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    • 46. 发明授权
    • Electrolyzer
    • 电解液
    • US09222178B2
    • 2015-12-29
    • US14667453
    • 2015-03-24
    • GTA, Inc.
    • Elias Stanley Greenbaum
    • C25B1/10C25B1/12C25B9/08C25B11/02C25B9/04C25B13/02C25B9/00C02F1/461C25B13/00
    • C25B1/10C02F1/46104C02F2201/46115C25B1/12C25B9/00C25B9/04C25B9/08C25B11/02C25B13/00C25B13/02Y02E60/366Y10T29/4911
    • The electrolytic production of high purity hydrogen and oxygen may include regulating gas pressure in the cathode and anode compartments of the electrolysis apparatus. The supply of water to the apparatus may be through at least one opening on the surface of the apparatus. High pressure hydrogen and oxygen gas may be produced without subjecting the electrolysis apparatus to large pressure differences between the interior and exterior of the apparatus. This may be accomplished by substantially immersing the entire electrolysis apparatus in a high pressure fluid thus making the interior and exterior pressures of the apparatus substantially equal. Two example structures for accomplishing this goal are disclosed. First, the apparatus may be placed in and encapsulated by a fluid-containing vessel that is itself pressurized. Second, the apparatus may be immersed in a deep water environment. Part of the electrical energy used to perform electrolysis may be recovered by capturing the kinetic energy and momentum in high pressure gas flowing in a tube, oxygen for example, and converting it to electricity by causing it to rotate an impeller that is coupled to an electric generator.
    • 高纯度氢和氧的电解生产可以包括调节电解装置的阴极和阳极室中的气体压力。 向设备供水可以通过设备表面上的至少一个开口。 可以在不使电解装置在设备的内部和外部之间产生大的压力差的情况下产生高压的氢气和氧气。 这可以通过将整个电解设备基本上浸入高压流体中来实现,从而使得设备的内部和外部压力基本相等。 公开了实现这一目标的两个示例结构。 首先,该装置可以被本身加压的含有流体的容器放置并包封。 第二,该装置可以浸入深水环境中。 用于进行电解的电能的一部分可以通过捕获在管中流动的高压气体(例如氧)中的动能和动量来回收,并且通过使其转动与电耦合的叶轮 发电机。
    • 47. 发明申请
    • HEAT DISSIPATING DEVICE FOR AN ELECTROCHEMICAL STORAGE DEVICE
    • 电化学储存装置的散热装置
    • US20150357691A1
    • 2015-12-10
    • US14759276
    • 2013-12-20
    • SIEMENS AKTIENGESELLSCHAFT
    • Michael KÜHNE
    • H01M10/6556H01M10/6551
    • H01M10/6556H01M2/0237H01M2/0252H01M10/3909H01M10/613H01M10/64H01M10/65H01M10/6551H01M10/6554H01M10/656Y10T29/4911
    • A system having an electrochemical storage device is provided including an anode chamber filled with anode material and cathode chamber filled with cathode material. The anode chamber is separated from the cathode chamber by ion-conducting solid body electrolytes. The anode chamber is defined on one side by the solid body electrolytes, and on the other side by a wall surrounding the solid body electrolytes. The device has a head part to receive and/or supply electric energy, base part arranged opposite the head part and at least one lateral part having at least one wall between the head and base part. At least one heat dissipating device receives heat from the electrochemical storage device via a first surface and/or to supply heat thereto and to supply and/or receive heat via a second surface. A receiving section is in thermal contact with the heat dissipating device.
    • 提供具有电化学存储装置的系统,其包括填充有阳极材料的阳极室和填充有阴极材料的阴极室。 阳极室通过离子导电固体电解质与阴极室分离。 阳极室在一侧由固体电解质限定,另一侧由围绕固体电解质的壁限定。 该装置具有用于接收和/或提供电能的头部,与头部相对设置的基部,以及至少一个侧部,在头部和基部之间具有至少一个壁。 至少一个散热装置经由第一表面接收来自电化学存储装置的热量和/或向其供应热量,并且经由第二表面供应和/或接收热量。 接收部分与散热装置热接触。
    • 48. 发明申请
    • SHAPE-ADAPTED ELECTROCHEMICAL STORAGE DEVICE FOR UNIFORM TEMPERATURE DISTRIBUTION
    • 用于均匀温度分布的形状适应电化学存储器件
    • US20150349300A1
    • 2015-12-03
    • US14759310
    • 2013-12-19
    • SIEMENS AKTIENGESELLSCHAFT
    • Michael KuhneWolfgang Menapace
    • H01M2/02H01M10/617H01M10/04H01M10/39
    • H01M2/0252H01M10/049H01M10/39H01M10/399H01M10/613H01M10/617H01M10/6554Y10T29/4911
    • An electrochemical storage device is provided including an anode chamber filled with anode material, and a cathode chamber filled with cathode material. The anode chamber is separated from the cathode chamber by ion-conducting solid body electrolyte, and is limited on one side at least partially by the solid body electrolyte, and to the other side at least partially by a wall surrounding at least partially the solid body electrolytes. The electrochemical storage device has a head part where electric energy is guided to and/or taken away from, a base part arranged opposite the head part, and at least one lateral part including at least one wall arranged between the head and base part. At least one first area and second area are formed between the wall and the solid body electrolyte, both areas being different with respect to the respective distance between the wall and solid body electrolyte.
    • 提供一种电化学存储装置,其包括填充有阳极材料的阳极室和填充有阴极材料的阴极室。 阳极室通过离子导电固体电解质与阴极室分离,并且至少部分地被固体电解质限制在一侧,并且至少部分地由至少部分地固定固体的壁限制在另一侧 电解质 电化学存储装置具有头部,其中电能被引导到和/或远离与头部相对布置的基部,以及包括布置在头部和基部之间的至少一个壁的至少一个侧部。 在壁和固体电解质之间形成至少一个第一区域和第二区域,两个区域相对于壁和固体电解质之间的相应距离是不同的。
    • 49. 发明授权
    • Battery module and method for manufacturing the battery module
    • 电池模块及其制造方法
    • US09178192B2
    • 2015-11-03
    • US13106966
    • 2011-05-13
    • Josh Payne
    • Josh Payne
    • H01M2/00H01M2/04H01M2/06H01M2/08H01M10/04
    • H01M2/08H01M2/06H01M10/0413Y10T29/49108Y10T29/4911
    • A battery module and a related method are provided. The module includes battery cells having electrical terminals extending from battery portions. The module further includes an interconnect board having apertures for receiving the electrical terminals therethrough, and an elastomeric layer having apertures extending therethrough. The elastomeric layer is disposed proximate to the interconnect board such that the electrical terminals extend through the apertures of the interconnect board and further extend through the apertures of the elastomeric layer. The module further includes a potting compound disposed on the elastomeric layer such that the layer prevents the potting compound from contacting the battery portions.
    • 提供电池模块和相关方法。 该模块包括具有从电池部分延伸的电端子的电池单元。 模块还包括互连板,其具有用于接收穿过其中的电端子的孔,以及具有延伸穿过其中的孔的弹性体层。 弹性体层设置在互连板附近,使得电端子延伸穿过互连板的孔并进一步延伸穿过弹性体层的孔。 模块还包括设置在弹性体层上的灌封化合物,使得该层防止灌封化合物接触电池部分。