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    • 5. 发明专利
    • Gas decomposition device, gas decomposition method, and gas decomposition power generator
    • 气体分解装置,气体分解方法和气体分解发电机
    • JP2013085999A
    • 2013-05-13
    • JP2011227014
    • 2011-10-14
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • HIRAIWA CHIHIROMASHIMA MASATOSHIYAMAGUCHI ATSUSHI
    • B01J19/08B01J23/755B01J37/34
    • PROBLEM TO BE SOLVED: To provide a gas decomposition device with improved gas decomposition efficiency by adopting a catalyst with the optimal blending ratio in response to change of gas concentration in a decomposition process.SOLUTION: The gas decomposition device includes a plurality of gas decomposition elements 100a, 100b, 100c each of which includes a solid electrolyte layer 101, a first electrode layer 102 provided on one side of the solid electrolyte layer, and a second electrode layer 105 provided on the other side. Compositions of catalysts included in the first electrode layer and/or the second electrode layer are different depending on the gas decomposition elements, and the gas is made to act in sequence on a plurality of the gas decomposition elements to be decomposed.
    • 解决的问题:通过在分解过程中采用响应于气体浓度变化的最佳混合比的催化剂来提供具有改善的气体分解效率的气体分解装置。 解决方案:气体分解装置包括多个气体分解元件100a,100b,100c,每个气体分解元件100a,100b,100c包括固体电解质层101,设置在固体电解质层一侧的第一电极层102和第二电极 设置在另一侧的层105。 包含在第一电极层和/或第二电极层中的催化剂的组成根据气体分解元素而不同,并且使气体依次作用于要分解的多个气体分解元素。 版权所有(C)2013,JPO&INPIT
    • 9. 发明专利
    • Gas decomposition apparatus and power generating device
    • 气体分解装置和发电装置
    • JP2012143715A
    • 2012-08-02
    • JP2011004659
    • 2011-01-13
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • HIRAIWA CHIHIROFUTAJIMA HIDEAKIMASHIMA MASATOSHIYAMAGUCHI ATSUSHIMIZUHARA NAHOAWAZU TOMOYUKI
    • B01D53/32B01D53/58B01J19/00H01M8/00H01M8/02H01M8/04H01M8/12
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To prevent external piping, a connecting member connecting this, and a seal structure provided between them from being damaged by heat while being able to improve decomposition efficiency by raising the temperature of gas which flows in a cylindrical MEA (Membrane Electrode Assembly), and further to reduce production cost.SOLUTION: The gas decomposition apparatus is composed by using the cylindrical MEA 7 which includes: a cylindrical solid electrolyte layer; a first electrode layer which is formed to be laminated on an inner periphery of the solid electrolyte layer; and a second electrode layer which is formed to be laminated on an outer periphery of the solid electrolyte layer, and includes: a heating container 51 accommodating and heating the MEA; a projecting portion 41 projecting from the heating container; a connecting member 30 disposed at an opening end portion of the projecting portion; a temperature sensor 73 capable of measuring temperatures of these portions or a temperature of gas flowing in these portions; and a control unit 72 to control so that the temperatures of the projecting portion and the connecting member or the temperature of the gas flowing in these portions may be lower than prescribed temperatures.
    • 要解决的问题:为了防止外部管道,连接这一点的连接构件和它们之间设置的密封结构被热损坏,同时通过提高在圆柱形MEA中流动的气体的温度来提高分解效率 (膜电极组件),进一步降低生产成本。 解决方案:气体分解装置由使用圆柱形MEA 7组成,其包括:圆柱形固体电解质层; 第一电极层,被形成为层压在固体电解质层的内周上; 以及第二电极层,其被形成为层压在固体电解质层的外周上,并且包括:容纳并加热MEA的加热容器51; 从加热容器突出的突出部分41; 设置在突出部的开口端部的连接部件30; 能够测量这些部分的温度或在这些部分中流动的气体的温度的温度传感器73; 以及控制单元72,以使得突出部分和连接构件的温度或在这些部分中流动的气体的温度可能低于规定温度。 版权所有(C)2012,JPO&INPIT