The present work investigates the performance and degradation mechanisms of a Ni-based anode supported Solid Oxides Fuel Cells (SOFC) operating at 800 C on direct internal reforming of dry CH4–CO2 mixtures. The catalytic properties of the anode support were first studied in a micro-reactor configuration to determine safe conditions (i.e., without carbon formation) under which a dry conversion of the methane can occur directly within the fuel cell. A full electrochemical characterization of complete cells followed to preliminarily assess their resistance towards carbon formation when operating on direct dry-reforming. Ageing tests of 300 h each have been performed in galvanostatic mode, with impedance spectra taken every 50 h of conti...
Abstract Internal dry reforming (IDR) of methane for biogas‐fed solid oxide fuel cell (SOFC) applica...
Internal dry reforming (IDR) of methane for biogas-fed solid oxide fuel cell (SOFC) applications has...
Internal dry reforming (IDR) of methane for biogas-fed solid oxide fuel cell (SOFC) applications has...
The present work investigates the performance and degradation mechanisms of a Ni-based anode support...
This work investigates the catalytic properties of Ni/YSZ anodes as electrodes of Solid Oxide Fuel C...
This work investigates the catalytic properties of different solid oxide fuel cell (SOFC) Ni-based a...
This work investigates the catalytic properties of Ni/YSZ anodes as electrodes of Solid Oxide Fuel C...
Solid oxide fuel cells (SOFCs) are promising power-generation systems to utilize methane or methane-...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
Solid oxide fuel cells (SOFCs) are promising power-generation systems to utilize methane or methane-...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
Abstract Internal dry reforming (IDR) of methane for biogas‐fed solid oxide fuel cell (SOFC) applica...
Internal dry reforming (IDR) of methane for biogas-fed solid oxide fuel cell (SOFC) applications has...
Internal dry reforming (IDR) of methane for biogas-fed solid oxide fuel cell (SOFC) applications has...
The present work investigates the performance and degradation mechanisms of a Ni-based anode support...
This work investigates the catalytic properties of Ni/YSZ anodes as electrodes of Solid Oxide Fuel C...
This work investigates the catalytic properties of different solid oxide fuel cell (SOFC) Ni-based a...
This work investigates the catalytic properties of Ni/YSZ anodes as electrodes of Solid Oxide Fuel C...
Solid oxide fuel cells (SOFCs) are promising power-generation systems to utilize methane or methane-...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
Solid oxide fuel cells (SOFCs) are promising power-generation systems to utilize methane or methane-...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
International audienceSolid oxide fuels cells with and without anodic catalytic layer and specific a...
Abstract Internal dry reforming (IDR) of methane for biogas‐fed solid oxide fuel cell (SOFC) applica...
Internal dry reforming (IDR) of methane for biogas-fed solid oxide fuel cell (SOFC) applications has...
Internal dry reforming (IDR) of methane for biogas-fed solid oxide fuel cell (SOFC) applications has...