1 |
Applicability of membrane reactor technology in industrial hydrogen producing reactions: Current effort and future directions Mamivand S, Binazadeh M, Sohrabi R Journal of Industrial and Engineering Chemistry, 104, 212, 2021 |
2 |
New prospects for ecologically clean power and pure water generation units with SOFC Yanovskiy LS, Baykov AV Renewable Energy, 56, 72, 2013 |
3 |
A Microplasma Reactor for Chemical Process Intensification Lindner PJ, Besser RS Chemical Engineering & Technology, 35(7), 1249, 2012 |
4 |
Operating modes and power considerations of microhollow cathode discharge devices with elongated trenches Lennon EA, Burke AA, Besser RS Current Applied Physics, 12(4), 1064, 2012 |
5 |
Evaluating the impact of enhanced anode CO tolerance on performance of proton-exchange-membrane fuel cell systems fueled by liquid hydrocarbons Hu JE, Pearlman JB, Jackson GS, Tesluk CJ Journal of Power Sources, 195(7), 1926, 2010 |
6 |
Performance of a solid oxide fuel cell couple operated via in situ catalytic partial oxidation of n-butane Horiuchi M, Katagiri F, Yoshiike J, Suganuma S, Tokutake Y, Kronemayer H, Bessler WG Journal of Power Sources, 189(2), 950, 2009 |
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Performance study of heptane reforming in the dense ceramic membrane reactors Zhu WL, Han W, Xiong GX, Yang WS AIChE Journal, 54(1), 242, 2008 |
8 |
Review of plasma catalysis on hydrocarbon reforming for hydrogen production-Interaction, integration, and prospects Chen HL, Lee HM, Chen SH, Chao Y, Chang MB Applied Catalysis B: Environmental, 85(1-2), 1, 2008 |
9 |
Performance of a 5 kWe fuel processor for polymer electrolyte fuel cells Cipiti F, Pino L, Vita A, Lagana M, Recupero V International Journal of Hydrogen Energy, 33(12), 3197, 2008 |
10 |
Promotion of the long-term stability of reforming Ni catalysts by surface alloying Nikolla E, Schwank J, Linic S Journal of Catalysis, 250(1), 85, 2007 |