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    • 23. 发明专利
    • Manufacturing method of lithium ion secondary battery and lithium ion secondary battery
    • 锂离子二次电池和锂离子二次电池的制造方法
    • JP2013182661A
    • 2013-09-12
    • JP2012043420
    • 2012-02-29
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TSURUMAKI SHIGERUNOGUCHI YOSHINORIWATANABE IKUMI
    • H01M4/58H01M4/36
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a lithium ion secondary battery capable of producing a cathode active material giving high output at a low cost and achieving high output, and a lithium ion secondary battery.SOLUTION: A method for manufacturing a lithium ion secondary battery 1 having a cathode 14 provided with a cathode active material, an anode 15 and a nonaqueous electrolyte comprises the steps of: preliminarily mixing an iron fluoride powder and an aromatic low molecular weight compound powder by dry-stirring to produce a mixture; and heating this mixture at a temperature of the melting-point or higher of the aromatic low molecular weight compound, maintaining at this temperature, further heating to the range of 200 to 500°C followed by maintaining, and then cooling to room temperature to obtain a cathode active material with carbon precipitated on the surface of the iron fluoride particle.
    • 要解决的问题:提供一种能够以低成本生产高输出并实现高输出的阴极活性材料的锂离子二次电池的制造方法和锂离子二次电池。解决方案:一种锂的制造方法 具有设置有正极活性物质的阴极14,阳极15和非水电解质的离子二次电池1包括以下步骤:通过干燥搅拌预先混合氟化铁粉末和芳族低分子量化合物粉末以产生混合物; 在芳香族低分子量化合物的熔点以上的温度下加热该混合物,在该温度下保持进一步加热至200〜500℃的范围,然后保持,然后冷却至室温,得到 在氟化铁颗粒的表面上沉积有碳的阴极活性材料。
    • 26. 发明专利
    • Power storage device
    • 电源存储设备
    • JP2010067454A
    • 2010-03-25
    • JP2008232426
    • 2008-09-10
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • FUKUDA NORIHIROURAKA YASUTAKAKOSAKA KENICHIROSAKANISHI AKIHIROTSURUMAKI SHIGERUINOUE KATSUAKIHASHIMOTO HIDEAKIMORI YASUSHIKOBAYASHI YOSHINORITAKENOBU KOICHIKURISAKI TAKASHI
    • H01M8/06C25B9/00H01M8/04
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To simplify a device constitution, and drastically improve operation efficiency.
      SOLUTION: A power storage device 10 includes a water electrolysis device 11, a fuel cell 12, a container 13, purification layers 14, a partitioning plate 15 to separate the interior of the container 13 body into a first chamber 16 and a second chamber 17, a hydrogen storage part 20 having a hydrogen tank 21 and hydrogen pipings 22a, 22b, an oxygen storage part 30 having an oxygen tank 31 and oxygen pipings 32a, 32b, a first feed pipe 25 to feed circulation water drained from the container 13 to the first chamber 16 through the fuel cell 12 and the water electrolysis device 11, a second feed pipe 35 to feed the circulation water drained from the container 13 to the second chamber 17 through the fuel cell 12 and the water electrolysis device 11, a hydrogen supply pipe 26 of which one end part is connected to the first feed pipe 25 located on more downstream side than the fuel cell 12, and an oxygen supply pipe 36 of which one end part is connected to the second feed pipe 35 located on more downstream side than the fuel cell 12.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了简化装置构造,并且显着提高了操作效率。 解决方案:蓄电装置10包括水电解装置11,燃料电池12,容器13,净化层14,分隔板15,以将容器13主体的内部分隔成第一室16和 第二室17,具有氢罐21和氢管22a,22b的氢存储部20,具有氧气罐31和氧气管32a,32b的氧气存储部30,第一供给管25,用于供给从第二室17排出的循环水 容器13通过燃料电池12和水电解装置11到达第一室16;第二供给管35,其通过燃料电池12和水电解装置11将从容器13排出的循环水供给到第二室17 一个端部与位于燃料电池12的下游侧的第一供给管25连接的供氢管26,一个端部与第二供电管35连接的供氧管36 上 比燃料电池12更下游侧。版权所有(C)2010,JPO&INPIT
    • 29. 发明专利
    • Solid polymer fuel cell and operation system of solid polymer fuel cell
    • 固体聚合物燃料电池和固体聚合物燃料电池的操作系统
    • JP2005032561A
    • 2005-02-03
    • JP2003196534
    • 2003-07-14
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KOBAYASHI TOSHIROITO EIKITSURUMAKI SHIGERUMORIGA TAKUYAYAMADA TAMOTSUWATANABE SATORUSATO AKIOYAMADA AKIHIKO
    • H01M8/02H01M8/04H01M8/10
    • Y02E60/521
    • PROBLEM TO BE SOLVED: To provide a solid polymer fuel cell and its operating system wherein performance and durability are improved regardless of low humidification conditions. SOLUTION: In the solid polymer fuel cell in which a cathode is arranged on one side via a polymer film, an anode is arranged on the other side, oxidizer gas is supplied to the cathode, fuel gas is supplied to the anode, and electromotive force is obtained by a battery reaction of obtaining water from hydrogen and oxygen, this is structured in such a way that at least two systems of cooling water passageways 12, 13 are installed, cooling waters of different temperatures are supplied to respective cooling water passageways, and a dry domain of an oxidizer gas path and/or a fuel gas path is made to correspond to a low-temperature cooling water passageway. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供固体聚合物燃料电池及其操作系统,其中性能和耐久性得到改善,而不管低加湿条件如何。 解决方案:在固体聚合物燃料电池中,阴极通过聚合物膜排列在一侧,另一侧设置有阳极,向阴极供给氧化剂气体,向阳极供给燃料气体, 并且通过从氢气和氧气获得水的电池反应获得电动势,其结构使得至少两个冷却水通道12,13系统被安装,不同温度的冷却水被供应到各自的冷却水 通道和氧化剂气体路径和/或燃料气体路径的干燥区域对应于低温冷却水通道。 版权所有(C)2005,JPO&NCIPI