Treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in PEFCS
Thermal and water management is a critical issue in PEFCs. In this research, the thermal behavior of PEFC is focused. The objective is to understand the influence of heat on cell performance both by experiment and theoretical analysis, as well as improving cell performance and reliability. In order...
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my.uniten.dspace-33902018-01-24T03:31:22Z Treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in PEFCS Hasmady, S. Fushinobu, K. Wacker, M.P. Okazaki, K. Electrocatalysis Mathematical models Reliability analysis Thermodynamic properties Thermal and water management is a critical issue in PEFCs. In this research, the thermal behavior of PEFC is focused. The objective is to understand the influence of heat on cell performance both by experiment and theoretical analysis, as well as improving cell performance and reliability. In order to investigate the theoretical behavior, especially in the catalyst layer where the electrochemical reactions occur, a detailed modeling of heterogeneous surface reaction coupled with reactant transport is needed. In this paper, a theoretical model that improves the dependency of the exchange current density with reactant concentrations by applying data from a known surface reaction steps found in catalysis is developed. It served as a preliminary step before the thermal-electrochemical behavior of a PEFC can be fully understood. Copyright © 2007 by ASME. ASME, Heat Transfer Division,Japanese Society of Mechanical Engineers (JSME) 2017-10-26T05:45:10Z 2017-10-26T05:45:10Z 2007 Conference Paper 10.1115/HT2007-32581 en |
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Electrocatalysis Mathematical models Reliability analysis Thermodynamic properties |
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Electrocatalysis Mathematical models Reliability analysis Thermodynamic properties Hasmady, S. Fushinobu, K. Wacker, M.P. Okazaki, K. Treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in PEFCS |
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Thermal and water management is a critical issue in PEFCs. In this research, the thermal behavior of PEFC is focused. The objective is to understand the influence of heat on cell performance both by experiment and theoretical analysis, as well as improving cell performance and reliability. In order to investigate the theoretical behavior, especially in the catalyst layer where the electrochemical reactions occur, a detailed modeling of heterogeneous surface reaction coupled with reactant transport is needed. In this paper, a theoretical model that improves the dependency of the exchange current density with reactant concentrations by applying data from a known surface reaction steps found in catalysis is developed. It served as a preliminary step before the thermal-electrochemical behavior of a PEFC can be fully understood. Copyright © 2007 by ASME. |
format |
Conference Paper |
author |
Hasmady, S. Fushinobu, K. Wacker, M.P. Okazaki, K. |
author_facet |
Hasmady, S. Fushinobu, K. Wacker, M.P. Okazaki, K. |
author_sort |
Hasmady, S. |
title |
Treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in PEFCS |
title_short |
Treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in PEFCS |
title_full |
Treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in PEFCS |
title_fullStr |
Treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in PEFCS |
title_full_unstemmed |
Treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in PEFCS |
title_sort |
treatment of heterogeneous electrocatalysis in modeling transport-reaction phenomena in pefcs |
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2017 |
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1644493536002834432 |
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13.214268 |