Polysulfone mixed matrix hollow fiber membranes using zeolite templated carbon as a performance enhancement filler for gas separation

被引:24
|
作者
Wijiyanti, Rika [1 ]
Ubaidillah, Afifah Nur [1 ]
Gunawan, Triyanda [1 ]
Karim, Zulhairun Abdul [2 ,3 ]
Ismail, Ahmad Fauzi [2 ,3 ]
Smart, Simon [4 ,5 ]
Lin, Rijia [4 ]
Widiastuti, Nurul [1 ]
机构
[1] Inst Teknol Sepuluh Nopember, Fac Sci, Dept Chem, Surabaya 60111, Indonesia
[2] Univ Teknol Malaysia, Adv Membrane Technol Res Ctr AMTEC, Utm Skudai 81310, Johor Darul Taz, Malaysia
[3] Univ Teknol Malaysia, Sch Chem & Energy Engn, Dept Energy Engn, Utm Skudai 81310, Johor Darul Taz, Malaysia
[4] Univ Queensland, Dow Ctr Sustainable Engn Innovat, Brisbane, Qld 4072, Australia
[5] Univ Queensland, Sch Chem Engn, Funct Interfacial Mat & Membranes Lab, FIM2Lab, Brisbane, Qld 4072, Australia
来源
关键词
Mixed-matrix membranes; Zeolite-templated carbon; Polysulfone; Hollow fiber; Gas separation; HYDROGEN STORAGE; INORGANIC FILLERS; PERMEABILITY; CAPACITY;
D O I
10.1016/j.cherd.2019.08.004
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Zeolite-templated carbon (ZTC) was used as a new nanoporous filler to prepare mixed-matrix membranes (MMMs) with polysulfone as a continuous phase. The ZTC was prepared using a synthesized zeolite-Y template and sucrose carbon source via the impregnation method. The MMMs were fabricated through a dry-jet wet spinning technique, and the ZTC loadings were varied between 0.4-0.7 wt%. The results showed that the integration of the ZTC did not change the microscopic structure of membranes. Additionally, the addition of filler did not affect the amorphous character of the polymer, while the polymer chain spacing slightly decreased. The thermal stability of MMMs improved with an increase in the glass transition temperature. The MMM at 0.4 wt% loading exhibited the best separation performances as shown from the Robeson curve, with CH4, CO2, N-2, O-2, and H-2 permeances of 5.9, 58.5, 5.0, 14.0, and 169.2 GPU, respectively. In addition, the improvements in CO2/CH4, O-2/N-2, H-2/CH4, and CO2/N-2 ideal selectivities were 290%, 117%, 272%, and 219%, respectively. On the other hand, the enhancement of the permeances and reduction in selectivities observed at 0.7 wt% loading indicated that the existence of voids was a main factor in the permeation behavior of the MMMs. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:274 / 288
页数:15
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