Coke resistant and sulfur tolerant Ni-based cermet anodes for solid oxide fuel cells

© The Electrochemical Society. Solid oxide fuel cell (SOFC), which can efficiently convert chemical energy in fuels into electricity, plays a critical role in solutions to the relentless increase in global energy demand. Its fuel flexibility is limited by the low tolerance of conventional Ni-based c...

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Main Authors: Li, M., Hua, B., Jiang, San Ping, Li, J.
Format: Conference Paper
Published: 2017
Online Access:http://purl.org/au-research/grants/arc/DP150102025
http://hdl.handle.net/20.500.11937/66154
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author Li, M.
Hua, B.
Jiang, San Ping
Li, J.
author_facet Li, M.
Hua, B.
Jiang, San Ping
Li, J.
author_sort Li, M.
building Curtin Institutional Repository
collection Online Access
description © The Electrochemical Society. Solid oxide fuel cell (SOFC), which can efficiently convert chemical energy in fuels into electricity, plays a critical role in solutions to the relentless increase in global energy demand. Its fuel flexibility is limited by the low tolerance of conventional Ni-based cermet anodes to carbon deposition and sulfur poisoning. This paper presents a brief review of our previous work on improving carbon and sulfur tolerance of conventional Ni-based anodes for direct utilization of hydrocarbon fuels. Two feasible methods of incorporating a spinel-based on-cell reforming layer and impregnating barium cerate-based perovskite nanoparticles are adopted to modify Ni-based anodes. The electrochemical performance and carbon/sulfur tolerance are both remarkably improved. This review is expected to provide insights based on our recent results for promoting the development of carbon/sulfur tolerant anodes with high electrochemical activity for direct hydrocarbon SOFC.
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institution Curtin University Malaysia
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publishDate 2017
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spelling curtin-20.500.11937-661542022-10-12T07:01:01Z Coke resistant and sulfur tolerant Ni-based cermet anodes for solid oxide fuel cells Li, M. Hua, B. Jiang, San Ping Li, J. © The Electrochemical Society. Solid oxide fuel cell (SOFC), which can efficiently convert chemical energy in fuels into electricity, plays a critical role in solutions to the relentless increase in global energy demand. Its fuel flexibility is limited by the low tolerance of conventional Ni-based cermet anodes to carbon deposition and sulfur poisoning. This paper presents a brief review of our previous work on improving carbon and sulfur tolerance of conventional Ni-based anodes for direct utilization of hydrocarbon fuels. Two feasible methods of incorporating a spinel-based on-cell reforming layer and impregnating barium cerate-based perovskite nanoparticles are adopted to modify Ni-based anodes. The electrochemical performance and carbon/sulfur tolerance are both remarkably improved. This review is expected to provide insights based on our recent results for promoting the development of carbon/sulfur tolerant anodes with high electrochemical activity for direct hydrocarbon SOFC. 2017 Conference Paper http://hdl.handle.net/20.500.11937/66154 10.1149/07801.1217ecst http://purl.org/au-research/grants/arc/DP150102025 http://purl.org/au-research/grants/arc/DP150102044 restricted
spellingShingle Li, M.
Hua, B.
Jiang, San Ping
Li, J.
Coke resistant and sulfur tolerant Ni-based cermet anodes for solid oxide fuel cells
title Coke resistant and sulfur tolerant Ni-based cermet anodes for solid oxide fuel cells
title_full Coke resistant and sulfur tolerant Ni-based cermet anodes for solid oxide fuel cells
title_fullStr Coke resistant and sulfur tolerant Ni-based cermet anodes for solid oxide fuel cells
title_full_unstemmed Coke resistant and sulfur tolerant Ni-based cermet anodes for solid oxide fuel cells
title_short Coke resistant and sulfur tolerant Ni-based cermet anodes for solid oxide fuel cells
title_sort coke resistant and sulfur tolerant ni-based cermet anodes for solid oxide fuel cells
url http://purl.org/au-research/grants/arc/DP150102025
http://purl.org/au-research/grants/arc/DP150102025
http://hdl.handle.net/20.500.11937/66154