An experimental study is under way to assess the performance of electrode-supported solid-oxide cells operating in the steam electrolysis mode for hydrogen production. The cells currently under study were developed primarily for the fuel cell mode of operation. Results presented in this paper were obtained from single cells, with an active area of 16 cm2 per cell. The electrolysis cells are electrode-supported, with yttria-stabilized zirconia (YSZ) electrolytes (~10 µm thick), nickel-YSZ steam/hydrogen electrodes (~1400 µm thick), and manganite (LSM) air-side electrodes (~90 µm thick). The purpose of the present study was to document and compare the performance and degradation rates of these cells in the fuel cell mode and in the electrolys...
An anode-supported solid oxide fuel cell of 45 cm2 area was operated during 9000 h as electrolyser c...
A series of 5 cm by 5 cm bi-supported Solid Oxide Electrolysis Cells (SOEC) were produced by NASA fo...
High temperature electrolysis has a high potential for the efficient production of hydrogen or synga...
An experimental study is under way to assess the performance of electrode-supported solid-oxide cell...
The Idaho National Laboratory (INL) has been researching the application of solid-oxide electrolysis...
High temperature steam and co-electrolysis has a high potential for the efficient production of hydr...
A reliable energy supply which is based on increasing shares of sustainable and renewable energy sou...
Performance characterization and durability testing have been completed on two five-cell high-temper...
Long-term performance is an ongoing issue for hydrogen production based on high-temperature steam el...
The Idaho National Laboratory (INL) has been researching the application of solid-oxide electrolysis...
High-temperature electrolysis using solid oxide electrolysis cells (SOECs) is an innovative technolo...
High-temperature electrolysis using solid oxide electrolysis cells (SOECs) is an innovative technolo...
High temperature steam and co-electrolysis has a high potential for the efficient production of hydr...
Abstract Metal supported cells as developed according to the DLR SOFC concept by applying plasma dep...
High temperature steam and co-electrolysis have a high potential for the efficient production of hyd...
An anode-supported solid oxide fuel cell of 45 cm2 area was operated during 9000 h as electrolyser c...
A series of 5 cm by 5 cm bi-supported Solid Oxide Electrolysis Cells (SOEC) were produced by NASA fo...
High temperature electrolysis has a high potential for the efficient production of hydrogen or synga...
An experimental study is under way to assess the performance of electrode-supported solid-oxide cell...
The Idaho National Laboratory (INL) has been researching the application of solid-oxide electrolysis...
High temperature steam and co-electrolysis has a high potential for the efficient production of hydr...
A reliable energy supply which is based on increasing shares of sustainable and renewable energy sou...
Performance characterization and durability testing have been completed on two five-cell high-temper...
Long-term performance is an ongoing issue for hydrogen production based on high-temperature steam el...
The Idaho National Laboratory (INL) has been researching the application of solid-oxide electrolysis...
High-temperature electrolysis using solid oxide electrolysis cells (SOECs) is an innovative technolo...
High-temperature electrolysis using solid oxide electrolysis cells (SOECs) is an innovative technolo...
High temperature steam and co-electrolysis has a high potential for the efficient production of hydr...
Abstract Metal supported cells as developed according to the DLR SOFC concept by applying plasma dep...
High temperature steam and co-electrolysis have a high potential for the efficient production of hyd...
An anode-supported solid oxide fuel cell of 45 cm2 area was operated during 9000 h as electrolyser c...
A series of 5 cm by 5 cm bi-supported Solid Oxide Electrolysis Cells (SOEC) were produced by NASA fo...
High temperature electrolysis has a high potential for the efficient production of hydrogen or synga...