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Dual ionic conductive membrane for molten carbonate fuel cell
Authors:Robert Baron  Tomasz Wejrzanowski  Łukasz Szabłowski  Arkadiusz Szczęśniak  Jarosław Milewski  Kuan-Zong Fung
Affiliation:1. Warsaw University of Technology, Faculty of Materials Science and Engineering, Wo?oska 141 Str., Warsaw, Poland;2. Warsaw University of Technology, The Institute of Heat Engineering, Nowowiejska 21/25 Str., Warsaw, Poland;3. National Cheng Kung University, Department of Materials Science and Engineering, No.1 University Road, Tainan, Taiwan
Abstract:Within this study, the electrochemically inert, molten carbonate fuel cell (MCFC) γ-LiAlO2 matrix 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 carbonate mix (CO32-) and yttria-stabilized zirconia (YSZ) or samaria-doped ceria (SDC) matrix (O2-).Single unit cell tests confirm that application of hybrid ionic membrane increases the performance (power density) of the MCFC over pure γ-LiAlO2 for a wide range of operating temperatures (600 °C–750 °C). Cell power density with SDC and YSZ matrices is 2% and 13% higher, respectively, compared to the γ-LiAlO2 at typical 650 °C operating temperature of MCFC.
Keywords:Molten carbonate fuel cell  Gamma-lithium aluminate  Samaria-doped ceria  Yttria-stabilized zirconia  Electrolyte matrix
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