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    • 31. 发明授权
    • Method for operating fuel-cell electricity-generating device
    • 操作燃料电池发电装置的方法
    • US08012640B2
    • 2011-09-06
    • US12484386
    • 2009-06-15
    • Masataka OzekiAkinari NakamuraShinji Miyauchi
    • Masataka OzekiAkinari NakamuraShinji Miyauchi
    • H01M8/04
    • H01M8/0612H01M8/04022H01M8/04373H01M8/04619H01M8/0494
    • A stable and high reliability fuel cell electricity-generating device capable of generating electricity even in the case of sudden drop of load power. A fuel cell generating electric power from a fuel and an oxidizer, a fuel processor producing fuel to be supplied into the fuel cell from an electricity-generating material, a combustion device combusting a residual fuel gas unconsumed in the fuel cell to raise the temperature of the fuel processor, and an electric power generation instructing means of determining the electric power generated by the fuel cell, wherein when the electric power generation instructing means decreases the electric power generated by the fuel cell depending on the decrease of load power to be supplied, the rate at which the generated electric power is decreased is made different depending on the change of the temperature of the fuel processor.
    • 一种稳定且高可靠性的燃料电池发电装置,即使在负载功率突然下降的情况下也能够发电。 从燃料和氧化剂产生电力的燃料电池,从发电材料供给到燃料电池中的燃料的燃料处理器,燃烧未燃烧在燃料电池中的残留燃料气体的燃烧装置,以提高燃料电池的温度 燃料处理器和确定燃料电池产生的电力的发电指示装置,其中当发电指示装置根据要供应的负载功率的减小来减少由燃料电池产生的电力时, 根据燃料处理器的温度变化,使发电电力降低的速度变化。
    • 32. 发明授权
    • Power generation system
    • 发电系统
    • US07418315B2
    • 2008-08-26
    • US10565476
    • 2004-07-23
    • Akinari NakamuraMasataka OzekiYoshikazu TanakaTakashi Nishikawa
    • Akinari NakamuraMasataka OzekiYoshikazu TanakaTakashi Nishikawa
    • H02J3/00G05B11/01H01M8/00H01M8/04
    • H01M8/04955H01M8/04223H01M8/04298H01M8/04537H01M8/0612H01M16/006H02J3/28H02J2001/004Y02P90/40
    • A power generation system (200) of the present invention comprises a power generation portion (202) configured to generate power, a load power detecting means (205) configured to detect a load power supplied from a power source including the power generation portion to a load, an operation stop determination means (209) configured to stop a power generation operation of the power generation portion based on the load power detected by the load power detecting means and a stop condition; and a stop condition setting means (220) configured to set the stop condition, wherein the stop condition setting means sets different stop conditions in a plurality of time periods, and wherein the operation stop determination means stops the power generation operation of the power generation portion based on each of the different stop conditions set by the stop condition setting means and the load power detected by the load power detecting means.
    • 本发明的发电系统(200)包括被配置为产生电力的发电部分(202),负载功率检测装置(205),被配置为检测从包括发电部分的电源提供的负载功率到 运行停止判定单元,其基于由负载功率检测单元检测出的负载功率和停止状态来停止发电部的发电动作; 以及停止条件设定装置,其被配置为设置停止条件,其中所述停止条件设定装置在多个时间段中设定不同的停止条件,并且其中所述操作停止确定装置停止所述发电部分的发电操作 基于由停止条件设定单元设定的各个停止条件和由负载功率检测单元检测出的负载功率。
    • 33. 发明申请
    • Fuel Cell System
    • 燃料电池系统
    • US20070212582A1
    • 2007-09-13
    • US11547562
    • 2005-08-04
    • Hideo OharaMasataka OzekiAkinari NakamuraYoshikazu TanakaShigeki YasudaTakashi Nishikawa
    • Hideo OharaMasataka OzekiAkinari NakamuraYoshikazu TanakaShigeki YasudaTakashi Nishikawa
    • H01M8/04
    • H01M8/04156H01M8/04022H01M8/04223H01M8/04228H01M8/0612H01M8/0662
    • The object of the invention is to provide a fuel cell system capable of performing appropriate, expeditious shutdown operation without use of an auxiliary power source and inert gas (nitrogen gas) in the event of an emergency stop situation such as a power failure. The fuel cell system (100) comprises: a fuel cell (12) configured to generate power by consuming a fuel gas and having an outlet port (104) through which the fuel gas flows out; a moisture removal unit (15) configured to remove moisture contained in the fuel gas that has been sent through the outlet port (104); a burner (16) located downstream of the moisture removal unit (15), for combusting the fuel gas; and a gas pipe on-off valve (18) configured to open and close a pipe (106) that makes the moisture removal unit (15) and the burner (16) communicate with each other, and the fuel cell system (100) is designed such that the gas pipe on-off valve (18) closes when the power generation stops.
    • 发明内容本发明的目的在于提供一种燃料电池系统,其能够在诸如停电之类的紧急停止情况下,不使用辅助电源和惰性气体(氮气)来执行适当的快速关机操作。 燃料电池系统(100)包括:燃料电池(12),其被配置为通过消耗燃料气体并具有燃料气体通过其流出的出口(104)来发电; 除湿单元(15),其被配置为去除通过所述出口(104)发送的燃料气体中包含的水分; 位于除湿单元(15)下游的燃烧器(16),用于燃烧燃料气体; 以及燃气管开闭阀(18),被配置为打开和关闭使除湿单元(15)和燃烧器(16)彼此连通的管道(106),并且燃料电池系统(100)是 被设计为使得当发电停止时,燃气管开关阀(18)关闭。
    • 37. 发明授权
    • Solid polymer electrolyte fuel cell cogeneration system
    • 固体聚合物电解质燃料电池热电联产系统
    • US06420060B1
    • 2002-07-16
    • US09572166
    • 2000-05-17
    • Yoshiaki YamamotoMasataka OzekiAkinari Nakamura
    • Yoshiaki YamamotoMasataka OzekiAkinari Nakamura
    • H01M804
    • H01M8/04029H01M8/04014Y10S429/90
    • The present invention provides a fuel cell cogeneration system which can stably supply hot water at high temperature shortly after the system starts to operate. The cogeneration system comprises a solid polymer electrolyte fuel cell system for generating electric power and heat by reacting fuel gas with an oxidant gas, a cooling water circulating path for circulating cooling water for recovering heat generated by the fuel cell system, a storage tank for reserving hot water to be supplied to an external hot-water supply load, a heat exchanger for transferring heat recovered by the cooling water to water in the storage tank, and a heating path connected to the storage tank in order to pass water in the storage tank through the heat exchanger, the heating path having the heat exchanger, wherein a water inlet of the heating path and a water filling port for supplying water to the storage tank from the outside of the system are formed both at a lower part of the storage tank, and wherein a water outlet of the heating path and a hot-water supply port for supplying hot water in the storage tank to the external hot-water supply load are provided both at an upper part of the storage tank.
    • 本发明提供一种能够在系统开始运转后不久稳定地供给高温热水的燃料电池热电联供系统。 热电联产系统包括固体聚合物电解质燃料电池系统,用于通过使燃料气体与氧化剂气体反应产生电力和热量;冷却水循环路径,用于循环冷却水以回收由燃料电池系统产生的热量;储罐,用于储存 供给外部热水供给负载的热水,将由冷却水回收的热量传递给储存箱内的水的热交换器,以及与储罐连接的加热路径,以使储存罐内的水通过 通过热交换器,具有热交换器的加热路径,其特征在于,在所述储罐的下部形成有从所述系统的外部向所述储罐供水的所述加热路径的入水口和供水口 并且其中设置有加热路径的出水口和用于将热水供应到外部热水供应负载的热水供应口两者 在储罐的上部。
    • 38. 发明授权
    • System and method of fuel cell power generation
    • 燃料电池发电系统及方法
    • US08486572B2
    • 2013-07-16
    • US11708460
    • 2007-02-21
    • Akinari NakamuraMasataka OzekiShinji MiyauchiTomonori Asou
    • Akinari NakamuraMasataka OzekiShinji MiyauchiTomonori Asou
    • H01M8/02H01M8/06H01M8/18
    • H01M8/04231H01M8/0258H01M8/04223H01M8/04228H01M8/0618H01M8/0675
    • A fuel cell power generation system includes a fuel gas generating means for generating a hydrogen-rich fuel gas from a source material having, as a main ingredient, a compound containing carbon and hydrogen; a source material supply source for supplying a source material to the fuel gas generating means; a fuel gas supply means for supplying the fuel gas from the fuel gas generating means to a fuel gas flow channel of a fuel cell at which channel a fuel electrode is placed; and a bypass means for supplying the source material from the source material supply source to the fuel gas flow channel, bypassing the fuel gas generating means. At least at one of time periods before start of and after end of power generation, the source material, as a displacement gas, is injected into the fuel gas flow channel of the fuel cell via the bypass means.
    • 燃料电池发电系统包括:燃料气体发生装置,用于从作为主要成分的含有碳和氢的化合物的源材料产生富氢燃料气体; 用于将源材料供应到燃料气体发生装置的源材料供应源; 燃料气体供给装置,用于将来自燃料气体发生装置的燃料气体供应到燃料电池的放置通道的燃料电池的燃料气体流路; 以及旁路装置,用于将来自源材料供给源的源材料旁路到燃料气体生成装置的燃料气体流路。 至少在发电开始之前和之后的时间段中的一个时间段,作为置换气体的源材料经由旁路装置注入到燃料电池的燃料气体流动通道中。