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    • 1. 发明授权
    • Hydrogen generating apparatus and fuel cell power generation system
    • 氢发生装置和燃料电池发电系统
    • US08372551B2
    • 2013-02-12
    • US12078477
    • 2008-03-31
    • Jae-Hyoung GilJae-Hyuk JangHong-Ryul Lee
    • Jae-Hyoung GilJae-Hyuk JangHong-Ryul Lee
    • H01M8/06C25B1/02
    • H01M8/0656C25B1/04C25B9/00Y02E60/366
    • A hydrogen generating apparatus and a fuel cell power generation system are disclosed. The hydrogen generating apparatus may include an electrolyte bath, which contains an electrolyte solution; a first electrode, which is stacked on a surface inside the electrolyte bath, and which generates electrons; a moisture absorption layer, which is stacked on the first electrode, and which absorbs moisture from the electrolyte solution; and a second electrode, which is stacked on the moisture absorption layer, and which generates hydrogen using the electrons and the electrolyte solution. With this apparatus, the electrodes can be formed as thin films, whereby the number of electrodes can be increased and -the gaps between electrodes can be decreased, to increase the amount of hydrogen generation. Also, the flow of electrons can be controlled, using a control unit, in accordance to the amount of hydrogen or amount of electrical power required by the fuel cell.
    • 公开了氢生成装置和燃料电池发电系统。 氢生成装置可以包括含有电解质溶液的电解液浴; 第一电极,其堆叠在电解液槽内的表面上,并产生电子; 吸收层,其层叠在第一电极上,并从电解液吸收水分; 以及第二电极,其被层叠在吸湿层上,并且使用电子和电解液产生氢。 利用该装置,可以将电极形成为薄膜,从而可以增加电极的数量,并且可以减小电极之间的间隙,以增加氢的产生量。 此外,可以使用控制单元根据氢气的量或燃料电池所需的电力量来控制电子流。
    • 2. 发明申请
    • Hydrogen generating apparatus and fuel cell power generation system
    • 氢发生装置和燃料电池发电系统
    • US20080268307A1
    • 2008-10-30
    • US12078477
    • 2008-03-31
    • Jae-Hyoung GilJae-Hyuk JangHong-Ryul Lee
    • Jae-Hyoung GilJae-Hyuk JangHong-Ryul Lee
    • H01M8/06C25B9/00
    • H01M8/0656C25B1/04C25B9/00Y02E60/366
    • A hydrogen generating apparatus and a fuel cell power generation system are disclosed. The hydrogen generating apparatus may include an electrolyte bath, which contains an electrolyte solution; a first electrode, which is stacked on a surface inside the electrolyte bath, and which generates electrons; a moisture absorption layer, which is stacked on the first electrode, and which absorbs moisture from the electrolyte solution; and a second electrode, which is stacked on the moisture absorption layer, and which generates hydrogen using the electrons and the electrolyte solution. With this apparatus, the electrodes can be formed as thin films, whereby the number of electrodes can be increased and -the gaps between electrodes can be decreased, to increase the amount of hydrogen generation. Also, the flow of electrons can be controlled, using a control unit, in accordance to the amount of hydrogen or amount of electrical power required by the fuel cell.
    • 公开了氢生成装置和燃料电池发电系统。 氢生成装置可以包括含有电解质溶液的电解液浴; 第一电极,其堆叠在电解液槽内的表面上,并产生电子; 吸收层,其层叠在第一电极上,并从电解液吸收水分; 以及第二电极,其被层叠在吸湿层上,并且使用电子和电解液产生氢。 利用该装置,可以将电极形成为薄膜,从而可以增加电极的数量,并且可以减小电极之间的间隙,以增加氢的产生量。 此外,可以使用控制单元根据氢气的量或燃料电池所需的电力量来控制电子流。
    • 4. 发明授权
    • Hydrogen generating apparatus and fuel cell power generation system
    • 氢发生装置和燃料电池发电系统
    • US08435685B2
    • 2013-05-07
    • US12213364
    • 2008-06-18
    • Hye-Yeon ChaYoung-Soo OhJae-Hyuk JangChang-Ryul JungJae-Hyoung Gil
    • Hye-Yeon ChaYoung-Soo OhJae-Hyuk JangChang-Ryul JungJae-Hyoung Gil
    • H01M8/06
    • H01M8/02C01B3/08C01B2203/066H01M8/065Y02E60/36
    • A hydrogen generating apparatus can include an absorbent layer that absorbs an aqueous solution, a metal membrane deposited on either side of the absorbent layer such that the absorbent layer is interposed between the metal membranes, and a support layer formed on one side of one of the metal membranes that transports hydrogen generated by a reaction between the aqueous solution and the metal membrane. A batch type reaction may thus be implemented between the aqueous solution and the metal membranes, so that the reaction can be controlled to provide an even rate of hydrogen generation. Possible disturbances to the reaction resulting from by-products can be prevented, and since there is no additional equipment required, the volume and weight of the fuel cell power generation system can be reduced, and the extra power consumption by the additional equipment can be avoided.
    • 氢生成装置可以包括吸收水溶液的吸收层,沉积在吸收层的任一侧上的金属膜,使得吸收层插入在金属膜之间,并且形成在其中一个的一侧上的支撑层 输送由水溶液和金属膜之间的反应产生的氢的金属膜。 因此,可以在水溶液和金属膜之间实施间歇式反应,从而可以控制反应以提供均匀的氢气产生速率。 可以防止由副产物引起的反应的干扰,并且由于不需要额外的设备,因此可以减少燃料电池发电系统的体积和重量,并且可以避免附加设备的额外功率消耗 。
    • 8. 发明授权
    • Hydrogen generating apparatus and fuel cell power generation system
    • 氢发生装置和燃料电池发电系统
    • US08303782B2
    • 2012-11-06
    • US12421192
    • 2009-04-09
    • Bo-Sung KuJae-Hyuk JangKyoung-Soo ChaeJae-Hyoung Gil
    • Bo-Sung KuJae-Hyuk JangKyoung-Soo ChaeJae-Hyoung Gil
    • C25B9/18
    • H01M8/186H01M8/0656Y02E60/366Y02E60/528
    • A hydrogen generating apparatus is disclosed. The hydrogen generating apparatus in accordance with an embodiment of the present invention includes: a first hydrogen generating unit, which has a first electrode generating hydrogen by decomposing an electrolyte aqueous solution; a second hydrogen generating unit, which has a second electrode that is placed adjacent to the first hydrogen generating unit and surface thereof is formed with a super absorbent polymer that is gelled when water is absorbed; a solution separation membrane interposed between the first hydrogen generating unit and the second hydrogen generating unit; a reactor accommodating the first hydrogen generating unit, the second hydrogen generating unit and the solution separation membrane; and a hydrogen vent being formed on one side of the reactor, which is adjacent to the second hydrogen generating unit.
    • 公开了一种氢生成装置。 根据本发明实施例的氢生成装置包括:第一氢生成单元,其具有通过分解电解质水溶液而产生氢的第一电极; 具有与第一氢生成单元及其表面相邻的第二电极的第二氢生成单元形成有在吸收水时凝胶化的高吸水性聚合物; 介于所述第一氢生成单元和所述第二氢生成单元之间的溶液分离膜; 容纳第一氢生成单元,第二氢生成单元和溶液分离膜的反应器; 并且在所述反应器的与所述第二氢生成单元相邻的一侧上形成有氢气排出口。
    • 9. 发明申请
    • Fuel cell power generation system, method of controlling hydrogen generating quantity and recorded medium recorded program performing the same
    • 燃料电池发电系统,控制氢发生量的方法和执行该氢发生量的记录介质记录程序
    • US20110104579A1
    • 2011-05-05
    • US12929233
    • 2011-01-10
    • Jae-Hyoung GilJae-Hyuk JangArunabha KunduSung-Han KimKyoungsoo Chae
    • Jae-Hyoung GilJae-Hyuk JangArunabha KunduSung-Han KimKyoungsoo Chae
    • H01M8/04H01M8/06
    • H01M8/186H01M8/0612Y02E60/324Y02E60/366Y02E60/528
    • A fuel cell power generation system including: a hydrogen generating apparatus, controlling an amount of hydrogen generation by controlling an on/off status of a switch connected between electrodes; and a fuel cell, being supplied with hydrogen generated by the hydrogen generating apparatus and producing a direct current by converting chemical energy of the hydrogen to electrical energy. The hydrogen generating apparatus used in the system preferably includes an electrolyzer, filled with an aqueous electrolyte solution containing hydrogen ions; a first electrode, accommodated in the electrolyzer, submerged in the aqueous electrolyte solution, and generating electrons; a second electrode, accommodated in the electrolyzer, submerged in the aqueous electrolyte solution, receiving the electrons to generate hydrogen; a switch, located between the first electrode and the second electrode; a meter, measuring an amount of hydrogen generation or an output of a fuel cell; and a switch controller, receiving a set value, comparing the amount of hydrogen generation or the output of the fuel cell measured by the meter with the set value, and controlling an on/off status of the switch.
    • 一种燃料电池发电系统,包括:氢生成装置,通过控制连接在电极之间的开关的接通/断开状态来控制氢的产生量; 以及燃料电池,供给由氢生成装置产生的氢气,并通过将氢的化学能转化为电能产生直流电。 在该系统中使用的氢发生装置优选包括填充有含有氢离子的水性电解液的电解槽, 容纳在电解器中的第一电极浸没在电解质水溶液中并产生电子; 容纳在电解槽中的第二电极浸没在电解质水溶液中,接收电子以产生氢; 位于所述第一电极和所述第二电极之间的开关; 测量氢气产生量或燃料电池的输出的仪表; 以及开关控制器,接收设定值,将由所述仪表测量的氢气产生量或所述燃料电池的输出与所述设定值进行比较,以及控制所述开关的接通/断开状态。