7 - Perovskite membrane reactors: Fundamentals and applications for oxygen production, syngas production and hydrogen processing

This chapter addresses research and development of membrane reactors utilizing perovskite materials which can conduct oxygen ions and hydrogen protons at high temperatures; they are therefore finding applications in oxygen and hydrogen separation and reaction processes. This chapter introduces the s...

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Main Authors: Smart, S., Liu, Shaomin, Serra, J., Basile, A., Diniz da Costa, J.
Format: Book Chapter
Published: Elsevier Ltd 2013
Online Access:http://hdl.handle.net/20.500.11937/47226
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author Smart, S.
Liu, Shaomin
Serra, J.
Basile, A.
Diniz da Costa, J.
author_facet Smart, S.
Liu, Shaomin
Serra, J.
Basile, A.
Diniz da Costa, J.
author_sort Smart, S.
building Curtin Institutional Repository
collection Online Access
description This chapter addresses research and development of membrane reactors utilizing perovskite materials which can conduct oxygen ions and hydrogen protons at high temperatures; they are therefore finding applications in oxygen and hydrogen separation and reaction processes. This chapter introduces the structure, transport mechanisms and performance of various perovskite membrane materials, followed by an in-depth analysis of employing perovskite membranes for both oxidative and non-oxidative reactions. The membrane function of either selectively removing a reactant to shift the equilibrium or selectively adding a reactant to control the reaction mechanism and associated side reactions is important. We end by discussing future research trends and the major challenges that must be overcome for industrial take-up of this technology.
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format Book Chapter
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T09:33:28Z
publishDate 2013
publisher Elsevier Ltd
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-472262017-09-13T14:10:54Z 7 - Perovskite membrane reactors: Fundamentals and applications for oxygen production, syngas production and hydrogen processing Smart, S. Liu, Shaomin Serra, J. Basile, A. Diniz da Costa, J. This chapter addresses research and development of membrane reactors utilizing perovskite materials which can conduct oxygen ions and hydrogen protons at high temperatures; they are therefore finding applications in oxygen and hydrogen separation and reaction processes. This chapter introduces the structure, transport mechanisms and performance of various perovskite membrane materials, followed by an in-depth analysis of employing perovskite membranes for both oxidative and non-oxidative reactions. The membrane function of either selectively removing a reactant to shift the equilibrium or selectively adding a reactant to control the reaction mechanism and associated side reactions is important. We end by discussing future research trends and the major challenges that must be overcome for industrial take-up of this technology. 2013 Book Chapter http://hdl.handle.net/20.500.11937/47226 10.1533/9780857098658.3.182 Elsevier Ltd restricted
spellingShingle Smart, S.
Liu, Shaomin
Serra, J.
Basile, A.
Diniz da Costa, J.
7 - Perovskite membrane reactors: Fundamentals and applications for oxygen production, syngas production and hydrogen processing
title 7 - Perovskite membrane reactors: Fundamentals and applications for oxygen production, syngas production and hydrogen processing
title_full 7 - Perovskite membrane reactors: Fundamentals and applications for oxygen production, syngas production and hydrogen processing
title_fullStr 7 - Perovskite membrane reactors: Fundamentals and applications for oxygen production, syngas production and hydrogen processing
title_full_unstemmed 7 - Perovskite membrane reactors: Fundamentals and applications for oxygen production, syngas production and hydrogen processing
title_short 7 - Perovskite membrane reactors: Fundamentals and applications for oxygen production, syngas production and hydrogen processing
title_sort 7 - perovskite membrane reactors: fundamentals and applications for oxygen production, syngas production and hydrogen processing
url http://hdl.handle.net/20.500.11937/47226