Long-term stable and robust stack technology is a pre-requisite for a successful implementation of SOFC in the market and so it is one of the main issues in SOFC development. Also bigger stacks are desirable for systems with increased power output. Progress in stack and systems development is illustrated. Enhanced thermo-mechanical robustness of stacks in the kW range was demonstrated by successfully cycling a five layer stack incorporating cells of 20 × 20 cm² 100 times between 200 and 700°C. Aiming at the utilization of anode-supported cells from other manufacturers, the design was modified to a window frame layout, integrating in this case four 10 × 10 cm² cells in one layer. A 20 kW system was operated for about 7000 hours in total, the...
Solid Oxide Fuel Cells (SOFC) show great promise for future employment in electric power production ...
The anode substrate cell based SOFC stack technology from the Forschungszentrum Jülich has reached a...
Chromium-based interconnects (CFY) in combination with electrolyte supported cells are perfectly mat...
The SOFC technology under development at IKTS is based on an integrated approach ranging from the ma...
SOFC modules with a power of 5 to 50 kW are a serious competitor to commercially available combined ...
Forschungszentrum Juelich (FZJ) has developed over the past years a well-known SOFC stack technology...
The High Temperature Solid Oxides Fuel Cell (SOFC) is a very interesting alternative to the conventi...
Our planar SOFC stacking technology uses unprofiled metallic interconnects (MIC) and thin cells of t...
At Fraunhofer IKTS, appropriate processes and methods for the development of customized, application...
Stacks are made of conventional single cells with configuration of Ni-YSZ/YSZ/LSM-YSZ. Thermal cycli...
The Japanese national R&D project on SOFC durability and reliability has been conducting by the New ...
SOFC stack for residential SOFC system is improved due to cell optimization and reduction of size an...
The stack concept with electrolyte supported cells (ESC) has the highest potential for realization o...
Our SOFC stack development technology is based on the unique SOFConnexTM concept, using flexible gas...
Review of SOC stack performance at Forschungszentrum JülichDavid Kennouche1, Qingping Fang1, Ute de ...
Solid Oxide Fuel Cells (SOFC) show great promise for future employment in electric power production ...
The anode substrate cell based SOFC stack technology from the Forschungszentrum Jülich has reached a...
Chromium-based interconnects (CFY) in combination with electrolyte supported cells are perfectly mat...
The SOFC technology under development at IKTS is based on an integrated approach ranging from the ma...
SOFC modules with a power of 5 to 50 kW are a serious competitor to commercially available combined ...
Forschungszentrum Juelich (FZJ) has developed over the past years a well-known SOFC stack technology...
The High Temperature Solid Oxides Fuel Cell (SOFC) is a very interesting alternative to the conventi...
Our planar SOFC stacking technology uses unprofiled metallic interconnects (MIC) and thin cells of t...
At Fraunhofer IKTS, appropriate processes and methods for the development of customized, application...
Stacks are made of conventional single cells with configuration of Ni-YSZ/YSZ/LSM-YSZ. Thermal cycli...
The Japanese national R&D project on SOFC durability and reliability has been conducting by the New ...
SOFC stack for residential SOFC system is improved due to cell optimization and reduction of size an...
The stack concept with electrolyte supported cells (ESC) has the highest potential for realization o...
Our SOFC stack development technology is based on the unique SOFConnexTM concept, using flexible gas...
Review of SOC stack performance at Forschungszentrum JülichDavid Kennouche1, Qingping Fang1, Ute de ...
Solid Oxide Fuel Cells (SOFC) show great promise for future employment in electric power production ...
The anode substrate cell based SOFC stack technology from the Forschungszentrum Jülich has reached a...
Chromium-based interconnects (CFY) in combination with electrolyte supported cells are perfectly mat...