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    • 2. 发明专利
    • Method for manufacturing alkali activated carbon and grinding apparatus
    • 制备碱性活性炭和研磨装置的方法
    • JP2009067615A
    • 2009-04-02
    • JP2007235839
    • 2007-09-11
    • Carbon Tech KkKansai Coke & Chem Co Ltdカーボンテック株式会社関西熱化学株式会社
    • ISHIDA KAZUHIDEUBA MASANOBUMATSUDA KAZUKIYOASADA SHINGOYASUMARU JUNICHI
    • C01B31/12
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing an alkali activated carbon excellent in recovery efficiency and a grinding apparatus used in this method for grinding a lump-like mixture containing the alkali activated carbon.
      SOLUTION: After a carbonaceous substance and an alkali metal compound are heat-treated for activation, water is injected into the mixture containing alkali activated carbon which is aggregated into a lump by cooling in a vessel and the mixture ground by injecting water is collected. In this method for injecting water, use of a grinding apparatus equipped with a water injection chamber which has a structure for introducing an inert gas into its inside and discharging an exhaust gas and is capable of accommodating the vessel and a water injection device for injecting water into the lump-like mixture in the vessel is recommended.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 待解决的问题:提供一种制造回收效率优异的碱性活性炭的方法和用于研磨含有碱性活性炭的块状混合物的方法中使用的研磨装置。 解决方案:将碳质物质和碱金属化合物进行热处理以进行活化后,将水注入到通过在容器中冷却而聚集成块状的碱性活性炭的混合物中,通过注入水研磨的混合物为 集。 在这种注射水的方法中,使用具有注水室的研磨装置,其具有用于将惰性气体引入其内部并排出废气并且能够容纳容器的结构以及用于注入水的注水装置 推荐在容器中的块状混合物中。 版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Graphite material for lithium ion secondary battery, and method for manufacturing the same
    • 用于锂离子二次电池的石墨材料及其制造方法
    • JP2011060465A
    • 2011-03-24
    • JP2009206352
    • 2009-09-07
    • Carbon Tech KkKansai Coke & Chem Co Ltdカーボンテック株式会社関西熱化学株式会社
    • YASUMARU JUNICHIMATOBA NAOKITENNO KOJIRO
    • H01M4/587C01B31/04H01M4/36
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a graphite material for a lithium ion secondary battery having low specific surface area and excellent in performance such as electrode density, initial efficiency, and load characteristics; and to provide a method for manufacturing the graphite material for the lithium ion secondary battery.
      SOLUTION: The graphite material for the lithium ion secondary battery is such a graphite material obtained by forming a coating layer comprising a carbide on the surfaces of pressed graphite particles formed by pressing natural graphite globular particles and/or natural graphite massive particles. The method for manufacturing the graphite material for the lithium ion secondary battery includes: a pressing step of obtaining pressed graphite particles by pressing the natural graphite globular particles and/or the natural graphite massive particles; and a coating step of coating carbon by heating after coating, with a carbon material precursor, the pressed graphite particles obtained.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 解决问题:提供具有低比表面积和优异性能如电极密度,初始效率和负载特性的锂离子二次电池的石墨材料; 并提供一种锂离子二次电池用石墨材料的制造方法。 解决方案:用于锂离子二次电池的石墨材料是通过在压制天然石墨球状颗粒和/或天然石墨块状颗粒形成的压制石墨颗粒的表面上形成包含碳化物的涂层而获得的这种石墨材料。 锂离子二次电池用石墨材料的制造方法包括:通过压制天然石墨球状粒子和/或天然石墨质量粒子得到压制石墨粒子的压制工序; 以及涂覆步骤,通过在涂覆之后用碳材料前体加热所得到的压制石墨颗粒来涂覆碳。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Method for manufacturing porous carbon material
    • 制造多孔碳材料的方法
    • JP2010265134A
    • 2010-11-25
    • JP2009116941
    • 2009-05-13
    • Kansai Coke & Chem Co Ltd関西熱化学株式会社
    • TAKENAKA SHOICHIYASUMARU JUNICHI
    • C01B32/336B01J20/20B01J20/30C01B31/10H01G11/22H01G11/24H01G11/34H01G11/42H01G11/44
    • Y02E60/13
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a porous carbon material, whereby a large relative surface area can be achieved and pore size can be controlled.
      SOLUTION: The method for manufacturing the porous carbon material comprises performing gas activation of a carbon raw material, provided that an operation of temporarily replacing activation gas with inert gas inside a furnace is conducted during the gas activation treatment. Specifically, the method comprises: a temperature raising step of placing the carbon raw material inside the furnace and heating the furnace; a first activation step of feeding the activation gas to the heated furnace; a replacement step of replacing the activation gas with the inert gas while heating the furnace after the first activation step; and a second activation step of resuming feeding of the activation gas to the furnace after the replacement step.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种制造多孔碳材料的方法,由此可以实现大的相对表面积并且可以控制孔径。 解决方案:制造多孔碳材料的方法包括进行碳原料的气体活化,条件是在气体活化处理期间进行在惰性气体内临时置换活化气体的操作。 具体地,该方法包括:将碳原料放置在炉内并加热炉的升温步骤; 将活化气体供给到加热炉的第一活化工序; 在第一激活步骤之后加热炉子的同时用惰性气体替换活化气体的替换步骤; 以及第二激活步骤,在所述更换步骤之后恢复所述活化气体向所述炉的供给。 版权所有(C)2011,JPO&INPIT