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Titlebook: Advances in Hydrogen Energy; Catherine E. Grégoire Padró,Francis Lau Book 2002 Springer Science+Business Media New York 2002 Ethan.Methan.

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The Production of Hydrogen from Methane Using Tubular Plasma Reactors,978-3-662-40980-0
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Production of Hydrogen from Biomass by Pyrolysis/Steam Reforming,978-3-662-40063-0
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Modeling of Integrated Renewable Hydrogen Energy Systems for Remote Applications,978-3-663-07408-3
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https://doi.org/10.1007/978-94-009-0139-1d methane recovery are not incorporated, 2) a CO. sequestration case, 3) maximum hydrogen production incorporating steam methane reforming of recovered coalbed methane, and 4) hydrogen/power coproduction with the hydrogen being produced from the syngas and the power from the recovered methane. The e
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https://doi.org/10.1007/978-3-642-15772-1ree-step cycle that involves heating the reactor, reducing the catalyst to the metallic state, and finally steam reforming. UMR is being developed mainly for small-scale generation of hydrogen where it can economically compete with conventional steam reforming. UMR produces synthesis gas with higher
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Choosing the Correct Radiologic Testtive (ethanol, methanol, natural gas) fuels to hydrogen-rich product gases with high hydrogen selectivity. Alcohols are reformed at lower temperatures (<600°C), while alkanes and unsaturated hydrocarbons require higher temperatures (630–670°C). Cyclic hydrocarbons and aromatics have also been reform
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