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4 Winkler, W., Thermodynamics, in High Temperature Solid Oxide Fuel Cells: Fundamentals, Design and Applications, S.C. Singhal and K. Kendall, Editors. 2003, Elsevier Ltd.: Oxford, UK. p. 53 - 82. 5 S.N. Simons, R.B. King and P.R. Prokopius, in Symposium Proceedings Fuel Cells Technology Status and Applications, Figure 1, p. 46, Edited by E.H. Camara, Institute of Gas Technology, Chicago, IL, 45, 1982. 6 P . V . Hendriksen, S. Koch, M. Mogensen, Y . L. Liu, and P . H. Larsen, in Solid Oxide Fuel Cells VIII, eds S. C. Singhal and M. Dokiya, The Electrochemical Society Proceedings, Pennington, NJ, PV2003-07, 2003, p. 1147 7 E.J. Cairns and H.A. Liebhafsky, Energy Conversion, p. 9, 63, 1969. 8 Khaheel, M.A. Modeling and Simulation SECA Core Program. in Modeling and Simulation Team Integration Meeting. 2003: US DOE. http://www.seca.doe.gov/events/2002/ model_simulation/pnnl_m_khaleel.pdf 9 Fleig, J., Solid Oxide Fuel Cell Cathodes: Polarization Mechanisms and Modeling of the Electrochemical Performance. Annual Review of Materials Research, 2003. 33: p. 361 - 382. 10 U.S. Department of Energy, Office of Building Technology, State and Community Programs, Tools Directory web site, current URL: http://www.eere.energy.gov/buildings/tools_directory/ 11 Development and Use of GREET 1.6 Fuel-Cycle Model for Transportation Fuels and Vehicle Technologies, Center for Transportation Research, Energy Systems Division, Argonne National Laboratory, Report ANL/ESD/TM-163, June 2001. 12 Carlson, E., Assessment of Planar Solid Oxide Fuel Cell Technology. 1999, US Department of Energy: Cambridge, MA, USA. 13 Koslowske, M., A Process Based Cost Model for Multi-Layer Ceramic Manufacturing of Solid Oxide Fuel Cells, in Materials Science. 2003, Worcester Polytechnic Institute: Worcester, MA, USA. p. 42. 14 Carlson, E. and S. Mariano, Cost Analysis of Fuel Cell System for Transportation. 2000, Arthur D. Little for US DOE OTT: Cambridge, MA, USA. 15 ADVISOR: A Systems Analysis Tool for Advanced Vehicle Modeling, Markel, T., et al., Journal of Power Sources, 2002, available from the following URL: http://www.ctts.nrel.gov/ analysis/advisor.html 16 J. PaĚŠlsson, A. Selimovic, and L. Sjunnesson, J. Power Sources, 86, (2000), 442 - 448 17 Sriramulu, S. and J. Thijssen. in Fuel Cell Seminar. 2000. Portland, OR: US DOE. 18 Thijssen, J. and S. Sriramulu, Structural Limitations in the Scale-Up of Anode-Supported SOFCs. 2002, Arthur D. Little for US DOE: Cambridge, MA, USA. 19 Fulton, C., et al. Structural Limitations in the Scale-Up of Anode-Supported SOFCs. in Fuel Cell Seminar. 2002. Palm Springs, CA: US Department of Energy. 20 Chick, L.A., J.W. Stevenson, and R. Williford. Spreadsheet Model of SOFC Electrochemical Performance. in SECA Training Workshop. 2003. Morgantown, WV: US DOE NETL. http://www.netl.doe.gov/publications/proceedings/03/seca-model/Chick8-29-03.pdf 2-34PDF Image | Fuel Cell Handbook (Seventh Edition)
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