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Titlebook: Advances in Medium and High Temperature Solid Oxide Fuel Cell Technology; Marta Boaro,Aricò Antonino Salvatore Book 2017 Springer Internat

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Heather N. Nicol,Barry Scott Zellenbeen achieved and the necessary improvements that are still needed in order to operate at intermediate temperature with renewable resources or light hydrocarbons. Moreover, the relationship between catalysis and electrocatalysis and the issues correlated with an integrated or direct oxidation will be introduced.
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https://doi.org/10.1007/978-3-319-61548-6l differences bring decisive variations in performance, function, limiting factors, sensitivity to impurity poisoning, and finally applications. This chapter explains the basic function of fuel cells, concentrating on the ceramic solid oxide fuel cell. Understanding the scientific basis of fuel cell
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https://doi.org/10.1057/9780333985328ight and results from testing of electrodes and cells, it is obviously necessary to have a good understanding of the fundamental principles of electrochemistry, but it also requires proper test geometries and set up, well-chosen operating conditions for different test purposes, correct probing of vo
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,The Failure of the Four Powers, 1947–8,, proton-conducting oxides have gained widespread interest as the electrolyte materials, acting as an alternative to oxygen ion conductors. High-temperature proton conductors, owing to their lower activation energy for proton conduction, can achieve high conductivity at relatively low temperatures c
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https://doi.org/10.1007/978-3-031-10149-6re that consists of different microscopic layers made of different materials—is thus at the center of a broader and complex energy system, whose efficient and durable performance much depends on several other integrated subsystems and auxiliaries which both provide reactants to the fuel cell and ext
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