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    • 4. 发明授权
    • Micro-fuel cell sensor apparatus
    • 微型燃料电池传感器装置
    • US06656335B2
    • 2003-12-02
    • US09794388
    • 2001-02-28
    • Elena Babes-DorneaClaude BeaucheminRenyan QinJean-Christophe Marusic
    • Elena Babes-DorneaClaude BeaucheminRenyan QinJean-Christophe Marusic
    • G01N27404
    • G01N27/4045
    • An apparatus for measuring partial hydrogen pressure in a gas stream is described. The apparatus includes a housing with micro-fuel cell sensor disposed therein. The sensor includes a sensing element having first and second gas diffusing electrodes spaced from one another with an acidic electrolyte disposed between the electrodes. A first gas permeable membrane separates the first electrode from an external gas stream. A second gas permeable membrane separates the second electrode from atmospheric air. Electrochemical charging of the first electrode occurs when hydrogen from a gas stream diffuses through the first membrane to react with the first electrode, while the potential of the second electrode remains unchanged. The potential difference between the first and second electrodes measured as current is identified to represent the sensor output.
    • 描述了用于测量气流中的部分氢气压力的装置。 该装置包括设置在其中的具有微型燃料电池传感器的壳体。 传感器包括具有彼此间隔开的第一和第二气体扩散电极的感测元件,其中设置在电极之间的酸性电解质。 第一透气膜将第一电极与外部气流分开。 第二透气膜将第二电极与大气分离开。 当来自气流的氢气扩散通过第一膜以与第一电极反应时,第一电极的电化学充电发生,而第二电极的电位保持不变。 被确定为电流的第一和第二电极之间的电势差被识别以表示传感器输出。
    • 7. 发明授权
    • Apparatus for continuously determining volatile substances dissolved in insulating fluid
    • 用于连续测定溶解在绝缘液中的挥发性物质的装置
    • US06526805B1
    • 2003-03-04
    • US09637083
    • 2000-08-11
    • Elena Babes-DorneaClaude BeaucheminBruno GeorgesRenyan QinJean-Christophe Marusic
    • Elena Babes-DorneaClaude BeaucheminBruno GeorgesRenyan QinJean-Christophe Marusic
    • G01N3700
    • G01N21/3504G01N33/2841
    • An apparatus and method are provided for continuously monitoring the operation of electrical equipment and preventing critical operational failures. The invention quantitatively determines the concentrations of gas and/or vapor (including water) components in an insulating fluid on a real time basis. An increase of one or more detected chemical components signifies an actual or potential electrical problem with the equipment. The preferred apparatus consists of a gas extractor, an infrared gas analysis instrument, and a gas diaphragm pump. Gas and water vapor components are extracted from the insulating fluid by permeating through a membrane in a gas extractor. The gas and/or vapor components are then brought into an infrared gas analyzer by the gas diaphragm pump. A quad detector in the analysis instrument identifies and determines the concentration of three specified gases and/or the vapor simultaneously.
    • 提供了一种用于连续监测电气设备的操作并防止关键操作故障的装置和方法。 本发明实时地定量地确定绝缘流体中的气体和/或蒸气(包括水)组分的浓度。 增加一个或多个检测到的化学成分表示设备的实际或潜在的电气问题。 优选的装置包括气体提取器,红外气体分析仪和气体隔膜泵。 通过渗入气体提取器中的膜,从绝缘流体中提取气体和水蒸气成分。 然后通过气体隔膜泵将气体和/或蒸气组分引入红外气体分析仪。 分析仪器中的四检测器同时识别并确定三种特定气体和/或蒸汽的浓度。