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Results 1 to 25 of 18605

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Fabrication and operating characteristics of a flat tubular segmented-in-series solid oxide fuel cell unit bundleKIM, Dae-Wi; YUN, Ui-Jin; LEE, Jong-Won et al.Energy (Oxford). 2014, Vol 72, pp 215-221, issn 0360-5442, 7 p.Article

Development of Fuel Cell and Expectation of its Widespread Use : The activity and technical trend reported by Each IEEJ SocietyWATANABE, Takao.IEEJ transactions on electrical and electronic engineering. 2009, Vol 4, Num 1, pp 26-26, issn 1931-4973, 1 p.Article

Homogeneous vs. heterogeneous membranes for the application in PEM type fuel cellsBOUZEK, Karel; CILOVA, Zuzana; PODUBECKA, Petra et al.Desalination (Amsterdam). 2006, Vol 200, Num 1-3, pp 650-652, issn 0011-9164, 3 p.Conference Paper

Hydrogen infrastructure for fueling distributed resourcesCONNELLY, Gene.2004 IEEE Power Engineering Society general meeting (Denver CO, 6-10 June 2004). 2004, isbn 0-7803-8465-2, 2Vol, vol 2, 2280-2282Book Chapter

Performance of a first-generation, aqueous-alkaline biocarbon fuel cellNUNOURA, Teppei; DOWAKI, Kiyoshi; FUSHIMI, Chihiro et al.Industrial & engineering chemistry research. 2007, Vol 46, Num 3, pp 734-744, issn 0888-5885, 11 p.Article

Polyetherketones for fuel cell applicationVETTER, Serge; ABETZ, Volker; GOERIGK, Guenter et al.Desalination (Amsterdam). 2006, Vol 199, Num 1-3, pp 289-290, issn 0011-9164, 2 p.Conference Paper

Proton conducting membranes for medium temperature fuel cells : recent advances and new strategiesALBERTI, G; CASCIOLA, M; COSTANTINO, U et al.Desalination (Amsterdam). 2006, Vol 199, Num 1-3, pp 4-5, issn 0011-9164, 2 p.Conference Paper

La pile à combustible : Piles à combustibles = The fuel cellCOINCE, Anne-Sophie; RABALAND, Didier; GAUDIN, Christophe et al.Chauffage, ventilation, conditionnement d'air. 2003, Num 824-25, pp 30-33, issn 1292-3397, 4 p.Article

Feasible Input Manipulation for a Nonisothermal Direct Methanol Fuel Cell SystemWU, W; LIN, Y.-T.Industrial & engineering chemistry research. 2010, Vol 49, Num 12, pp 5725-5733, issn 0888-5885, 9 p.Article

Thermodynamics of an Aqueous-Alkaline/Carbonate Carbon Fuel CellANTAL, Michael Jerry; NIHOUS, Gérard C.Industrial & engineering chemistry research. 2008, Vol 47, Num 7, pp 2442-2448, issn 0888-5885, 7 p.Article

Photo-cross-linking of sulfonated styrene-ethylene-butylene copolymer membranes for fuel cells : Membrane engineeringCHEN, Sheng-Li; BENZIGER, Jay B; BOCARSLY, Andrew B et al.Industrial & engineering chemistry research. 2005, Vol 44, Num 20, pp 7701-7705, issn 0888-5885, 5 p.Article

Development and experimental research of kW-scale molten carbonate fuel cellsSHEN CHENG; ZHU XINJIAN; CAO GUANGYI et al.High technology letters. 2002, Vol 8, Num 1, pp 86-91, issn 1006-6748Article

Hyflon ion membranes for fuel cells : Membrane engineeringARCELLA, Vincenzo; TROGLIA, Claudio; GHIELMI, Alessandro et al.Industrial & engineering chemistry research. 2005, Vol 44, Num 20, pp 7646-7651, issn 0888-5885, 6 p.Article

A direct H2S/air solid oxide fuel cellPUJARE, N. U; SEMKOW, K. W; SAMMELLS, A. F et al.Journal of the Electrochemical Society. 1987, Vol 134, Num 10, pp 2639-2640, issn 0013-4651Article

Tungsten Carbides as Alternative Electrocatalysts: From Surface Science Studies to Fuel Cell EvaluationSTOTTLEMYER, Alan L; WEIGERT, Erich C; CHEN, Jingguang G et al.Industrial & engineering chemistry research. 2011, Vol 50, Num 1, pp 16-22, issn 0888-5885, 7 p.Article

Parameter Identification of a Dynamic MCFC Model Using a Full-Scale Fuel Cell PlantGUNDERMANN, Matthias; HEIDEBRECHT, Peter; SUNDMACHER, Kai et al.Industrial & engineering chemistry research. 2008, Vol 47, Num 8, pp 2728-2741, issn 0888-5885, 14 p.Article

Power control of a polymer electrolyte membrane fuel cellLAUZZE, Kevin C; CHMIELEWSKI, Donald J.Industrial & engineering chemistry research. 2006, Vol 45, Num 13, pp 4661-4670, issn 0888-5885, 10 p.Article

Automakers drive toward a hydrogen-powered futureMachine design. 2005, Vol 77, Num 4, pp 110-116, issn 0024-9114, 4 p.Article

Investigation of a small-volume direct methanol fuel cell stack for portable applicationsZHENYU YUAN; YUFENG ZHANG; WENTING FU et al.Energy (Oxford). 2013, Vol 51, pp 462-467, issn 0360-5442, 6 p.Article

Thermoeconomic analysis of large solid oxide fuel cell plants: Atmospheric vs. pressurized performanceGANDIGLIO, M; LANZINI, A; LEONE, P et al.Energy (Oxford). 2013, Vol 55, pp 142-155, issn 0360-5442, 14 p.Article

Factors That Determine the Performance of Carbon Fuels in the Direct Carbon Fuel CellXIANG LI; ZHONG HUA ZHU; DE MARCO, Roland et al.Industrial & engineering chemistry research. 2008, Vol 47, Num 23, pp 9670-9677, issn 0888-5885, 8 p.Article

Using a novel sulfonated silica nanoparticles for Nafion® membrane for direct methanol fuel cellSU, Yu-Huei; WEI, Tung-Yu; HSU, Chih-Hao et al.Desalination (Amsterdam). 2006, Vol 200, Num 1-3, pp 656-657, issn 0011-9164, 2 p.Conference Paper

Fuel cellsBARBIR, Frano.International journal of hydrogen energy. 2005, Vol 30, Num 2, issn 0360-3199, 118 p.Serial Issue

L'hydrogène et les piles à combustible : Utilisations innovantes des gaz = Hydrogen and fuel cellDELAHAYE, Anthony.Revue générale du froid (1935). 2003, Num JUL-AOU, pp 33-37, issn 0755-7868, 5 p.Article

Microchannel Fuel Processors as a Hydrogen Source for Fuel Cells in Distributed Energy Supply Systems : ACCELERATING TECHNOLOGY DEVELOPMENT THROUGH INTEGRATED COMPUTATION AND EXPERIMENTATIONKOLB, G; KELLER, S; O'CONNELL, M et al.Energy & fuels. 2013, Vol 27, Num JULAOU, pp 4395-4402, issn 0887-0624, 8 p.Article

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