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    • 1. 发明公开
    • FUEL CELL SYSTEM
    • 燃料电池系统
    • EP3297079A1
    • 2018-03-21
    • EP16792331.7
    • 2016-03-16
    • Panasonic CorporationToto Ltd.
    • KAKUWA, TakashiFUJITA, TatsuoOOE, ToshiharuSAKAMOTO, TaiichiroOTSUKA, ToshiharuWATANABE, Naoki
    • H01M8/04H01M8/0606H01M8/12
    • H01M8/04022H01M8/04H01M8/04074H01M8/0606H01M8/0618H01M8/12H01M8/2425H01M8/2484H01M2008/1293
    • A fuel cell system includes: a reformer configured to reform raw fuel to generate reformed gas; a solid-oxide fuel cell configured to generate electric power by a reaction between the reformed gas and air; a fuel collecting portion provided adjacent to the solid-oxide fuel cell, the reformed gas remaining after the reaction of the solid-oxide fuel cell being collected at the fuel collecting portion; an air flow-through portion formed along an outer periphery of the fuel collecting portion; a combustor configured to mix the reformed gas discharged from a fuel jetting opening of the fuel collecting portion with the air flowing through the air flow-through portion, to combust the reformed gas and configured to mix the reformed gas discharged from a fuel jetting opening of the fuel collecting portion with the air flowing through the air flow-through portion, to combust the reformed gas; and a covering body provided so as to block flow of the air in a direction from the air flow-through portion toward the combustor along the reformer, wherein: the reformer reforms the raw fuel using combustion heat of the combustor; and the covering body supplies the air toward the fuel jetting opening of the fuel collecting portion.
    • 燃料电池系统包括:重整器,被配置为重整原燃料以产生重整气体; 固体氧化物型燃料电池,其被配置为通过重整气与空气之间的反应来发电; 与所述固体电解质型燃料电池相邻地设置的燃料收集部,在所述燃料收集部回收所述固体氧化物型燃料电池的反应后残留的重整气体; 沿燃料收集部分的外周形成的空气流通部分; 燃烧器,其构造成将从所述燃料收集部的燃料喷射口排出的重整气体与流过所述气流通过部分的空气混合,以燃烧所述重整气体,并且构造成将从燃料喷射口的燃料喷射口排出的重整气体 所述燃料收集部分使空气流过所述空气流通部分,以燃烧所述重整气体; 以及遮蔽体,其设置成阻止空气沿着从所述空气流通部朝向所述燃烧器的方向沿所述重整器流动,其中:所述重整器利用所述燃烧器的燃烧热重整所述原燃料; 并且覆盖体将空气供应到燃料收集部的燃料喷射开口。
    • 6. 发明公开
    • SOLID OXIDE FUEL CELL STACK
    • FESTOXIDBRENNSTOFFZELLE
    • EP3002810A1
    • 2016-04-06
    • EP15187529.1
    • 2015-09-30
    • Toto Ltd.
    • KAKINUMA, YasuoOKAMOTO, OsamuANDO, ShigeruMURAKAMI, HironobuFURUYA, SeikiMOMIYAMA, YutakaHAYAMA, KiyoshiWATANABE, NaokiTANAKA, ShuheiISAKA, NobuoHOSHIKO, TakuyaSATO, Masaki
    • H01M8/12H01M8/1213
    • H01M8/0202H01M8/12H01M8/1213H01M8/1246H01M8/24H01M2008/1293H01M2300/0071
    • There is provided a solid oxide fuel cell stack including a ceramic interconnector that has an excellent electrical conductivity and a gas sealing property. The solid oxide fuel cell stack includes a support, a plurality of power generation elements, each of which including at least a fuel electrode, a solid electrolyte, and an air electrode stacked in that order on the surface of the support, and an interconnector that electrically connects an air electrode in one of the two adjacent power generation elements in the plurality of power generation elements to a fuel electrode in the other power generation element, the plurality of power generation elements being connected in series to each other, wherein a solid electrolyte for one of the power generation elements is provided on the downside of the interconnector provided on the downside of the air electrode in the one power generation element so that the solid electrolyte is joined to the interconnector, and a solid electrolyte for the other power generation element is provided on the upper side of the interconnector provided on the upper side of the fuel electrode for the other power generation element so that the solid electrolyte is joined to the interconnector.
    • 提供了一种固体氧化物燃料电池堆,其包括具有优异导电性和气密性的陶瓷互连器。 固体氧化物燃料电池堆包括支撑体,多个发电元件,每个发电元件至少包括在支撑体的表面上依次堆叠的燃料电极,固体电解质和空气电极,以及互连器, 将多个发电元件中的两个相邻的发电元件中的一个中的空气电极电连接到另一个发电元件中的燃料电极,所述多个发电元件彼此串联连接,其中固体电解质 发电元件中的一个设置在设置在一个发电元件中的空气电极的下侧上的互连器的下侧,使得固体电解质连接到互连器,并且用于另一个发电元件的固体电解质 设置在设置在另一个功率基因的燃料电极的上侧的互连器的上侧 使得固体电解质连接到互连器。
    • 9. 发明公开
    • SOLID OXIDE FUEL CELL STACK
    • SOLILD氧化物燃料堆
    • EP3002813A1
    • 2016-04-06
    • EP15187531.7
    • 2015-09-30
    • Toto Ltd.
    • KAKINUMA, YasuoOKAMOTO, OsamuANDO, ShigeruMURAKAMI, HironobuFURUYA, SeikiMOMIYAMA, YutakaHAYAMA, KiyoshiWATANABE, NaokiTANAKA, ShuheiISAKA, NobuoHOSHIKO, TakuyaSATO, Masaki
    • H01M8/24H01M4/90H01M8/02
    • H01M8/0202H01M4/9033H01M8/0217H01M8/1246H01M8/24H01M8/243H01M8/2465H01M2008/1293H01M2300/0071
    • There is provided a solid oxide fuel cell stack that can suppress the formation of a counter cell, has a high electrical conductivity, and has a excellent power generation performance. The solid oxide fuel cell stack includes a support, a plurality of power generation elements provided on a surface of the support, the plurality of power generation elements each including at least a fuel electrode, a solid electrolyte, and an air electrode stacked in that order, and an interconnector that electrically connects an air electrode in one of adjacent power generation elements in the plurality of power generation elements to a fuel electrode in the other power generation element, the plurality of power generation elements being connected in series to each other, wherein a solid electrolyte in adjacent one power generation element is provided between a fuel electrode in the adjacent one power generation element and the fuel electrode in the adjacent other power generation element, and an insulating member is provided at a position that is on the solid electrolyte in the adjacent one power generation element and between the air electrode in the adjacent one power generation element and the solid electrolyte therein.
    • 提供了可以抑制反电池的形成的固体氧化物型燃料电池堆,具有高的导电性,并且具有优异的发电性能。 固体氧化物燃料电池堆包括支撑体,设置在支撑体的表面上的多个发电元件,多个发电元件各自至少包括燃料电极,固体电解质和以该顺序堆叠的空气电极 以及将多个发电元件中的相邻发电元件中的一个中的空气电极电连接到另一个发电元件中的燃料电极的互连器,所述多个发电元件彼此串联连接,其中 相邻一个发电元件中的燃料电极和相邻的发电元件中的燃料电极之间设置相邻的一个发电元件中的固体电解质,并且绝缘部件设置在固体电解质上的位置 相邻的一个发电元件和相邻的一个发电中的空气电极之间 其中固体电解质。