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    • 2. 发明授权
    • Inorganic conductive membrane, fuel cell containing the same, and method for manufacturing thereof
    • 无机导电膜,含有它的燃料电池及其制造方法
    • US08728681B2
    • 2014-05-20
    • US12990218
    • 2009-04-27
    • Byung Hoon RyouJae Kyung Kong
    • Byung Hoon RyouJae Kyung Kong
    • H01M8/10
    • H01M8/1004B01D53/228B01D67/0065B01D69/105B01D69/12B01D69/145B01D71/022B01D71/025C08J5/2206C08J2327/18C25D11/022C25D11/04C25D11/08C25D11/16C25D11/24C25D11/26C25D11/30C25D11/34H01M8/0293H01M8/1016Y02P70/56
    • The present invention relates to an inorganic ion conductive membrane, which is capable of obtaining a fuel cell with a stable operation in all temperature, high performance, and no leakage of fuels by manufacturing the inorganic ion conductive membrane, composed of an inorganic membrane, using an anodic oxidization reaction and applying the manufactured inorganic ion conductive membrane to the fuel cell, a fuel cell including the inorganic ion conductive membrane, and a method of manufacturing the inorganic ion conductive membrane and the fuel cell. The method of manufacturing the inorganic ion conductive membrane includes the steps of (a) disposing a conductive wire, made of the same materials as a metal tube, within the metal tube, supplying an anode current to the conductive wire, and supplying a cathode current to the metal tube and (b) applying an electrolyte to the metal tube and the conductive wire, thereby forming an inorganic membrane comprising a plurality of pores in at least some of an inside wall and outside wall of the metal tube to which the cathode current has been supplied.
    • 无机离子传导膜技术领域本发明涉及一种无机离子传导膜,其能够通过制造由无机膜构成的无机离子传导膜,通过使用由无机膜构成的无机离子传导膜,能够获得在所有温度,高性能和不发生燃料泄漏的燃料电池中 阳极氧化反应并将所制造的无机离子导电膜施加到燃料电池,包括无机离子传导膜的燃料电池,以及制造无机离子传导膜和燃料电池的方法。 制造无机离子传导膜的方法包括以下步骤:(a)在金属管内设置与金属管相同的材料制成的导线,向导线供给阳极电流,并将阴极电流 和(b)向金属管和导电线施加电解质,从而形成在金属管的内壁和外壁中的至少一些内部包含多个孔的无机膜,阴极电流 已经提供。