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    • 1. 发明授权
    • Fuel cell stack system, channel structure, fuel cell, electrode and electronic device
    • 燃料电池堆系统,通道结构,燃料电池,电极和电子设备
    • US08871403B2
    • 2014-10-28
    • US12671598
    • 2008-07-30
    • Kengo MakitaShinichi UesakaYasunori Ohto
    • Kengo MakitaShinichi UesakaYasunori Ohto
    • H01M2/38H01M2/40H01M8/24H01M8/04H01M4/86H01M8/18H01M8/02
    • H01M8/188H01M4/8605H01M8/0247H01M8/0258H01M8/04559H01M8/04589H01M8/04753H01M8/0482H01M8/249Y02E60/528Y10T137/87265
    • A fuel cell stack system is configured to uniformly supply a fuel or an electrolytic solution to each of fuel cell elements, and an electronic device using the fuel cell stack system are provided. An electrolytic solution channel allowing an electrolytic solution to flow therethrough is arranged between a fuel electrode and an oxygen electrode, and a fuel channel allowing a fuel to flow therethrough is arranged outside of the fuel electrode. The electrolytic solution channels and the fuel channels of all fuel cell elements are connected in series to one another. That is, the fuel or the electrolytic solution emitted from an outlet of the fuel channel or the electrolytic solution channel of one fuel cell element enters into an inlet of the fuel channel or the electrolytic solution channel of the next fuel cell element through a connection channel. In addition, either or both of the electrolytic solution channels and the fuel channels of some or all of the fuel cell elements may be connected in series to one another.
    • 燃料电池堆系统被配置为将燃料或电解液均匀地供应到每个燃料电池元件,并且提供使用燃料电池堆系统的电子设备。 在燃料电极和氧电极之间设置允许电解液流过的电解溶液通道,并且允许燃料流过其的燃料通道设置在燃料电极的外部。 所有燃料电池元件的电解液通道和燃料通道彼此串联连接。 也就是说,从燃料通道的出口或一个燃料电池元件的电解液通道排出的燃料或电解液通过连接通道进入燃料通道或下一个燃料电池元件的电解液通道的入口 。 此外,电解液通道和一些或所有燃料电池元件的燃料通道中的一个或两者可以彼此串联连接。
    • 3. 发明授权
    • Electrochemical energy generating apparatus and method for driving the apparatus
    • 电化学能量发生装置及其驱动方法
    • US08071256B2
    • 2011-12-06
    • US11578762
    • 2005-05-12
    • Kengo MakitaShinichi Uesaka
    • Kengo MakitaShinichi Uesaka
    • H01M8/04H01M8/00H01M10/44H01M10/48
    • H01M8/04559H01M8/04447H01M8/04462H01M8/04589H01M8/04701H01M8/04753H01M8/04798H01M8/1011H01M2008/1095H01M2250/20H01M2250/30Y02B90/18Y02E60/523Y02T90/32
    • To provide an electrochemical energy generating apparatus which can regulate the operating conditions of an electrochemical device such as a fuel cell, according to a change of the internal properties of the device, achieving high energy density, and a method for driving the apparatus. An electrochemical energy generating apparatus and a method for driving the apparatus which includes: an electrochemical device (2) such as fuel cell, for generating electrochemical energy; a measurement section measuring the operational state of the electrochemical device (2); a regulation section regulating the operating conditions of the electrochemical device 2; and a control section (11) connected to the measurement section and the regulation section and controlling the operating conditions, wherein the control section (11) controls the regulation section based on a measurement obtained by the measurement section during the operation of the electrochemical device (2) to regulate the operating conditions through the regulation section.
    • 提供一种电化学能发生装置,其可以根据装置的内部特性的变化实现能够调节诸如燃料电池的电化学装置的操作条件,实现高能量密度,以及驱动该装置的方法。 一种用于驱动该装置的电化学能发生装置和方法,包括:用于产生电化学能的用于燃料电池的电化学装置(2); 测量电化学装置(2)的操作状态的测量部分; 调节电化学装置2的操作条件的调节部分; 以及控制部(11),连接到所述测量部和所述调节部并控制所述操作条件,其中所述控制部(11)基于在所述电化学装置的操作期间由所述测量部获得的测量来控制所述调节部( 2)通过调节部分规范运行状况。
    • 5. 发明申请
    • REACTANT DELIVERY SYSTEM AND REACTOR
    • 反应物输送系统和反应器
    • US20070274872A1
    • 2007-11-29
    • US11754777
    • 2007-05-29
    • KENGO MAKITATAKASHI TOMITA
    • KENGO MAKITATAKASHI TOMITA
    • F01N3/20H01M8/04
    • H01M8/04089H01M8/04186Y02E60/50Y02E60/523
    • [Object] The present invention provides a reactant delivery system capable of delivering reaction gas with good control in both space and time despite its simple construction that it can be assembled in mobile equipment, and also a reactor provided with the reactant delivery system. [Solving Means] The electrochemical energy generation system 50 has a fuel cell 10, a fuel delivery system 20, a measuring unit 30 for measuring an operation state of the fuel cell 10, and a control unit 40 for determining operation conditions on a basis of the results of the measurement. At an optimal rate determined by the control unit 40, the fuel is delivered in the form of gas from the fuel delivery system 20. The source fuel 21 such as methanol is introduced to between the backing portion 26 and the penetration and evaporation portion 27, the source fuel 21 evaporates into the fuel gas 13 from the surface of the penetration and evaporation portion 27.
    • 本发明提供一种反应物输送系统,其能够在空间和时间方面输送具有良好控制的反应气体,尽管其结构简单,其可以组装在移动设备中,并且还提供了具有反应物输送系统的反应器。 [解决方案]电化学能生成系统50具有燃料电池10,燃料输送系统20,用于测量燃料电池10的运行状态的测量单元30,以及基于以下方式确定运行条件的控制单元40 测量结果。 以由控制单元40确定的最佳速率,燃料以燃料输送系统20的气体的形式被输送。诸如甲醇的源燃料21被引入到背衬部分26和穿透和蒸发部分27之间, 源燃料21从渗透蒸发部27的表面蒸发成燃料气体13。
    • 7. 发明申请
    • FUEL CELL AND ELECTRODE FOR FUEL CELL, AND ELECTRONIC DEVICE
    • 用于燃料电池和电子设备的燃料电池和电极
    • US20130065151A1
    • 2013-03-14
    • US13126123
    • 2009-10-29
    • Kengo Makita
    • Kengo Makita
    • H01M8/02H01M8/24
    • H01M8/04276H01M8/0206H01M8/0213H01M8/0247H01M8/241H01M8/2459
    • In one example embodiment, an electronic device uses a fuel cell which reduces thickness of the overall fuel cell while reducing electrical resistance. In one example embodiment, a flow path that distributes an electrolyte is included between a fuel electrode and an oxygen electrode. In one example embodiment, a current collector on the fuel electrode side has a pair of current collector terminals in opposing-corner positions. Similarly, a current collector on the oxygen electrode side has a pair of current collector terminals in opposing-corner positions. The current collector terminals project outside the fuel cell. Thereby, connection of unit cells within the battery is facilitated, a monopolar plate structure becomes easier to use as the current collector, and distance of flowing current is shortened.
    • 在一个示例性实施例中,电子设备使用燃料电池,其减小总体燃料电池的厚度同时降低电阻。 在一个示例性实施例中,分配电解质的流路包括在燃料电极和氧电极之间。 在一个示例性实施例中,燃料电极侧上的集电器在相对的拐角位置具有一对集电器端子。 类似地,氧电极侧的集电体在相对的拐角位置具有一对集电体端子。 集电器端子在燃料电池外部投射。 由此,电池内的单位电池的连接容易,单极板结构变得容易用作集电体,并且流动电流的距离缩短。
    • 9. 发明申请
    • ELECTROLYTIC SOLUTION AND ELECTROCHEMICAL DEVICE
    • 电解液和电化学装置
    • US20110045385A1
    • 2011-02-24
    • US12675666
    • 2008-09-29
    • Kengo Makita
    • Kengo Makita
    • H01M8/02
    • H01M8/1004H01M4/92H01M8/04197H01M8/04291H01M2300/0005H01M2300/0011H01M2300/0014Y02E60/523
    • A fuel cell includes a fuel electrode, an oxygen electrode, an electrolytic solution, a fuel flow passage, etc. The fuel electrode and the oxygen electrode are composed of a catalyst layer, a diffusion layer, and a collector, respectively. A methanol aqueous solution, etc. is continuously supplied to the fuel flow passage. Catalyst particulates consisting of platinum, ruthenium, palladium, etc. are in a dispersed state in the electrolytic solution. If a portion of fuel, such as methanol, passes through the fuel electrode as unreacted, and diffuses through the electrolytic solution to move to the oxygen electrode, oxidation reduction reactions between the methanol, and the oxygen which moves to the fuel electrode from the oxygen electrode are efficiently caused by the catalyst particulates so as to cancel each other. From the above are provided an electrolytic solution with high crossover blocking performance suitable for electrochemical devices, such as direct methanol fuel cells, and an electrochemical device using the electrolytic solution.
    • 燃料电池包括燃料电极,氧电极,电解液,燃料流路等。燃料电极和氧电极分别由催化剂层,扩散层和集电体构成。 甲醇水溶液等连续供给到燃料流路。 由铂,钌,钯等组成的催化剂颗粒在电解液中处于分散状态。 如果一部分燃料如甲醇以未反应的方式通过燃料电极,并通过电解液扩散到氧电极,甲醇与从氧气移动到燃料电极的氧气之间的氧化还原反应 电极由催化剂微粒有效地引起,从而彼此抵消。 从上述提供了适用于电化学装置的高交叉阻断性能的电解溶液,例如直接甲醇燃料电池,以及使用电解液的电化学装置。