMANCE EVALUATION OF ZEOLITE RHO/POLYSULFONE AND AMINE-MODIFIED ZEOLITE RHO/POLYSULFONE MIXED MATRIX MEMBRANES IN
CO2/CH4 SEPARATION |
title_sort |
fabrication and performance evaluation of zeolite rho/polysulfone and amine-modified zeolite rho/polysulfone mixed matrix membranes in
co2/ch4 separation |
publishDate |
2020 |
url |
http://utpedia.utp.edu.my/20466/1/Tiffany%20Yit%20Siew%20Ng_16001691.pdf http://utpedia.utp.edu.my/20466/ |
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