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    • 2. 发明申请
    • SOLID OXIDE FUEL CELL STACK AND METHOD OF MANUFACTURING THE SAME
    • 固体氧化物燃料电池堆及其制造方法
    • WO0245198A3
    • 2003-05-30
    • PCT/JP0110233
    • 2001-11-22
    • NISSAN MOTORHARA NAOKIKUSHIBIKI KEIKOSATO FUMINORIYAMANAKA MITSUGUUCHIYAMA MAKOTOHATANO MASAHARU
    • HARA NAOKIKUSHIBIKI KEIKOSATO FUMINORIYAMANAKA MITSUGUUCHIYAMA MAKOTOHATANO MASAHARU
    • H01M8/02H01M8/12H01M8/24
    • H01M8/2435H01M8/0202H01M8/1213H01M8/1226H01M8/1231H01M8/2425H01M2300/0074Y02P70/56
    • A solid oxide fuel cell stack in which first and second cell plates are alternately stacked. The first cell plates (5A) comprises a substrate (4) having a plurality of opening portions, a groove (42) which extends through the plurality of opening portions formed on a lower surface of the substrate, a solid electrolyte layer (3) which covers the opening portion formed on an upper surface of the substrate, a fuel electrode layer (1) which covers the opening portions formed on the solid electrolyte layer, and an air electrode layer (2) formed on the lower surface of the substrate so as to extend along the opening portions and the groove. The second cell plates (5B) has a structure in which the air electrode layer (2) is replaced with the fuel electrode layer in the first cell plate. In this fuel cell stack, the air electrode layer (2) of the first cell plate faces the air electrode layer (2) of the second cell plate, and the fuel electrode layer (1) of the first cell plate faces the fuel electrode layer (1) of the second cell plate. A method of manufacturing the solid oxide fuel cell stack comprises preparing the first cell plate, preparing the second cell plate, alternately stacking the first and second cell plates, and collectively sintering the stacked first and second cell plates.
    • 固体氧化物燃料电池堆,其中第一和第二电池板交替堆叠。 第一单元板(5A)包括具有多个开口部的基板(4),延伸穿过形成在基板的下表面上的多个开口部的槽(42),固体电解质层(3) 覆盖形成在基板的上表面上的开口部分,覆盖形成在固体电解质层上的开口部分的燃料电极层(1)和形成在基板的下表面上的空气电极层(2),以便 沿着开口部分和凹槽延伸。 第二电池板(5B)具有在第一电池板中用燃料电极层代替空气极层(2)的结构。 在该燃料电池堆中,第一电池板的空气极层(2)面向第二电池板的空气极层(2),第一电池板的燃料电极层(1)面向燃料电极层 (1)。 制造固体氧化物型燃料电池堆的方法包括:准备第一电池板,制备第二电池板,交替堆叠第一电池板和第二电池板,并共同烧结层叠的第一和第二电池板。
    • 5. 发明申请
    • ELECTRODE FOR FUEL CELL AND SOLID OXIDE FUEL CELL USING THE SAME
    • 用于燃料电池和固体氧化物燃料电池的电极
    • WO2004112173A3
    • 2005-11-17
    • PCT/JP2004006092
    • 2004-04-27
    • NISSAN MOTORSONG DONGHATANO MASAHARU
    • SONG DONGHATANO MASAHARU
    • H01M4/86H01M4/88H01M4/90H01M8/12
    • H01M4/8885H01M4/8621H01M4/9033H01M4/9066H01M8/1231Y02P70/56
    • An electrode (1) for fuel cell according to the present invention comprises electron-conducting particles (5), and fibrous oxide particles (3). In the electrode (1), the ratio represented by the following formula (I) is within a range from 5 to 25, and the ratio represented by the following formula (II) is within a range from 1 to 10 : average major axis of the oxide particles (3) / average major axis of the electron-conducting particles (5) (I), and thickness of the electrode (1) / average major axis of the oxide particles (3) (II). A large number of oxygen ion-conducting paths can thereby be informed in the electrode (1) to increase three phase zones, thus permitting electrons to be efficiently taken out therefrom. Further, a fuel cell (10) with high output and excellent power generation efficiency can be obtained by using the electrode (1) of the present invention. Nickel samaria doped ceria is disclosed.
    • 根据本发明的用于燃料电池的电极(1)包括电子传导颗粒(5)和纤维状氧化物颗粒(3)。 在电极(1)中,由下式(I)表示的比例在5〜25的范围内,由下式(II)表示的比例在1〜10的范围内:平均长轴 氧化物粒子(3)/电子传导粒子(5)(I)的平均长轴,电极(1)的厚度/氧化物粒子(3)(II)的平均长轴。 因此,可以在电极(1)中通知大量的氧离子传导路径,以增加三个相位区域,从而允许电子被有效地从其中取出。 此外,通过使用本发明的电极(1),可以获得具有高输出和发电效率优异的燃料电池(10)。 公开了掺锡的二氧化铈。