Production of pure oxygen from BSCF hollow fiber membranes using steam sweep

In this work, BSCF hollow fiber membranes made from a phase inversion/sintering technique produced high purity oxygen (>99.5%) at high flow rate of 9.52 ml min−1 cm−2 at 950 °C using a steam sweep gas. Long term exposure to steam sweep gas revealed loss of performance. For instance, oxygen flux r...

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Main Authors: Leo, A., Liu, Shaomin, da Costa, J.
Format: Journal Article
Published: Pergamon 2011
Online Access:http://hdl.handle.net/20.500.11937/19093
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author Leo, A.
Liu, Shaomin
da Costa, J.
author_facet Leo, A.
Liu, Shaomin
da Costa, J.
author_sort Leo, A.
building Curtin Institutional Repository
collection Online Access
description In this work, BSCF hollow fiber membranes made from a phase inversion/sintering technique produced high purity oxygen (>99.5%) at high flow rate of 9.52 ml min−1 cm−2 at 950 °C using a steam sweep gas. Long term exposure to steam sweep gas revealed loss of performance. For instance, oxygen flux remained stable up to 20 h, though undergoing a significant reduction afterwards. Similarly, the oxygen purity reduced after 40 h testing, though less significantly as oxygen fluxes. We found that steam leached the elements of BSCF, mainly forming an extra layer of insoluble carbonates of barium and strontium. This was attributed to the reaction of the perovskite with carboxylic acid ever present in steam. In addition, steam exposure at high temperature reduced the area of diffraction and crystallite sizes of the reflective planes of the BSCF membrane, thus indicating that the steam exposure deteriorated the crystal ordering. The membrane area exposed to steam become porous while covered with a porous layer of carbonates of barium and strontium, thus limiting the oxygen surface kinetics and explaining the oxygen flux reduction over time.
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format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:28:50Z
publishDate 2011
publisher Pergamon
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spelling curtin-20.500.11937-190932017-09-13T15:57:55Z Production of pure oxygen from BSCF hollow fiber membranes using steam sweep Leo, A. Liu, Shaomin da Costa, J. In this work, BSCF hollow fiber membranes made from a phase inversion/sintering technique produced high purity oxygen (>99.5%) at high flow rate of 9.52 ml min−1 cm−2 at 950 °C using a steam sweep gas. Long term exposure to steam sweep gas revealed loss of performance. For instance, oxygen flux remained stable up to 20 h, though undergoing a significant reduction afterwards. Similarly, the oxygen purity reduced after 40 h testing, though less significantly as oxygen fluxes. We found that steam leached the elements of BSCF, mainly forming an extra layer of insoluble carbonates of barium and strontium. This was attributed to the reaction of the perovskite with carboxylic acid ever present in steam. In addition, steam exposure at high temperature reduced the area of diffraction and crystallite sizes of the reflective planes of the BSCF membrane, thus indicating that the steam exposure deteriorated the crystal ordering. The membrane area exposed to steam become porous while covered with a porous layer of carbonates of barium and strontium, thus limiting the oxygen surface kinetics and explaining the oxygen flux reduction over time. 2011 Journal Article http://hdl.handle.net/20.500.11937/19093 10.1016/j.seppur.2011.02.006 Pergamon restricted
spellingShingle Leo, A.
Liu, Shaomin
da Costa, J.
Production of pure oxygen from BSCF hollow fiber membranes using steam sweep
title Production of pure oxygen from BSCF hollow fiber membranes using steam sweep
title_full Production of pure oxygen from BSCF hollow fiber membranes using steam sweep
title_fullStr Production of pure oxygen from BSCF hollow fiber membranes using steam sweep
title_full_unstemmed Production of pure oxygen from BSCF hollow fiber membranes using steam sweep
title_short Production of pure oxygen from BSCF hollow fiber membranes using steam sweep
title_sort production of pure oxygen from bscf hollow fiber membranes using steam sweep
url http://hdl.handle.net/20.500.11937/19093