Page 73 - High Temperature Solid Oxide Fuel Cells Fundamentals, Design and Applications
P. 73

50  High Temperature Solid Oxide Fuel Cells: Fundamentals, Design and Applications

          [116]  L.  EIikan, J. P. Morris, C. IC. Wu and C. G.  Saunders, 180-day life test of
                solid electrolyte system for oxygen regeneration. ASME paper 71-Av-32
                (1971) 1-12.
          E1171  J. Weissbart, W. H. Smart and T. Wydeven, Design and performance of a
                solid  electrolyte  oxygen  generator  test  module.  ASME paper  71-Av-8
                (1971) 1-7.
          [118]  W. Baukal, Brennstoffbatterie, SwissPatent 444 243, filed April 8, 1965.
          [119]  C. Deportes, J. Besson and G.  Vitter, Rev. Energ.  Primaire. Journies Int.
                d’Etudedes Pilesa Combustible, Bruxelles, 1967.
          [l20] D. H. Archer  and R. L.  Zahradnik, The design of  a  100 kilowatt, coal
                burning, fuel cell power system. Chem. Eng. Progr. Symp. Series 63, No. 75
                (1967) 55-62.
          [121]  GeneralElectric, Chem. Ing. News, 47 (November 4,1968) 48-49.
          [122]  H. S. Spacil, Solid oxygen-ion electrolyte cell for the dissociation of steam.
                US Patent 3,635,812, filed July 5,1968.
          [123]  H.  S.  Spacil  and  C.  S.  Tedmon,  J.  Electrochem.  Soc.,  116  (1969)
                161 8-1 63 3.
          [124]  H. S. Spacil and D. W. White, Internally short-circuited solid oxygen-ion
                electrolyte cell,  US Patent 3,630,979, filed January 2, 1969.
          [125]  H.-H.MSbius, Chem.GesVDDR,21(l974) 177-182.
          [126]  T.H.EtsellandS.N.Flengas,  Chem.Reu., 70 (1970) 339-376.
          [127]  W. Feduska and A. 0. Isenberg,]. PowerSources, 10 (1983) 89-102.
          [128]  W. Fischer, H. Kleinschmager, F. J, Rohr, R. Steiner andH. H. Eysel, Chem.
                Ing. Tech., 44 (1972) 726-732.
          [129]  F.  J.  Rohr,  Entwicklung  des  Prototyps  einer  Hochtemperatur-
                Brennstoffzellen-Batterie, Forschungsabschlul3bericht 19 75, BMFT-FB-T
                 77-17(1977),~. 265.
          [130]  W. Baukal, W. Kuhn, H. Kleinschmager and F. J. Rohr, 1. PowerSources, 1
                (1976) 91-97,203-213.
          [131]  F. J. Rohr, in Solid Electrolytes  (eds. P. Hagenmuller  and W.  van Gool),
                Academic Press, NewYork, 1978, pp. 431-450.
          [132]  A.  0.  Isenberg,  Recent  advancements  in  solid  electrolyte  fuel  cell
                technology.  in  I982  National  Fuel  Cell  Seminar  Abstracts,  Courtesy
                Associates, Washington, DC, (1982) 154-156.
          [133]  P. Reichner and J. M. Makiel, Development status of multi-cell solid oxide
                fuel cell generators, in I986 National Fuel Cell Seminar Abstracts, Courtesy
                Associates, Washington, DC, (1986) 32-35.
          [134]  J. Sukkel, in Proceedings ofthe 4th European SOFC Forum, ed. A. J. McEvoy,
                Switzerland, 2000, pp. 159-1 66.
          [135]  J.  T.  Brown,  Solid  oxide  fuel  cells  in:  High  Conductivity  Solid  Ionic
                Conductors,  (ed.  T.  Takahashi),  World  Scientific,  Singapore,  1989,
                pp. 630-663.
          [136]  D. C. Fee et al., Monolithic fuel cell development, in 1986 Fuel Cell Seminar
                Abstracts, Courtesy Associates, Washington, DC, (1986) 40-47,  52-75.
   68   69   70   71   72   73   74   75   76   77   78