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Microstructure modulation of α‐Al 2 O 3 hollow fiber membranes with four‐channel geometric configuration
Author(s) -
Cai Chao,
Zhang Yuting,
Zhang Chun,
Gu Xuehong
Publication year - 2016
Publication title -
asia‐pacific journal of chemical engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.348
H-Index - 35
eISSN - 1932-2143
pISSN - 1932-2135
DOI - 10.1002/apj.2029
Subject(s) - microstructure , membrane , fiber , materials science , modulation (music) , channel (broadcasting) , composite material , computer science , telecommunications , chemistry , physics , acoustics , biochemistry
α‐Al 2 O 3 four‐channel hollow fiber (4CHF) membrane owns high permeability as well as great mechanical strength. In this work, three typical microstructures of 4CHF membranes with sponge‐like layer located in centric (S1), inner (S2) and outer (S3) regions were demonstrated by changing polyethersulfone content of spinning suspension, ethanol contents of internal and external coagulants, respectively. The 4CHF‐S1 membrane could be prepared by using water as both internal and external coagulants. The central sponge‐like region expanded towards both surface sides with the polyethersulfone content. The 4CHF‐S2 membrane was obtained by using ethanol as internal coagulant while water as external coagulant. And the 4CHF‐S3 membrane was achieved by using ethanol as internal coagulant while water as external coagulant. The typical 4CHF‐S1, 4CHF‐S2 and 4CHF‐S3 membranes exhibited pure water fluxes of 3.38, 3.34 and 3.74 m 3  · m −2  · h −1 and fracture loads of 20.86, 20.08 and 18.12 N, respectively. © 2016 Curtin University of Technology and John Wiley & Sons, Ltd.

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