Bio-ethanol steam reforming on Ni/Al2O3 catalyst J Comas, F Mariño, M Laborde, N Amadeo Chemical Engineering Journal 98 (1-2), 61-68, 2004 | 476 | 2004 |
Hydrogen production by the steam reforming of ethanol: thermodynamic analysis EY Garcia, MA Laborde International Journal of Hydrogen Energy 16 (5), 307-312, 1991 | 377 | 1991 |
Hydrogen production from steam reforming of bioethanol using Cu/Ni/K/γ-Al2O3 catalysts. Effect of Ni F Marino, M Boveri, G Baronetti, M Laborde International Journal of Hydrogen Energy 26 (7), 665-668, 2001 | 331 | 2001 |
Hydrogen from steam reforming of ethanol. Characterization and performance of copper-nickel supported catalysts FJ Marino, EG Cerrella, S Duhalde, M Jobbagy, MA Laborde International Journal of Hydrogen Energy 23 (12), 1095-1101, 1998 | 319 | 1998 |
Cu-Ni-K/γ-Al2O3 supported catalysts for ethanol steam reforming: Formation of hydrotalcite-type compounds as a result of metal–support interaction F Mariño, G Baronetti, M Jobbagy, M Laborde Applied Catalysis A: General 238 (1), 41-54, 2003 | 267 | 2003 |
Activity and structure-sensitivity of the water-gas shift reaction over CuZnAl mixed oxide catalysts MJL Ginés, N Amadeo, M Laborde, CR Apesteguia Applied Catalysis A: General 131 (2), 283-296, 1995 | 257 | 1995 |
Thermodynamic analysis of ethanol/water system with the stoichiometric method V Mas, R Kipreos, N Amadeo, M Laborde International Journal of Hydrogen Energy 31 (1), 21-28, 2006 | 192 | 2006 |
Modeling of counter current moving bed gas-solid reactor used in direct reduction of iron ore DR Parisi, MA Laborde Chemical Engineering Journal 104 (1-3), 35-43, 2004 | 185 | 2004 |
Hydrogen production from the low-temperature water-gas shift reaction: Kinetics and simulation of the industrial reactor NE Amadeo, MA Laborde International journal of hydrogen energy 20 (12), 949-956, 1995 | 180 | 1995 |
Hydrogen production via catalytic gasification of ethanol. A mechanism proposal over copper–nickel catalysts F Mariño, M Boveri, G Baronetti, M Laborde International Journal of Hydrogen Energy 29 (1), 67-71, 2004 | 163 | 2004 |
Ethanol steam reforming on Ni/Al2O3 catalysts: effect of Mg addition AJ Vizcaíno, P Arena, G Baronetti, A Carrero, JA Calles, MA Laborde, ... International Journal of Hydrogen Energy 33 (13), 3489-3492, 2008 | 159 | 2008 |
Synthesis of Copper-Promoted CeO2 Catalysts M Jobbágy, F Mariño, B Schönbrod, G Baronetti, M Laborde Chemistry of Materials 18 (7), 1945-1950, 2006 | 152 | 2006 |
Ethanol steam reforming using Ni (II)-Al (III) layered double hydroxide as catalyst precursor: Kinetic study M Verónica, B Graciela, A Norma, L Miguel Chemical Engineering Journal 138 (1-3), 602-607, 2008 | 137 | 2008 |
Solving differential equations with unsupervised neural networks DR Parisi, MC Mariani, MA Laborde Chemical Engineering and Processing: Process Intensification 42 (8-9), 715-721, 2003 | 132 | 2003 |
Synthesis of acetal (1, 1-diethoxyethane) from ethanol and acetaldehyde over acidic catalysts MR Capeletti, L Balzano, G de la Puente, M Laborde, U Sedran Applied Catalysis A: General 198 (1-2), L1-L4, 2000 | 115 | 2000 |
Steam and acid dealumination of mordenite: characterization and influence on the catalytic performance in linear alkylbenzene synthesis M Boveri, C Márquez-Álvarez, MÁ Laborde, E Sastre Catalysis today 114 (2-3), 217-225, 2006 | 114 | 2006 |
Thermodynamic analysis of hydrogen production from ethanol using CaO as a CO2 sorbent J Comas, M Laborde, N Amadeo Journal of Power Sources 138 (1-2), 61-67, 2004 | 114 | 2004 |
Hydrogen production by glycerol steam reforming: How Mg doping affects the catalytic behaviour of Ni/Al2O3 catalysts ML Dieuzeide, M Laborde, N Amadeo, C Cannilla, G Bonura, F Frusteri international journal of hydrogen energy 41 (1), 157-166, 2016 | 95 | 2016 |
A kinetic study of ethanol steam reforming using a nickel based catalyst V Mas, ML Bergamini, G Baronetti, N Amadeo, M Laborde Topics in Catalysis 51, 39-48, 2008 | 90 | 2008 |
Bio-ethanol steam reforming on Ni based catalyst. Kinetic study I Llera, V Mas, ML Bergamini, M Laborde, N Amadeo Chemical engineering science 71, 356-366, 2012 | 85 | 2012 |