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- W2244670769 abstract "our fuel cell is a high-temperature ceramic device that chemically converts hydrogen into electricity, requiring a little oxygen. The byproducts are water and heat. In order to turn it into something useful, we have to make our own hydrogen, generally by conversion of hydrocarbon fuels. Some impurities flow through, with production of a little carbon dioxide. efficiency is maximized by recovering the heat and water and recycling the latter internally. we also look at the exhaust heat as a way to provide cogeneration and handle heat loads, which can cool as well as heat. and depending on the electrical loads we condition the power. There are many types of fuel-cell systems, categorized largely in terms of scale. In ohio, some fuel-cell companies are replacing batteries and some are replacing utilities. we chose to create new markets and carved out a – 0 kilowatt (kw) space largely because we felt we could compete against the largest companies in the world by taking the harder, rougher road. to put it in perspective: although fuel cells have been around for decades, opinion suggests that some types are a decade away. I want to stress that the fuel cell is a disruptive technology like the telephone, the automobile and the Internet. It took the telephone 70 years to achieve 50% market penetration, over 50 years for the automobile and close to a decade for the Internet. Like these technologies, fuel cells require a paradigm shift; they have the ability to drive a megatrend." @default.
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- W2244670769 date "2008-01-01" @default.
- W2244670769 modified "2023-09-23" @default.
- W2244670769 title "Energy independence: on-site fuel cell systems operating on biofuels." @default.
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