ALa0.6Sr0.4Fe0.8Co0.2O3-Ce0.8Gd0.2O1.9 (LSFCO-CGO) composite anode materialwas investigated for the direct electrochemical oxidation of methane in intermediate temperature solid oxide fuel cells (IT-SOFCs). A maximum power density of 0.17Wcm-2 at 800 oC was obtained with a methane-fed ceria electrolyte-supported SOFC. A progressive increase of performance was recorded during 140 h operation with dry methane. The anode did not show any structure degradation after the electrochemical testing. Furthermore, no formation of carbon deposits was detected by electron microscopy and elemental analysis. Alternatively, this perovskite material showed significant chemical and structural modifications after high temperature treatment in a dry methane stream in a packed-bed reactor. It is derived that the continuous supply of mobile oxygen anions from the electrolyte to the LSFCO anode, promoted by the mixed conductivity of CGO electrolyte at 800 oC, stabilises the perovskite structure near the surface under SOFC operation and open circuit conditions.

Stabilisation of composite LSFCO-CGO based anodes for methane oxidation in solid oxide fuel cells

Antonucci V
2005

Abstract

ALa0.6Sr0.4Fe0.8Co0.2O3-Ce0.8Gd0.2O1.9 (LSFCO-CGO) composite anode materialwas investigated for the direct electrochemical oxidation of methane in intermediate temperature solid oxide fuel cells (IT-SOFCs). A maximum power density of 0.17Wcm-2 at 800 oC was obtained with a methane-fed ceria electrolyte-supported SOFC. A progressive increase of performance was recorded during 140 h operation with dry methane. The anode did not show any structure degradation after the electrochemical testing. Furthermore, no formation of carbon deposits was detected by electron microscopy and elemental analysis. Alternatively, this perovskite material showed significant chemical and structural modifications after high temperature treatment in a dry methane stream in a packed-bed reactor. It is derived that the continuous supply of mobile oxygen anions from the electrolyte to the LSFCO anode, promoted by the mixed conductivity of CGO electrolyte at 800 oC, stabilises the perovskite structure near the surface under SOFC operation and open circuit conditions.
2005
Istituto di Tecnologie Avanzate per l'Energia - ITAE
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/73158
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