Artículo
Hydrogen production by ethanol steam reforming over multimetallic RhCeNi/Al2O3 structured catalyst. Pilot-scale study
González Gil, R.; Herrera, C.; Larrubia, M. A.; Mariño, Fernando Javier
; Laborde, Miguel Ángel
; Alemany, L. J.
Fecha de publicación:
10/2016
Editorial:
Pergamon-Elsevier Science Ltd
Revista:
International Journal of Hydrogen Energy
ISSN:
0360-3199
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
A new multimetallic RhCeNi/Al2O3 catalyst structured in cylindrical pellet with an atomic ratio Ce/Ni = 0.55 and minimal Rh content was developed and tested in ethanol steam reforming (ESR) at laboratory and semi-industrial pilot plant scales. A beneficial interaction for the major components, Ce–Ni, is noticed. Ce is mostly present as Ce4+ and Ce3+ and the incorporation of small amount of Ni2+ species into the ceria fluorite-type structure is registered since an oxygen coordination disorder was induced by the Ni2+ dissolution that modifies the average size of particles. RhCeNi catalyst is active in the ESR even at different steam/ethanol ratio between 4 and 10 at laboratory scale and is also very active and stable at pilot-plant scale tested at S/EtOH ratio = 7, with a high H2-yield (95% at 700 °C) and minimal presence of secondary products as acetone or ethylene and ethane. CO selectivity is maintained below of 5–7% in the reformer gas-out stream, although it is further reduced to reach acceptable values after WGS and CO-PROX-units to feed the PEM located downstream of the installation.
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Articulos(ITHES)
Articulos de INST. DE TECNOLOGIAS DEL HIDROGENO Y ENERGIAS SOSTENIBLES
Articulos de INST. DE TECNOLOGIAS DEL HIDROGENO Y ENERGIAS SOSTENIBLES
Citación
González Gil, R.; Herrera, C.; Larrubia, M. A.; Mariño, Fernando Javier; Laborde, Miguel Ángel; et al.; Hydrogen production by ethanol steam reforming over multimetallic RhCeNi/Al2O3 structured catalyst. Pilot-scale study; Pergamon-Elsevier Science Ltd; International Journal of Hydrogen Energy; 41; 38; 10-2016; 16786-16796
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