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- W2186366256 abstract "Ceramic Fuel Cells Limited (CFCL) has been developing flat plate Solid Oxide Fuel Cell (SOFC) technology for the past 12 years, and has chosen an all-ceramic stack design capable of volume fabrication for its first product, a micro-CHP (combined heat and power) system for the residential market, producing 1 kW of electrical energy and domestic hot water. The technology developed by CFCL addresses commercial requirements for SOFC stacks such as thermal cycling without damage by matching thermal expansions of all components in the stack, direct conversion (reforming) of methane fuel on the cell and capability for volume production. The stack technology is modular, starting with a base manufactured unit containing 28 layers and producing about 150 W output at 850 o C. This building-block allows significant flexibility in arranging power modules for fuel cell systems. For example, seven form a 1 kW stack and fourteen a 2 kW stack. Power modules of about 10 kW in size are possible by arranging multiple stacks on a manifold system. CFCL has designed, built, commissioned and is operating system demonstrators for characterising stack operation and optimising balance of plant (BoP) components. In addition, CFCL is in the commissioning phase of a residential CHP prototype. The data from operating these demonstration systems are being used for the design of CFCL's pre-commercial CHP unit. CFCL plans to commence field testing in Australia towards the end of 2004. CFCL's business model is to establish application partnerships in Australia and Europe for getting its products into these markets. The partners will contribute to further development of the product as well as manufacturing and marketing. In parallel, CFCL will be entering partnerships for volume manufacture of fuel cell stacks to supply application partners. CFCL's initial product - a Micro-CHP unit for residential use - will be fuelled by natural gas producing 1kW of electricity and supplying the water heating needs of the customer. One of the key design objectives is high system efficiency - a significant challenge in small systems such as residential CHP units. This requires very tight thermal integration of the hot system components as well as highly efficient electrical components (fuel/air blowers, inverter and control system)." @default.
- W2186366256 created "2016-06-24" @default.
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- W2186366256 date "2004-01-01" @default.
- W2186366256 modified "2023-09-24" @default.
- W2186366256 title "Development of a Micro-CHP System at Ceramic Fuel Cells Limited" @default.
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