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    • 2. 发明申请
    • Catalytic Combustor
    • 催化燃烧器
    • US20080193887A1
    • 2008-08-14
    • US11911431
    • 2006-06-29
    • Karuki HamadaTadashi ShojiNobuo Sakiyama
    • Karuki HamadaTadashi ShojiNobuo Sakiyama
    • F23D14/18H01M8/04
    • F23C13/00F23C2900/13001F23C2900/9901H01M8/0662
    • A catalytic combustor is configured to accelerate the combustion processing of anode off gas in the combustor to reduce the amount of unburned hydrogen discharged to the outside of the combustor. Anode off gas and cathode off gas discharged from the fuel cell are fed into the catalytic combustor and combusted with a catalyst. Ventilation air is supplied from inside of the fuel cell is also supplied to the catalytic combustor. A portion of the catalytic combustor located upstream of the catalyst inside is divided into an upper flow path and a lower flow path by a partitioning plate and a gas flow passage is provided upstream of the upper and lower flow paths. The cathode off gas is supplied to the gas flow passage.
    • 催化燃烧器被配置为加速燃烧器中的阳极废气的燃烧处理,以减少排放到燃烧器外部的未燃烧氢的量。 将从燃料电池排出的气体和阴极废气的阳极送入催化燃烧器并与催化剂一起燃烧。 从燃料电池内部供给的通风空气也被供给到催化燃烧器。 位于催化剂内部上游的催化燃烧器的一部分通过分隔板分成上流路和下流路,气流通道设置在上流路和下流道的上游。 阴极废气被供给到气体流路。
    • 4. 发明授权
    • Catalytic combustor
    • 催化燃烧器
    • US07713056B2
    • 2010-05-11
    • US11911431
    • 2006-06-29
    • Karuki HamadaTadashi ShojiNobuo Sakiyama
    • Karuki HamadaTadashi ShojiNobuo Sakiyama
    • F23D14/18F23N5/00
    • F23C13/00F23C2900/13001F23C2900/9901H01M8/0662
    • A catalytic combustor is configured to accelerate the combustion processing of anode off gas in the combustor to reduce the amount of unburned hydrogen discharged to the outside of the combustor. Anode off gas and cathode off gas discharged from the fuel cell are fed into the catalytic combustor and combusted with a catalyst. Ventilation air is supplied from inside of the fuel cell is also supplied to the catalytic combustor. A portion of the catalytic combustor located upstream of the catalyst inside is divided into an upper flow path and a lower flow path by a partitioning plate and a gas flow passage is provided upstream of the upper and lower flow paths. The cathode off gas is supplied to the gas flow passage.
    • 催化燃烧器被配置为加速燃烧器中的阳极废气的燃烧处理,以减少排放到燃烧器外部的未燃烧氢的量。 将从燃料电池排出的气体和阴极废气的阳极送入催化燃烧器并与催化剂一起燃烧。 从燃料电池内部供给的通风空气也被供给到催化燃烧器。 位于催化剂内部上游的催化燃烧器的一部分通过分隔板分成上流路和下流路,气流通道设置在上流路和下流道的上游。 阴极废气被供给到气体流路。
    • 7. 发明申请
    • Fuel cell system
    • 燃料电池系统
    • US20050136302A1
    • 2005-06-23
    • US10926387
    • 2004-08-26
    • Tadashi ShojiKaruki Hamada
    • Tadashi ShojiKaruki Hamada
    • H01M8/10H01M8/04H01M8/06
    • H01M8/04373H01M8/04089H01M8/04738H01M8/04753H01M8/04776H01M8/04955H01M8/0662
    • A fuel cell generates electric power by the electrochemical reaction of hydrogen and the oxygen in air. After the hydrogen discharged without being consumed by an anode is burned in a burner, it is discharged out of a fuel cell system. Therefore, the fuel cell system has a cathode switch valve in the middle of the cathode line, and when the fuel cell system stops, non-saturated air of a compressor bypasses the fuel cell, and supplies the air to the catalytic burner. Although the cathode exhaust gas of saturated water vapor is circulating to the catalytic burner at the time of regular operation of the fuel cell, the non-saturated air which bypasses the fuel cell and is supplied can replace the inside of the catalytic burner with dry air. Therefore, the amount of water vapor in the catalytic burner is decreased at the time of a stop, and the catalyst is quickly activated at the time of re-starting.
    • 燃料电池通过氢气和空气中的氧气的电化学反应产生电力。 在不被阳极消耗的氢气排放在燃烧器中燃烧之后,其被排出燃料电池系统。 因此,燃料电池系统在阴极管线的中央具有阴极开关阀,当燃料电池系统停止时,压缩机的非饱和空气绕过燃料电池,并将空气供给催化燃烧器。 尽管在燃料电池正常工作时,饱和水蒸气的阴极废气循环到催化燃烧器,但绕过燃料电池并供应的非饱和空气可以用干燥空气替代催化燃烧器的内部 。 因此,催化燃烧器中的水蒸气量在停止时降低,催化剂在再起动时迅速活化。