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    • 3. 发明授权
    • System and method for controlling gas transport in a fuel cell
    • 用于控制燃料电池中的气体输送的系统和方法
    • US06908500B2
    • 2005-06-21
    • US10118275
    • 2002-04-08
    • Allison M. FisherJoseph W. Bostaph
    • Allison M. FisherJoseph W. Bostaph
    • H01M8/10H01M8/04H01M8/06B01D53/22B01D19/00
    • H01M8/0662
    • A system and method for controlling or otherwise effectively parameterizing the transport of dissolved, retained and/or exhausted gaseous byproducts generated in the operation of a fuel cell device comprises a gas permeable membrane (320) for substantially in-line, gravity-independent partitioning of, for example, carbon dioxide (710) in a DMFC device (700). Various features and parameters of the present invention may be suitably adapted to optimize the gas transport function for any specific fuel cell design. The present invention provides improved control of the rate of removal of gaseous byproducts from a fuel cell fuel solution in addition to improved application of fuel cell technology to power inter alia portable electronic devices.
    • 用于控制或以其他方式有效地参数化在燃料电池装置的操作中产生的溶解的,保留的和/或排出的气态副产物的运输的系统和方法包括气体可渗透膜(320),用于基本上在线,重力独立的 例如,DMFC装置(700)中的二氧化碳(710)。 本发明的各种特征和参数可适用于优化用于任何特定燃料电池设计的气体输送功能。 本发明除了改进燃料电池技术的应用之外还提供了对来自燃料电池燃料溶液的气态副产品的除去速率的改进的控制,以便特别为便携式电子设备供电。
    • 4. 发明授权
    • Direct methanol fuel cell including a water recovery and recirculation system and method of fabrication
    • 直接甲醇燃料电池,包括水回收和再循环系统和制造方法
    • US06696195B2
    • 2004-02-24
    • US09925949
    • 2001-08-09
    • Jeanne S. PavioJoseph W. BostaphAllison M. Fisher
    • Jeanne S. PavioJoseph W. BostaphAllison M. Fisher
    • H01M804
    • H01M8/04097H01M8/04156H01M8/1009Y02E60/523Y10T29/49108
    • A fuel cell device and method of forming the fuel cell device including a base portion, formed of a singular body, and having a major surface. At least one fuel cell membrane electrode assembly is formed on the major surface of the base portion and includes an electrically conductive hydrophilic material for the wicking of reaction water and providing for electrical conduction to a current collector. A fluid supply channel including a mixing chamber is defined in the base portion and communicating with the fuel cell membrane electrode assembly for supplying a fuel-bearing fluid to the membrane electrode assembly. An exhaust channel including a water recovery and recirculation channel is defined in the base portion and communicating with the membrane electrode assembly and the electrically conductive hydrophilic material. The membrane electrode assembly and the cooperating fluid supply channel and cooperating exhaust channel forming a single fuel cell assembly.
    • 一种形成燃料电池装置的燃料电池装置及方法,该燃料电池装置包括由单体形成并具有主表面的基部。 至少一个燃料电池膜电极组件形成在基部的主表面上,并且包括导电的亲水材料,用于芯吸反应水并提供对集电器的导电。 包括混合室的流体供给通道限定在基部中,并与用于将含油流体供应到膜电极组件的燃料电池膜电极组件连通。 包括水回收和再循环通道的排气通道限定在基部中并与膜电极组件和导电亲水材料连通。 膜电极组件和配合流体供应通道以及协同排气通道形成单个燃料电池组件。