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    • 4. 发明申请
    • Regenerative fuel cell/electrolyzer stack
    • 再生燃料电池/电解堆
    • US20070116996A1
    • 2007-05-24
    • US11329904
    • 2006-01-11
    • Thomas PavlikJames Braun
    • Thomas PavlikJames Braun
    • H01M8/18H01M8/24H01M8/10H01M8/04
    • H01M8/186H01M8/0258H01M8/0267H01M8/0656H01M8/241H01M8/2457Y02E60/528
    • A regenerative fuel cell/electrolyzer stack. The regenerative fuel cell/electrolyzer stack may comprise a fuel cell electrode assembly comprising first and second fuel cell electrodes, as well as a fuel cell electrolyte. The regenerative fuel cell/electrolyzer stack may also comprise an an electrolyzer electrode assembly comprising first and second electrolyzer electrodes. A conductive plate may be positioned between the fuel cell electrode assembly and the electrolyzer electrode assembly. The conductive plate may comprise a first surface facing the first fuel cell electrode and a second surface facing the first electrolyzer electrode. The first surface may comprise at least one flow path open to the first fuel cell electrode, and the second surface may comprise at least one flow path open to the first electrolyzer electrode.
    • 再生燃料电池/电解堆。 再生燃料电池/电解堆叠可以包括燃料电池电极组件,其包括第一和第二燃料电池电极以及燃料电池电解质。 再生燃料电池/电解堆叠还可以包括包括第一和第二电解电极的电解电极组件。 导电板可以位于燃料电池电极组件和电解电极组件之间。 导电板可以包括面向第一燃料电池电极的第一表面和面向第一电解电极的第二表面。 第一表面可以包括至少一个通向第一燃料电池电极的流动路径,并且第二表面可以包括至少一个通向第一电解槽电极的流动路径。
    • 5. 发明申请
    • THERMODYNAMIC SYSTEMS OPERATING WITH NEAR-ISOTHERMAL COMPRESSION AND EXPANSION CYCLES
    • 热电联产系统在近似等温压缩和扩展循环下运行
    • US20070074533A1
    • 2007-04-05
    • US11466995
    • 2006-08-24
    • Jason HugenrothJames BraunEckhard GrollGalen King
    • Jason HugenrothJames BraunEckhard GrollGalen King
    • F25B23/00F25B1/00
    • F25B1/04F01C1/02F01C11/004F25B9/14F25B2309/1401
    • A thermodynamic system that can approximate the Ericsson or Brayton cycles and operated in reverse or forward modes to implement a cooler or engine, respectively. The thermodynamic system includes a device for compressing a first fluid stream containing a first gas-liquid mixture having a sufficient liquid content so that compression of the gas within the first gas-liquid mixture by the compressing device is nearly isothermal, and a device for expanding a second fluid stream containing a second gas-liquid mixture having a sufficient liquid content so that expansion of the gas within the second gas-liquid mixture by the expanding device is nearly isothermal. A heat sink is in thermal communication with at least the liquid of the first gas-liquid mixture for transferring heat therefrom, and a heat source is in thermal communication with at least the liquid of the second gas-liquid mixture for transferring heat thereto. A device is provided for transferring heat between at least the gas of the first gas-liquid mixture after the first fluid stream exits the compressing device and at least the gas of the second gas-liquid mixture after the second fluid stream exits the expanding device. The compressing and expanding devices are not liquid-ring compressors or expanders, but instead are devices that tolerate liquid flooding, such as scroll-type compressors and expanders.
    • 一种热力学系统,可以分别近似爱立信或布雷顿循环,并以反向或前向模式运行,以实现冷却器或发动机。 热力学系统包括用于压缩含有具有足够液体含量的第一气液混合物的第一流体流的装置,使得通过压缩装置对第一气液混合物内的气体的压缩几乎是等温的,以及用于膨胀的装置 第二流体物流含有具有足够液体含量的第二气液混合物,使得膨胀装置在第二气液混合物内的气体膨胀几乎是等温的。 散热器至少与第一气液混合物的液体热传导,从而传递热量,热源至少与第二气液混合物的液体热传递至其中。 提供一种装置,用于在所述第一流体流离开所述压缩装置之后,在所述第一气液混合物的至少所述气体之间传递热量,以及在所述第二流体流离开所述膨胀装置之后至少所述第二气液混合物的气体。 压缩和膨胀装置不是液环式压缩机或膨胀机,而是容许液体驱油的装置,例如涡旋式压缩机和膨胀机。