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Interconnectors for solid oxide fuel cell

Quadakkers W.J., Piron-Abellan J., Shemet V., Singheiser L. (2003) Metallic interconnectors for solid oxide fuel cells - A review. Mater. High Temp. 20(2), 115-127. [Pg.12]

Yasuda, I., and Hishinuma, M. (1996). Electrochemical properties of doped lanthanum chromites as interconnectors for solid oxide fuel cells. / Electrochem. Soc 143 1383-1390. [Pg.102]

Quadakkers W J, Piron-Abellan J, Shemet V and Singheiser L (2003), Metallic Interconnectors for Solid Oxide Fuel Cells - A Review, Mater High Temp, 20, 115-... [Pg.430]

High temperature or intermediate temperature electrochemical systems have been extensively studied for their potential advantages in terms of clean energy conversion with enhanced efficiency. However, these systems are mainly based on fragile ceramic materials, including solid electrolytes, electrodes and interconnector materials for solid oxide fuel cells, and other prospective solid state electrochemical systems, such as steam electrolysers, electrochemical oxygen pumps, etc. These ceramic-based systems are conditioned by mechanical limitations of cell materials, and mostly intended for stationary applications. [Pg.96]

T., and Yakabe, H. (2002) Development of Anode-Supported SOFC with Metallic Interconnectors for Reduced-Temperature Operation, in Proceedings of the Fifth European Solid Oxide Fuel Cell Forum, Vol. 2,... [Pg.33]

Fig. 4 Examples of current density-voltage curves for a solid oxide (see Sect. 8.1.3.2.2) fuel cell stack as a function of temperatures. These curves are measured directly. Parameter list interconnector CrFesY anode Ni cermet (Ni +ZrC>2) cathode lanthan strontium i manganite (LSM) electrolyte YSZ 800 (ZrC>2 — Y2O3) fuel H2 (1 bar) oxidant 02/air (1 bar) stacks of 80 cells in serial connection. Fig. 4 Examples of current density-voltage curves for a solid oxide (see Sect. 8.1.3.2.2) fuel cell stack as a function of temperatures. These curves are measured directly. Parameter list interconnector CrFesY anode Ni cermet (Ni +ZrC>2) cathode lanthan strontium i manganite (LSM) electrolyte YSZ 800 (ZrC>2 — Y2O3) fuel H2 (1 bar) oxidant 02/air (1 bar) stacks of 80 cells in serial connection.

See other pages where Interconnectors for solid oxide fuel cell is mentioned: [Pg.39]    [Pg.348]    [Pg.191]    [Pg.188]    [Pg.200]    [Pg.159]    [Pg.399]   
See also in sourсe #XX -- [ Pg.399 ]




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Fuel cell oxidants

Fuel cells solid oxide

Fuel oxidation

Fuel solid oxide

Oxidants, solid

Oxidation cell

Oxidation solids

Oxide Fuel Cells

Oxide fuels

Oxidizing solid

Solid fuel cell

Solid fuels

Solid oxide

Solid oxide cells

Solid oxidizers

Solide fuel cell

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