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    • 5. 发明专利
    • Flame-retardant substance decomposition burner
    • 阻燃剂物质分解燃烧器
    • JP2008039280A
    • 2008-02-21
    • JP2006213648
    • 2006-08-04
    • Koike Sanso Kogyo Co LtdTokyo Gas Chemicals Co LtdTokyo Gas Co Ltd小池酸素工業株式会社東京ガスケミカル株式会社東京瓦斯株式会社
    • SEO ATSUKOYAMASHITA SATOSHISUGIHARA KENICHIBOKU HEISHOKIN HEITETSUFUJIMORI KAZUAKIHOSHINO TETSURO
    • F23G7/06B01D53/46B01D53/68B01D53/70
    • F23G7/065
    • PROBLEM TO BE SOLVED: To provide a flame-retardant substance decomposition burner capable of continuing long-hour operation, without reducing processing efficiency, by performing detoxifying processing under a high combustion decomposition efficiency to process exhaust gas including a silane-based substance generating powder (such as SiO 2 ) by combustion decomposition such as SiH 4 , Si 2 H 6 , TEOS and SiF 4 and a fluorocarbon flame-retardant substance such as CF 4 , SF 6 and NF 3 . SOLUTION: This flame-retardant substance decomposition burner 1 is provided by installing a plurality of combustion burners 50 for forming a flame in a combustion cylinder body, and a plurality of process exhaust gas introducing ports 60 for introducing the process exhaust gas including a flame-retardant substance into the combustion cylinder body, on a peripheral side wall of the combustion cylinder body 2 having closed one end. The respective combustion burners 50 are installed by inclining the axis L1 to the downstream side so that respective jetting flames (f) can be converged at the substantially same point P1a on the central axis L of the combustion cylinder body 2. The respective process exhaust gas introducing ports 60 are installed by inclining the axis L2 to the downstream side so that an extension line of its axis L2 crosses at the substantially same point on the central axis L of the combustion cylinder body 2 in a point P2 on the upstream side of a converging area of the jetting flames (f). COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够在不降低加工效率的情况下持续长时间操作的阻燃物质分解燃烧器,通过在高燃烧分解效率下进行解毒处理来处理包括硅烷类物质的废气 通过燃烧分解产生SiH 4 ,Si 2 H 6 的TEOS粉末(如SiO 2 ),TEOS 和SiF SB>和碳氟化合物阻燃物质如CF 4 ,SF 6 和NF 3 。 解决方案:该阻燃物质分解燃烧器1通过在燃烧筒体中安装多个用于形成火焰的燃烧燃烧器50和多个工艺废气引入口60来设置,该工艺废气引入口60用于引入包括 在燃烧筒体2的具有封闭的一端的周边侧壁上的阻燃物质进入燃烧筒体。 各燃烧器50通过使轴线L1向下游侧倾斜而安装,使得各喷射火焰(f)能够在燃烧筒体2的中心轴线L上的大致相同的点P1a会聚。各工序废气 通过将轴线L2向下游侧倾斜,使其轴线L2的延长线在燃烧筒体2的中心轴线L上的基本相同的点上,在位于 喷射火焰的会聚区域(f)。 版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Power generation method and system by high temperature operating fuel cell
    • 高温运行燃料电池的发电方法与系统
    • JP2009117054A
    • 2009-05-28
    • JP2007285603
    • 2007-11-01
    • Masayoshi IshidaTokyo Gas Co Ltd東京瓦斯株式会社政義 石田
    • YAMASHITA SATOSHIYAKABE HISATAKAISHIDA MASAYOSHI
    • H01M8/06H01M8/00H01M8/04
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To aim at improvement of power generation efficiency by enhancing a fuel utilization rate of a high-temperature operating fuel cell as a whole, as well as a fuel utilization rate of a fuel cell as a whole including the high-temperature operating fuel cell and a fuel cell other than the high-temperature operating fuel cell. SOLUTION: A power generation method and a power generation system improves a fuel utilization rate and power regeneration efficiency of the high-temperature operating fuel cell as a whole, by cooling anode offgas of the high-temperature operating fuel cell, and then introducing it into a CO absorbent vessel to absorb and recover carbon monoxide, and by desorbing and regenerating the absorbed carbon monoxide and reusing it as fuel for the same or another high-temperature operating fuel cell. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的课题为了提高燃料电池整体的高温运转燃料利用率,以及作为燃料电池整体的燃料利用率的目的在于提高发电效率,包括 高温运行燃料电池和除了高温运行燃料电池之外的燃料电池。 解决方案:发电方法和发电系统通过冷却高温运行燃料电池的阳极废气,整体上提高了高温运行燃料电池的燃料利用率和动力再生效率,然后 将其引入CO吸收容器中以吸收和回收一氧化碳,并且通过解吸和再生吸收的一氧化碳并将其用作相同或另一高温操作燃料电池的燃料。 版权所有(C)2009,JPO&INPIT