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    • 2. 发明授权
    • Apparatus and method for stack temperature control
    • 堆温度控制装置及方法
    • US07135245B2
    • 2006-11-14
    • US10439699
    • 2003-05-16
    • Michael StandkeIngo Hermann
    • Michael StandkeIngo Hermann
    • H01M8/04H01M8/00H01M8/10H01M8/12H01M8/18
    • H01M8/04268H01M8/04022
    • A system for modulating a temperature of one or more fuel cells in a fuel cell stack includes a catalytic combustor in heat exchange relationship with the fuel cell stack. The catalytic combustor promotes an exothermic reaction. A hydrogen source selectively supplies hydrogen (H2) to the catalytic combustor. The H2 reacts with oxygen (O2) in the exothermic reaction. In one feature, the catalytic combustor lies adjacent to the fuel cell stack and includes a series of catalyst coated flow channels. In another feature, the catalytic combustor includes a plate having a catalyst layer and that is offset from the fuel cell stack. Heat to radiates from the catalytic combustor to the fuel cell stack. In still another feature, a jacket encloses the fuel cell stack to form a gap between the jacket and the fuel cell stack through which hot exhaust from the catalytic combustor circulates.
    • 用于调制燃料电池堆中的一个或多个燃料电池的温度的系统包括与燃料电池堆热交换关系的催化燃烧器。 催化燃烧器促进放热反应。 氢源选择性地向催化燃烧器供应氢(H 2 H 2)。 在放热反应中,H 2 O与氧(O 2 H 2)反应。 在一个特征中,催化燃烧器邻近燃料电池堆并且包括一系列催化剂涂覆的流动通道。 在另一特征中,催化燃烧器包括具有催化剂层并且偏离燃料电池堆的板。 从催化燃烧器辐射到燃料电池堆的热量。 在另一个特征中,护套封闭燃料电池堆,以在护套和燃料电池堆之间形成间隙,通过该间隙,来自催化燃烧器的热排气循环通过。
    • 7. 发明申请
    • Device for storing compressed gas
    • 压缩气体储存装置
    • US20060169143A1
    • 2006-08-03
    • US11324737
    • 2006-01-03
    • Thomas TrosterNorbert AusterhoffIngo HermannFlorian MertensHolger Winkelmann
    • Thomas TrosterNorbert AusterhoffIngo HermannFlorian MertensHolger Winkelmann
    • B01D53/02
    • F17C11/005Y02E60/321
    • A device for storing compressed gas includes a cylindrical pressure vessel having inlet and outlet conduits for a cooling/heating fluid and for compressed gas. Arranged in the interior of the pressure vessel are plural storage layers which are separated from one another and contain solid matter for charging with compressed gas. The storage layers have a volume, which depends on a charging state of the storage layers with compressed gas, and are separated dust-tight from one another about their circumference. Bounding one side of each storage layer is a spring layer which assumes a filtering function with respect to the solid matter of the storage layer, wherein the solid matter in the storage layer is charged with compressed gas via the spring layer or compressed gas is discharged from the solid matter in the storage layers via the spring layer. The other opposite side of the storage layer is bounded by a gastight cooling/heating layer for passage of the cooling/heating fluid.
    • 用于存储压缩气体的装置包括具有用于冷却/加热流体和压缩气体的入口和出口导管的圆柱形压力容器。 排列在压力容器内部的多个存储层彼此分离并且包含用于对压缩气体充填的固体物质。 存储层具有取决于具有压缩气体的储存层的充电状态的体积,并且在其周围彼此分开防尘。 每个存储层的一侧的边界是相对于存储层的固体物质具有过滤功能的弹簧层,其中存储层中的固体物质经由弹簧层被填充压缩气体,或者压缩气体从 通过弹簧层存储层中的固体物质。 存储层的另一个相对侧由用于冷却/加热流体通过的气密冷却/加热层限定。