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    • 2. 发明授权
    • Gas detection sensor
    • 气体检测传感器
    • US06622543B1
    • 2003-09-23
    • US09979039
    • 2001-11-15
    • Tadahiro OhmiKouji KawadaNobukazu IkedaAkihiro MorimotoYukio MinamiKatunori KomehanaTeruo Honiden
    • Tadahiro OhmiKouji KawadaNobukazu IkedaAkihiro MorimotoYukio MinamiKatunori KomehanaTeruo Honiden
    • G01N2532
    • G01N33/0013G01N25/32
    • A gas detection sensor permits precise measurement of the concentration of flammable gas in a detection or subject gas and the concentration of oxygen in a detection gas containing flammable gases. In the sensor, the heating of the sensor by contact catalytic reaction of flammable gas gives off a detection signal of the flammable gas. The gas detection sensor has a first detection sensor including a diaphragm having a platinum coat on a side which the flowing detection gas comes in contact with, and a thermocouple having respective ends of two different metals placed close to each other and fixed on the side of the diaphragm not coming in contact with the flowing detection gas and which is heated by the contact catalytic reaction of flammable gas. A second detection sensor similar to the first detection sensor detects the temperature of the flowing detection gas.
    • 气体检测传感器允许精确测量检测或目标气体中的可燃气体的浓度以及含有易燃气体的检测气体中的氧浓度。 在传感器中,通过可燃气体的接触催化反应对传感器的加热产生可燃气体的检测信号。 气体检测传感器具有第一检测传感器,该第一检测传感器包括在流动检测气体接触的一侧上具有铂涂层的膜片,以及将彼此靠近并固定在两侧的两个不同金属的两端固定的热电偶 隔膜不会与流动的检测气体接触,并且被易燃气体的接触催化反应加热。 类似于第一检测传感器的第二检测传感器检测流动检测气体的温度。
    • 9. 发明授权
    • Reactor for generating moisture
    • 反应器产生水分
    • US07008598B2
    • 2006-03-07
    • US10884917
    • 2004-07-07
    • Tadahiro OhmiKouji KawadaNobukazu IkedaAkihiro MorimotoYukio MinamiKenji TubotaTeruo HonidenTouru HiraiKatunori KomehanaKeiji Hirao
    • Tadahiro OhmiKouji KawadaNobukazu IkedaAkihiro MorimotoYukio MinamiKenji TubotaTeruo HonidenTouru HiraiKatunori KomehanaKeiji Hirao
    • B01J8/02
    • B01J12/007B01J2219/00058B01J2219/00087B01J2219/00096C01B5/00
    • A reactor for generating moisture wherein ignition of hydrogen gas, backfire to the gas supply source side, the peeling off of the platinum coat catalyst layer inside are prevented more completely to further increase the safety of the reactor for generating moisture and wherein the dead space in the interior space is reduced to further reduce the size of the reactor shell. The reactor comprises: a reactor shell A with an interior space formed with a reactor structural component on the inlet side and a reactor structural component on the outlet side opposed to and united with each other by welding, the reactor structural component 1 on the inlet side provided with a gas feed port 1a and the reactor structural component 2 on the outlet side provided with a moisture gas take-out port 2a; a reflector on the inlet side facing the gas feed port in the interior space of the reactor; a reflector on the outlet side facing the moisture gas take-out port in the interior space; and a platinum coat catalyst layer 8 formed on the inside wall of the reactor structural component on the outlet side, wherein hydrogen and oxygen fed into the interior space of the reactor through the gas feed port are brought into contact with the platinum coat 8b to activate the reactivity, thereby reacting hydrogen and oxygen into water in a non-combustion state.
    • 一种用于产生水分的反应器,其中更加完全地防止了氢气的点燃,气体供应源侧的反应,内部的铂涂层催化剂层的剥离,从而进一步提高了产生水分的反应器的安全性, 减少内部空间以进一步减小反应器壳体的尺寸。 反应器包括:反应器壳体A,内部空间形成有入口侧的反应器结构部件,出口侧的反应器结构部件通过焊接彼此相对并且彼此结合,反应器结构部件1在入口侧 设置有气体供给口1a和在排气侧设置有湿气取出口2a的反应器结构部件2; 入口侧的反射器,其面对反应器内部空间中的气体供给口; 出口侧的反射器面向内部空间中的湿气取出口; 以及形成在出口侧的反应器结构部件的内壁上的铂涂层催化剂层8,其中通过气体供给口供给到反应器的内部空间中的氢和氧与铂涂层8b相接触, 激活反应性,从而使氢和氧在非燃烧状态下反应成水。