검색결과 : 16건
No. | Article |
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1 |
Hydrogen production by oxidative steam reforming of methanol over anodic aluminum oxide-supported Cu-Zn catalyst Kim DH, Kim JH, Jang YS, Kim JC International Journal of Hydrogen Energy, 44(20), 9873, 2019 |
2 |
Hydrogen rich exhaust gas recirculation (H2EGR) for performance improvement and emissions reduction of a compression ignition engine Chintala V, Benaerjee D, Ghodke PK, Porpatham E International Journal of Hydrogen Energy, 44(33), 18545, 2019 |
3 |
Development of a robust and efficient biogas processor for hydrogen production. Part 2: Experimental campaign Camacho YSM, Bensaid S, Lorentzou S, Vlachos N, Pantoleontos G, Konstandopoulos A, Luneau M, Meunier FC, Guilhaume N, Schuurman Y, Werzner E, Herrmann A, Rau F, Krause H, Rezaei E, Ortona A, Gianella S, Khinslzy A, Antonini M, Marchisio L, Vilardo F, Trimis D, Fino D International Journal of Hydrogen Energy, 43(1), 161, 2018 |
4 |
Development of a robust and efficient biogas processor for hydrogen production. Part 1: Modelling and simulation Camacho YSM, Bensaid S, Lorentzou S, Vlachos N, Pantoleontos G, Konstandopoulos A, Luneau M, Meunier FC, Guilhaume N, Schuurman Y, Werzner E, Herrmann A, Rau F, Krause H, Rezaei E, Ortona A, Gianella S, Khinslzy A, Antonini M, Marchisio L, Vilardo F, Trimis D, Fino D International Journal of Hydrogen Energy, 42(36), 22841, 2017 |
5 |
Mass transfer and reaction in methanol steam reforming reactor with fractal tree-like microchannel network Chen YP, Yao F, Huang XY International Journal of Heat and Mass Transfer, 87, 279, 2015 |
6 |
Catalyst deactivation in industrial combined steam and dry reforming of natural gas Banisharifdehkordi F, Baghalha M Fuel Processing Technology, 120, 96, 2014 |
7 |
Final step for CO syngas clean-up: Comparison between CO-PROX and CO-SMET processes Ashraf MA, Ercolino G, Specchia S, Specchia V International Journal of Hydrogen Energy, 39(31), 18109, 2014 |
8 |
Dual-membrane reactor for methane oxidative coupling and dry methane reforming: Reactor integration and process intensification Godini HR, Xiao S, Kim M, Gorke O, Song S, Wozny G Chemical Engineering and Processing, 74, 153, 2013 |
9 |
Numerical study of effect of operating and design parameters for design of steam reforming reactor Hong SK, Dong SK, Han JO, Lee JS, Lee YC Energy, 61, 410, 2013 |
10 |
Detailed description of kinetic and reactor modeling for naphtha catalytic reforming Rodriguez MA, Ancheyta J Fuel, 90(12), 3492, 2011 |