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http://repositorio.ufc.br/handle/riufc/61294
Tipo: | Artigo de Evento |
Título : | Glycerol steam reforming in a bench scale continuous flow heat recovery reactor |
Título en inglés: | Glycerol steam reforming in a bench scale continuous flow heat recovery reactor |
Autor : | Bueno, André Valente Oliveira, Mona Lisa Moura de |
Palabras clave : | Biodiesel;Glycerol;Steam reforming;Heat recovery reactor |
Fecha de publicación : | 2013 |
Editorial : | Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. |
Citación : | BUENO, André Valente; OLIVEIRA, Mona Lisa Moura de. Glycerol steam reforming in a bench scale continuous flow heat recovery reactor. International Journal of Hydrogen Energy, v.38, n. 32, p.13991-1400125, Oct. 2013. |
Abstract: | In the present study glycerol was successfully gasified using a diesel engine waste heat recovery system obtaining hydrogen and methane rich gaseous products. The reforming reactor was equipped with a vaporization pre-chamber to ensure uniform reactants distribution and a fixed reaction bed, being mounted in countercurrent flow configuration with the engine combustion gases stream. Accordingly, the reactions were conducted at gradually increased temperature conditions; starting at around 300 C in the top section of the reaction bed and finishing in a controlled outlet bed temperature of 600e800 C. When compared to homogeneous temperature reactors, the configuration used here produced a syngas of higher methane and ethylene contents. With regards to the reactor performance, syngas lower heat values of more than 22 MJ/kg were achieved with glycerol feed concentrations within 50e70% and outlet bed temperatures above 700 C, corresponding to cold gas efficiencies of around 85%. The present results indicate that glycerin can be utilized as a syngas feedstock for steam reforming processes based on waste heat recovery. |
URI : | http://www.repositorio.ufc.br/handle/riufc/61294 |
Aparece en las colecciones: | DEME - Artigos publicados em revista científica |
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2013_art_avbueno.pdf | 1,9 MB | Adobe PDF | Visualizar/Abrir |
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