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    • 3. 发明公开
    • ANION CONDUCTOR AND LAYERED METAL HYDROXIDE
    • 阴离子导体和层状金属氢氧化物
    • EP3125346A9
    • 2017-05-10
    • EP15769786.3
    • 2015-03-25
    • Tokuyama Corporation
    • KAMADA, KaiWATANABE, ShinYANAGI, Hiroyuki
    • H01M8/02C01F17/00C01G3/00C01G9/00H01B1/06H01M8/10
    • H01M8/1016C01F17/00C01F17/0043C01F17/005C01F17/0075C01G3/00C01G3/02C01G3/08C01G9/00C01G9/02C01P2002/22C01P2002/72C01P2004/61C01P2004/62C01P2004/64C01P2006/40C01P2006/60H01B1/04H01B1/06H01M2/1646H01M4/926H01M8/083H01M12/08H01M2300/0014H01M2300/0068Y02E60/128
    • The present invention provides a novel anion conductor which comprises a layered metal hydroxide and can be used as an alkaline electrolyte film for use in a fuel cell or the like. An anion conductor characterized by comprising a molded product of a layered metal hydroxide represented by formula (1): [M x (OH) y (A) (αx-y)/z -nH 2 O] (wherein M represents a metal that can serve as a bivalent or trivalent cation; α represents the number of valency of the metal M, A represents an atom or an atomic group that can serve as an anion, and z represents the number of valency of the anion A, wherein, when (αx-y)/z is 2 or greater, A's may be different types of anions which can serve as anions having the same valencies as each other, or may be anions having different valencies from each other; and n represents the average number of molecules of interlayer water contained per one repeating unit). The anion conductor according to the present invention is composed of an inorganic material, and therefore has excellent heat resistance and physical strength and can be operated for a longer period at a higher temperature compared with the conventional ones when used as an anion conductor for a fuel cell, an air cell or the like.
    • 本发明提供一种新型阴离子导体,其包含层状金属氢氧化物并且可用作用于燃料电池等的碱性电解质膜。 一种阴离子导体,其特征在于,含有由式(1)表示的层状金属氢氧化物的成型体:[Mx(OH)y(A)(αx-y)/ z-nH2O](式中,M表示可作为 二价或三价阳离子,α表示金属M的价数,A表示可以作为阴离子的原子或原子团,z表示阴离子A的价数,其中当(αx- y)/ z为2以上时,A可以是可以作为具有相同价态的阴离子的不同种类的阴离子,也可以是价态不同的阴离子,n表示中间层的平均分子数 每个重复单位含有的水)。 根据本发明的阴离子导体由无机材料组成,因此具有优异的耐热性和物理强度,并且当用作燃料的阴离子导体时,与传统的阴极导体相比,可以在更高的温度下运行更长的时间 细胞,空气细胞等。
    • 8. 发明公开
    • POWER GENERATION SYSTEM UTILIZING ALKALINE FUEL CELL, AND FUEL GAS FOR ALKALINE FUEL CELL FOR USE IN THE SYSTEM
    • 在本系统为碱性燃料电池碱性燃料电池和燃料气体用发电系统
    • EP2461411A1
    • 2012-06-06
    • EP10804311.8
    • 2010-07-22
    • Tokuyama Corporation
    • WATANABE, ShinFUKUTA, KenjiYANAGI, Hiroyuki
    • H01M8/06H01M8/02H01M8/10
    • H01M8/083H01M8/222Y02E60/50
    • Disclosed is a method for producing a higher output in an alkaline fuel cell that utilizes an electrolyte membrane comprising an anion exchange membrane, compared to the outputs produced in the conventional alkaline fuel cells. Specifically disclosed is a power generation system which utilizes an alkaline fuel cell that comprises an electrolyte membrane comprising an anion exchange membrane and a pair of electrodes (an anode and a cathode) arranged on the both sides of the electrolyte membrane, wherein the alkaline fuel cell can generate an electric power by supplying a fuel gas and an oxidizer gas to the anode side and the cathode side, respectively. The power generation system is characterized by using a hydrogen gas containing a basic compound such as ammonia as the fuel gas to be supplied to the anode side.
    • 公开了用于在给碱性燃料电池产生更高的输出的方法并利用到电解质膜包含阴离子交换膜的,相比于在常规的碱性燃料电池所产生的输出。 具体地说游离缺失盘是发电系统,其利用给碱性燃料电池那样电解质膜包括包含布置在所述电解质膜的bothsides阴离子交换膜和一对电极(阳极和阴极)的,worin的碱性燃料电池 可以通过分别供给燃料气体和氧化剂气体向阳极侧至阴极侧,并且产生电力。 发电系统是通过使用含有碱性化合物氢气特点:如氨作为燃料气体被供给到阳极侧。
    • 9. 发明公开
    • METHOD FOR PRODUCING ION CONDUCTIVITY-IMPARTING AGENT FOR CATALYST ELECTRODE LAYER OF ANION-EXCHANGE MEMBRANE FUEL CELL
    • 方法HERSTELUNG的离子电导率剂催化剂电极层中的阴离子燃料电池
    • EP2296210A1
    • 2011-03-16
    • EP09758318.1
    • 2009-06-02
    • Tokuyama Corporation
    • FUKUTA, KenjiWATANABE, ShinYAMASHITA, YoshinobuYANAGI, Hiroyuki
    • H01M4/88H01M4/86H01M8/10
    • H01M4/8663H01M8/1018
    • Disclosed is a method for producing an ion-conductivity providing agent for a catalyst electrode layer of an anion-exchange membrane type fuel cell comprising: producing anionic conductive resin including a quaternary onium base having a halogeno ion as its counterion, and bringing the halogen type anionic conductive resin into contact with carbonate solution and/or bicarbonate solution to directly obtain anionic conductive resin in which at least a part of the counterion of said quaternary onium base is CO 3 2- and/or HCO 3 - , without ion exchange of the counterion to OH-type by using deleterious substance such as sodium hydroxide. The purpose is to provide a method for stably producing an ion-conductivity providing agent used for giving ion conductivity to a catalyst electrode layer of an anion-exchange membrane type fuel cell, the method being easy to operate, the ion-conductivity providing agent showing constant effect for giving ion conductivity.
    • 公开了一种用于在离子传导性产生用于阴离子交换膜型燃料电池,其包含的催化剂电极层中提供剂的方法:生产阴离子导电性树脂,其包括具有卤代离子作为其抗衡离子的季鎓基,并且使卤素型 阴离子的导电性树脂与碳酸盐溶液和/或碳酸氢盐溶液接触,以获得直接阴离子导电性树脂至少在所述季鎓基的抗衡离子的一部分是CO 3 2-和/或HCO 3 - ,而不的离子交换 如氢氧化钠:通过使用有害物质抗衡OH型。 目的是提供一种用于稳定地制造在离子传导性,提供用于给出离子传导性的阴离子交换膜型燃料电池的催化剂电极层剂,该方法易于操作,离子导电性赋予剂显示提供一种方法 用于给出离子传导性常数的效果。