Modeling study of oxygen permeation through an electronically short-circuited YSZ-based asymmetric hollow fiber membrane

© 2017 American Institute of Chemical Engineers.Here, oxygen fluxes through an electronically short-circuited asymmetric Ag-YSZ|YSZ|LSM-YSZ hollow fiber prepared via a combined spinning and sintering route were tested and correlated to an explicit oxygen permeation model. The average oxygen permeati...

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Main Authors: Jin, Y., Meng, X., Yang, N., Meng, B., Sunarso, J., Liu, Shaomin
Format: Journal Article
Published: John Wiley & Sons, Inc. 2017
Online Access:http://hdl.handle.net/20.500.11937/52357
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author Jin, Y.
Meng, X.
Yang, N.
Meng, B.
Sunarso, J.
Liu, Shaomin
author_facet Jin, Y.
Meng, X.
Yang, N.
Meng, B.
Sunarso, J.
Liu, Shaomin
author_sort Jin, Y.
building Curtin Institutional Repository
collection Online Access
description © 2017 American Institute of Chemical Engineers.Here, oxygen fluxes through an electronically short-circuited asymmetric Ag-YSZ|YSZ|LSM-YSZ hollow fiber prepared via a combined spinning and sintering route were tested and correlated to an explicit oxygen permeation model. The average oxygen permeation through such asymmetric hollow fiber with a 27 µm-thick YSZ dense layer reached 0.52 mL (STP) cm-2 min-1 at 1173 K. From the model results, we can obtain the characteristic thickness, the effects of the temperature, and the effect of He sweep gas flow rate to the individual step contribution. The oxygen partial pressure variation in the permeate side, the local oxygen flux, and the three-different resistance distribution along the axial direction of the asymmetric hollow fiber are theoretically studied; providing guidelines to further improve the membrane performance for oxygen separation.
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T09:51:28Z
publishDate 2017
publisher John Wiley & Sons, Inc.
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spelling curtin-20.500.11937-523572017-09-13T15:40:23Z Modeling study of oxygen permeation through an electronically short-circuited YSZ-based asymmetric hollow fiber membrane Jin, Y. Meng, X. Yang, N. Meng, B. Sunarso, J. Liu, Shaomin © 2017 American Institute of Chemical Engineers.Here, oxygen fluxes through an electronically short-circuited asymmetric Ag-YSZ|YSZ|LSM-YSZ hollow fiber prepared via a combined spinning and sintering route were tested and correlated to an explicit oxygen permeation model. The average oxygen permeation through such asymmetric hollow fiber with a 27 µm-thick YSZ dense layer reached 0.52 mL (STP) cm-2 min-1 at 1173 K. From the model results, we can obtain the characteristic thickness, the effects of the temperature, and the effect of He sweep gas flow rate to the individual step contribution. The oxygen partial pressure variation in the permeate side, the local oxygen flux, and the three-different resistance distribution along the axial direction of the asymmetric hollow fiber are theoretically studied; providing guidelines to further improve the membrane performance for oxygen separation. 2017 Journal Article http://hdl.handle.net/20.500.11937/52357 10.1002/aic.15703 John Wiley & Sons, Inc. restricted
spellingShingle Jin, Y.
Meng, X.
Yang, N.
Meng, B.
Sunarso, J.
Liu, Shaomin
Modeling study of oxygen permeation through an electronically short-circuited YSZ-based asymmetric hollow fiber membrane
title Modeling study of oxygen permeation through an electronically short-circuited YSZ-based asymmetric hollow fiber membrane
title_full Modeling study of oxygen permeation through an electronically short-circuited YSZ-based asymmetric hollow fiber membrane
title_fullStr Modeling study of oxygen permeation through an electronically short-circuited YSZ-based asymmetric hollow fiber membrane
title_full_unstemmed Modeling study of oxygen permeation through an electronically short-circuited YSZ-based asymmetric hollow fiber membrane
title_short Modeling study of oxygen permeation through an electronically short-circuited YSZ-based asymmetric hollow fiber membrane
title_sort modeling study of oxygen permeation through an electronically short-circuited ysz-based asymmetric hollow fiber membrane
url http://hdl.handle.net/20.500.11937/52357