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    • 2. 发明授权
    • Stowable container holder
    • 可储存容器架
    • US5997082A
    • 1999-12-07
    • US58595
    • 1998-04-10
    • Clyde L. VincentJeffrey L. Barber
    • Clyde L. VincentJeffrey L. Barber
    • B60N3/10A47C7/62
    • B60N3/108B60N3/102
    • A container holder includes a base for mounting within a recess in a vehicle accessory, such as an armrest or console of a vehicle, a cover pivotally mounted to the base and movable between a position substantially flush with the surface of the accessory and pivotally movable to a generally vertically extended position defining a support wall to which a container holding arm or arms are pivotally mounted at an end remote from the pivotal connection of the cover to the base. In a preferred embodiment of the invention, a leaf spring mounted to the cover to releasably hold the cover in a closed position and in a vertically extended use position. In a preferred embodiment also, this spring also releasably holds the container holder arm in a horizontally extended use position.
    • 容器保持器包括用于安装在车辆附件中的凹槽中的基座,例如车辆的扶手或控制台,可枢转地安装到基座并可在与附件的表面基本齐平的位置之间移动的盖,并且可枢转地移动到 大致垂直延伸的位置限定支撑壁,容器保持臂或臂在远离盖的枢转连接的一端枢转地安装到基座上。 在本发明的优选实施例中,安装到盖上的片簧可释放地将盖保持在关闭位置和垂直延伸的使用位置。 在优选实施例中,该弹簧还可释放地将容器保持器臂保持在水平延伸的使用位置。
    • 4. 发明授权
    • Hypergolic hydrogen generation system for fuel cell power plants
    • 燃料电池发电厂的全氢生成系统
    • US07344789B2
    • 2008-03-18
    • US10884771
    • 2004-07-01
    • Jeffrey L. BarberJeremiah J. Cronin
    • Jeffrey L. BarberJeremiah J. Cronin
    • C01B3/22C01B3/26H01M8/04
    • C01B13/0214C01B3/38C01B3/56C01B2203/0227C01B2203/042C01B2203/066H01M8/0612H01M8/0618H01M8/0662H01M2008/1095Y02P20/52
    • The invention provides a controlled hypergolic approach to using concentrated hydrogen peroxide in combination with certain hydrocarbons such as ethanol, methanol, methane as well as more common fuels such as gasoline, diesel, DME, JP5, JP8 and the like to generate a gas mixture primarily composed of hydrogen and carbon dioxide. Because air is not used as the oxygen source, this novel process does not allow the formation of nitrous oxide (NOx) compounds, thereby avoiding the primary source of nitrogen contamination as well. The process is executed in a constraining system on a micro scale such that the resulting hydrogen supply is self-pressurizing. This enables the incorporation of an “on-demand” hydrogen fuel source for a variable output fuel cell power plant such as those proposed for use in automobiles, marine vessels and stationary power sources. In another embodiment of the present invention hydrogen peroxide is catalytically, or thermally reacted to provide H2O vapor and O2. When this gaseous stream is introduced to the cathode of the fuel cell, the percent concentration of oxygen is increased with no corresponding increase in the parasitic power demand made by an air-moving device. This use of H2O2 as an oxygen source may be continuous, intermittent or limited to specific instances when peak power output demands or high transient loads are placed upon the FCPS.
    • 本发明提供了一种使用浓缩过氧化氢与某些烃如乙醇,甲醇,甲烷以及更常见的燃料如汽油,柴油,DME,JP5,JP8等组合的受控大气方法,以主要产生气体混合物 由氢和二氧化碳组成。 由于不使用空气作为氧源,因此这种新方法不允许形成一氧化二氮(NOx)化合物,从而避免了氮污染的主要来源。 该过程在约束系统中以微观尺度执行,使得所得到的氢气供应是自加压的。 这使得能够为可变输出燃料电池发电厂(例如提出用于汽车,船舶和固定电源的那些)提供“按需”氢燃料源。 在本发明的另一个实施方案中,过氧化氢被催化或热反应以提供H 2 O 2 O和O 2。 当这种气流被引入到燃料电池的阴极时,氧气的百分浓度增加,而空气移动装置的寄生电力需求没有相应的增加。 作为氧源的这种使用可以是连续的,间歇的或限于当峰值功率输出需求或高瞬态负载放置在FCPS上时的具体情况。