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    • 5. 发明授权
    • Fuel cell power generating system and fuel cell power generating system operating method
    • 燃料电池发电系统和燃料电池发电系统运行方式
    • US08313869B2
    • 2012-11-20
    • US12676456
    • 2008-08-25
    • Yukimune KaniKunihiro UkaiAkira Maenishi
    • Yukimune KaniKunihiro UkaiAkira Maenishi
    • H01M8/06
    • H01M8/0675H01M8/04388H01M8/04425H01M8/04604H01M8/04686H01M8/04753H01M8/04776H01M8/0612
    • A fuel cell power generation system 100 includes a mechanism for detachably holding an adsorptive desulfurization section 5 for adsorbing a sulfur component in a hydrocarbon-based raw material; a reformer for generating hydrogen-containing gas from the raw material which has passed the adsorptive desulfurization section 5; a fuel cell 8 for generating power using the hydrogen-containing gas as a fuel; a raw material supply section 4 for controlling a flow rate of the raw material to be supplied to the adsorptive desulfurization section 5; and an operating control section 16 for controlling a behavior of the raw material supply section 4 and a behavior of the fuel cell 8. When the adsorptive desulfurization section 5 is detected to have been exchanged, the operating control section 16 controls at least one of the behavior of the raw material supply section 4 and the behavior of the fuel cell 8, such that a ratio of the flow rate with respect to a target value for power generation by the fuel cell 8 is temporarily higher than the ratio of the flow rate with respect to the target value for the power generation before the exchange.
    • 燃料电池发电系统100包括用于可拆卸地容纳用于吸附烃类原料中的硫成分的吸附脱硫部5的机构, 用于从已经通过吸附脱硫部5的原料产生含氢气体的重整器; 用于使用含氢气体作为燃料发电的燃料电池8; 用于控制供给到吸附脱硫部5的原料的流量的原料供给部4; 以及用于控制原料供给部4的行为和燃料电池8的动作的操作控制部16.当检测到吸附脱硫部5被更换时,操作控制部16控制至少一个 原料供给部4的行为和燃料电池8的动作,使得燃料电池8的流量相对于发电目标值的比率暂时高于燃料电池8的流量与 尊重交换前发电的目标值。
    • 6. 发明申请
    • FUEL CELL POWER GENERATING SYSTEM AND FUEL CELL POWER GENERATING SYSTEM OPERATING METHOD
    • 燃料电池发电系统和燃料电池发电系统运行方法
    • US20100203406A1
    • 2010-08-12
    • US12676456
    • 2008-08-25
    • Yukimune KaniKunihiro UkaiAkira Maenishi
    • Yukimune KaniKunihiro UkaiAkira Maenishi
    • H01M8/06
    • H01M8/0675H01M8/04388H01M8/04425H01M8/04604H01M8/04686H01M8/04753H01M8/04776H01M8/0612
    • A fuel cell power generation system 100 includes a mechanism for detachably holding an adsorptive desulfurization section 5 for adsorbing a sulfur component in a hydrocarbon-based raw material; a reformer for generating hydrogen-containing gas from the raw material which has passed the adsorptive desulfurization section 5; a fuel cell 8 for generating power using the hydrogen-containing gas as a fuel; a raw material supply section 4 for controlling a flow rate of the raw material to be supplied to the adsorptive desulfurization section 5; and an operating control section for controlling a behavior of the raw material supply section 4 and a behavior of the fuel cell 8. When the adsorptive desulfurization section 5 is detected to have been exchanged, the operating control section 16 controls at least one of the behavior of the raw material supply section 4 and the behavior of the fuel cell 8, such that a ratio of the flow rate with respect to a target value for power generation by the fuel cell 8 is temporarily higher than the ratio of the flow rate with respect to the target value for the power generation before the exchange.
    • 燃料电池发电系统100包括用于可拆卸地容纳用于吸附烃类原料中的硫成分的吸附脱硫部5的机构, 用于从已经通过吸附脱硫部5的原料产生含氢气体的重整器; 用于使用含氢气体作为燃料发电的燃料电池8; 用于控制供给到吸附脱硫部5的原料的流量的原料供给部4; 以及用于控制原料供给部4的行为和燃料电池8的动作的操作控制部。当检测到吸附脱硫部5被更换时,操作控制部16控制至少一个行为 原料供给部4的动作和燃料电池8的动作相对于燃料电池8发电的目标值的比例暂时高于相对于燃料电池8的流量比 到交换前发电的目标值。
    • 8. 发明授权
    • Hydrogen generator and startup method thereof
    • 氢发生器及其启动方法
    • US08501102B2
    • 2013-08-06
    • US13062471
    • 2010-08-26
    • Akira MaenishiYukimune KaniYuji Mukai
    • Akira MaenishiYukimune KaniYuji Mukai
    • G05D23/00B01J8/00
    • H01M8/0618C01B3/384C01B3/48C01B2203/0233C01B2203/0283C01B2203/044C01B2203/066C01B2203/0816C01B2203/0822C01B2203/0827C01B2203/1058C01B2203/107C01B2203/1241C01B2203/1288C01B2203/1604C01B2203/1619C01B2203/1685C01B2203/82H01M8/04373H01M8/04776H01M8/0625H01M8/0631Y02P20/128
    • A hydrogen generator is described, which comprises: a material supply device (4); a water supply device (5); an evaporator (10); a reforming catalyst layer (1) for generating reformed gas; a CO removing catalyst layer (2) configured to reduce the amount of carbon monoxide contained in the reformed gas generated by the reforming catalyst layer (1); a combustor (3) for heating the reforming catalyst layer (1) and the CO removing catalyst layer (2); a reforming temperature detector (9) for detecting the temperature of the reforming catalyst layer (1); a heater (7) for heating the CO removing catalyst layer (2); a CO removing temperature detector (8) for detecting the temperature of the CO removing catalyst layer (2); and a controller (16) configured to perform control such that the heater (7) heats the CO removing catalyst layer at the time of start-up and such that if the temperature detected by the CO removing temperature detector (8) becomes greater than or equal to a first specified value, the combustor (3) heats the reforming catalyst layer (1) and the CO removing catalyst layer (2), and if the temperature detected by the reforming temperature detector (9) becomes greater than or equal to a second specified value, the water supply device (5) starts supplying of water.
    • 描述了氢发生器,其包括:材料供应装置(4); 供水装置(5); 蒸发器(10); 用于产生重整气体的重整催化剂层(1); 配置为减少由所述重整催化剂层(1)产生的重整气体中所含的一氧化碳的量的CO除去催化剂层(2); 用于加热重整催化剂层(1)和CO去除催化剂层(2)的燃烧器(3); 用于检测重整催化剂层(1)的温度的重整温度检测器(9); 用于加热所述CO除去催化剂层(2)的加热器(7); 用于检测除氧催化剂层(2)的温度的CO去除温度检测器(8); 以及控制器(16),被配置为执行控制,使得加热器(7)在启动时加热CO去除催化剂层,并且如果由CO去除温度检测器(8)检测到的温度变得大于或等于 等于第一规定值时,燃烧器(3)加热重整催化剂层(1)和CO除去催化剂层(2),如果由重整温度检测器(9)检测的温度变得大于或等于 第二规定值,供水装置(5)开始供水。
    • 9. 发明申请
    • HYDROGEN GENERATOR AND STARTUP METHOD THEREOF
    • 氢发生器及其启动方法
    • US20110206562A1
    • 2011-08-25
    • US13062471
    • 2010-08-26
    • Akira MaenishiYukimune KaniYuji Mukai
    • Akira MaenishiYukimune KaniYuji Mukai
    • G05D23/00B01J8/02C01B3/02
    • H01M8/0618C01B3/384C01B3/48C01B2203/0233C01B2203/0283C01B2203/044C01B2203/066C01B2203/0816C01B2203/0822C01B2203/0827C01B2203/1058C01B2203/107C01B2203/1241C01B2203/1288C01B2203/1604C01B2203/1619C01B2203/1685C01B2203/82H01M8/04373H01M8/04776H01M8/0625H01M8/0631Y02P20/128
    • A hydrogen generator is described, which comprises: a material supply device (4); a water supply device (5); an evaporator (10); a reforming catalyst layer (1) for generating reformed gas; a CO removing catalyst layer (2) configured to reduce the amount of carbon monoxide contained in the reformed gas generated by the reforming catalyst layer (1); a combustor (3) for heating the reforming catalyst layer (1) and the CO removing catalyst layer (2); a reforming temperature detector (9) for detecting the temperature of the reforming catalyst layer (1); a heater (7) for heating the CO removing catalyst layer (2); a CO removing temperature detector (8) for detecting the temperature of the CO removing catalyst layer (2); and a controller (16) configured to perform control such that the heater (7) heats the CO removing catalyst layer at the time of start-up and such that if the temperature detected by the CO removing temperature detector (8) becomes greater than or equal to a first specified value, the combustor (3) heats the reforming catalyst layer (1) and the CO removing catalyst layer (2), and if the temperature detected by the reforming temperature detector (9) becomes greater than or equal to a second specified value, the water supply device (5) starts supplying of water.
    • 描述了氢发生器,其包括:材料供应装置(4); 供水装置(5); 蒸发器(10); 用于产生重整气体的重整催化剂层(1); 配置为减少由所述重整催化剂层(1)产生的重整气体中所含的一氧化碳的量的CO除去催化剂层(2); 用于加热重整催化剂层(1)和CO去除催化剂层(2)的燃烧器(3); 用于检测重整催化剂层(1)的温度的重整温度检测器(9); 用于加热所述CO除去催化剂层(2)的加热器(7); 用于检测除氧催化剂层(2)的温度的CO去除温度检测器(8); 以及控制器(16),被配置为执行控制,使得加热器(7)在启动时加热CO去除催化剂层,并且如果由CO去除温度检测器(8)检测到的温度变得大于或等于 等于第一规定值时,燃烧器(3)加热重整催化剂层(1)和CO除去催化剂层(2),如果由重整温度检测器(9)检测的温度变得大于或等于 第二规定值,供水装置(5)开始供水。