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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Kuan-Zong, Fung
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Publications (4/4 displayed)
- 2021Supporting ionic conductivity of Li2CO3/K2CO3 molten carbonate electrolyte by using yttria stabilized zirconia matrixcitations
- 2018Dual ionic conductive membrane for molten carbonate fuel cellcitations
- 2018Temperature influence on six layers samaria doped ceria matrix impregnated by lithium/potassium electrolyte for Molten Carbonate Fuel Cellscitations
- 2018Improving a Molten Carbonate Fuel Cell Matrix Strength By Fiber Reinforcing
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article
Dual ionic conductive membrane for molten carbonate fuel cell
Abstract
Within this study, the electrochemically inert, molten carbonate fuel cell (MCFC) g-LiAlO 2matrix is replaced by oxygen ion conducting ceramics, typical for solid oxide fuel cell(SOFC) application. Such solution leads to synergistic ion transport both by molten car-bonate mix (CO 32-) and yttria-stabilized zirconia (YSZ) or samaria-doped ceria (SDC) matrix(O2-).Single unit cell tests confirm that application of hybrid ionic membrane increases theperformance (power density) of the MCFC over pure g-LiAlO 2 for a wide range of operatingtemperatures (600 Ce750C). Cell power density with SDC and YSZ matrices is 2% and 13%higher, respectively, compared to the g-LiAlO 2 at typical 650 C operating temperature ofMCFC.