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- W1492664002 abstract "The combustion of fossil fuels predominates in the commercial implementation of energy conversion and power generation. However, it brings severe problems to the environment due to inevitably incomplete combustion. Meanwhile, the price of fossil fuels keeps increasing due to the depletion of natural resources. The growing concerns of global warming, as well as the reducing availability of fossil fuels, require replacements of gasoline and diesel fuels, such as Fischer-Tropsch synthetic fuels [1-3], biofuels [4, 5], and hydrogen fuel [6, 7]. The thermal conversion efficiency of a traditional automobile engine is between 17% and 23% [8], limited by the intrinsic characteristics of Carnot cycle. Energy storage and conversion systems with low/zero emissions, high efficiency, and great durability are required by the development of sustainable energy and power economy." @default.
- W1492664002 created "2016-06-24" @default.
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- W1492664002 date "2013-01-23" @default.
- W1492664002 modified "2023-10-05" @default.
- W1492664002 title "In-Situ Dynamic Characterization of Energy Storage and Conversion Systems" @default.
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- W1492664002 doi "https://doi.org/10.5772/52415" @default.
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