Поисковый запрос: (<.>K=КАРБОНАТЫ<.>) |
Общее количество найденных документов : 381
Показаны документы с 1 по 20 |
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1.
| Izaki Yoshiyuki 100-кВт энергоустановка на основе топливных элементов с расплавленным карбонатным электролитом/Yoshiyuki. Izaki, Abe Toshio. Watanabe Takao. // Nihon kikai gakkai ronbunshu. B = Trans. Jap. Soc. Mech. Eng. B, 1995. т.61, 592, 4477-4482
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2.
| 250-киловаттный топливный элемент с расплавленным карбонатным электролитом готов к использованию // Chem. and Eng. News, 1996. т.74, 30, 36
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3.
| Rossi F. A Cylindrical Small Size Molten Carbonate Fuel Cell: Experimental Investigation on Materials and Improving Performance Solutions /F. Rossi, A. Nicolini // Fuel Cells, 2009. т.№ 2.-С.170-177
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| A Kinetic Study of Spike Peaks Observed under Pressurized Oxidant Gas Atmospheres in Molten Alkali Carbonates/Lee. Choong-Gon, Tatsuo Nishina. Kohta Yamada. // J. Electrochem. Soc, 1996. т.Vol. 143,N № 7.-С.2315-2318
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| Boden A. A Model for Mass Transport of Molten Alkali Carbonate Mixtures Applied to the MCFC/A. Boden, G. Lindbergh // Journal of the Electrochemical Society, 2006. т.V. 153,N N 11.-С.A2111 - A2119
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6.
| Mirahmadi A. A noble method for molten carbonate fuel cells electrolyte manufacturing/A. Mirahmadi, H. Akbari // Journal of Solid State Electrochemistry , 2012. т.Vol. 16,N № 3.-С.931-936.
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| Rao M.M. A novel method of preparation of gamma lithium aluminate for use as molten carbonate fuel cell matrix material/M. M. Rao, Dheenadayan S. Solaiyan C. // New Mater. Fuel Cell Syst. I, Proc. Int. Symp., 1st, 1995. т.521-530
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| A reduced order model of Molten Carbonate Fuel Cell: A proposal /Jarosław Milewski, Marcin Wołowicz, Marcin Wołowicz, Rafał Bernat // International Journal of Hydrogen Energy, 2013. т.Vol. 38,N № 26.-С.11565-11575.
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9.
| Keijzer M. A search for suitable coating materials on separator plates for molten carbonate fuel cells/M. Keijzer, Van Der Put P. J.J.M. Hemmes K. // Corrosion Sci, 1997. т.39, 3, 483-484
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10.
| He Way A Simulation Model for Integrated Molten Carbonate Fuel Cell Systems/Way. He // J. Power Sources, 1994. т.49, 1-3, 283-290
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| Park J.W. A study on the development of anode material for molten carbonate fuel cell. Cu-base electrode/J. W. Park, Hwang E. R. Kim Y.D. // Han'guk Pyomyon Konghak Hoechi, 1995. т.28, 4, 243-254
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| A study on the start-up and performance of a kW-class molten carbonate fuel cell (MCFC) stack /L. Zhou [et al.] // Electrochimica Acta , 2006. т.V. 51,N N 26.-С.5698 - 5702
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13.
| Kohta Y. A thermogravimetric study on oxidation process of porous nickel in molten alkali carbonates at 6500 C/Y. Kohta, Isamu U. Tatsuo N. // Nippon Kagaku Kaishi, 1992. т.9, 897-901
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14.
| Prins-Jansen J.A. A Tree-Phase Homogeneous Model for Porous Electrodes in Molten-Carbonate Fuel Cells/J. A. Prins-Jansen, Hemmes K. Fehribach J.D. // J. Electrochem. Soc, 1996. т.143, 5, 1617-1628
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15.
| Prins-Jansen J.A. AN ac-Impedance Study of Dense and Porous Electrodes in Molten-Carbonate Fuel Cells/J. A. Prins-Jansen, Hemmes K. Plevier G.A.J.M. // Electrochim. Acta, 1996. т.41, 7/8, 1323-1329
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16.
| An effective semi-empiric model for MCFC kinetics: Theoretical development and experimental parameters identification/B. Bosio, N. Di Giulio, S. W. Nam, А. Moreno // International Journal of Hydrogen Energy, 2014. т.Vol. 39,N №.-С.. 12273-12284.
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17.
| Analysis of biogas reforming process for molten carbonate fuel cells /V. Chiodo, F. Urbani, A. Galvagno, N. Mondello, S. Freni // Journal of Power Sources, 2012. т.Vol.206.-С.215-221.
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18.
| Xuping Li Analysis of the design and economics of molten carbonate fuel cell tri-generation systems providing heat and power for commercial buildings and H2 for FC vehicles /Xuping Li, Joan Ogden, Christopher Yang // Journal of Power Sources, 2013. т.Vol. 241.-С.668-679/
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19.
| APPA allies opt for carbonate cell // Cogeneration, 1991. т.V. 8,N N 4.-С.29
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20.
| Cathode materials (NiO-LiFeO2-LiCoO2) for molten carbonate fuel cell: A diffraction,NMR and conductivity study /С. Milanese [et al.] // Solid State Ionics, 2006. т.V. 177,N N. 19 - 25.-С.1893 - 1896
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