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Simulation and feasibility study of using thermally rearranged polymeric hollow fiber membranes for various industrial gas separation applications

Authors
Dong, GuangxiWoo, Kyung TaekKim, JeongKim, Ju SungLee, Young Moo
Issue Date
Dec-2015
Publisher
ELSEVIER SCIENCE BV
Keywords
Thermally rearranged hollow fiber membrane; Gas separation; Industrial size module simulation; Shell side pressure drop; Non-ideal gas behavior
Citation
JOURNAL OF MEMBRANE SCIENCE, v.496, pp.229 - 241
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF MEMBRANE SCIENCE
Volume
496
Start Page
229
End Page
241
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/133953
DOI
10.1016/j.memsci.2015.08.059
ISSN
0376-7388
Abstract
Due to the unprecedented permeation properties of the recently developed thermally rearranged (TR) polymers, previous models developed for conventional less permeable membranes are no longer suitable to predict the separation performance of TR membranes. In this regard, a new mathematical model was developed taking the often-neglected shell side pressure drop and non-ideal gas behavior into account to result in a more accurate simulation for TR membrane. The model demonstrates the feasibility of using industrial size thermally-rearranged polybenzoxazole (TR-PBO) hollow fiber membrane modules in various gas separation applications. The optimal operating conditions for each application in a single-stage configuration were identified, and flue gas carbon capture was used as an example to demonstrate the substantially higher process capacity which the TR-PBO hollow fiber membranes can offer over conventional polymeric membranes.
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