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    • 6. 发明授权
    • Method and apparatus for measuring NOx gas concentration
    • 测量NOx气体浓度的方法和装置
    • US06214208B1
    • 2001-04-10
    • US08982869
    • 1997-12-02
    • Masashi AndoNoboru IshidaSatoshi SugayaTakafumi OshimaNorihiko NadanamiTakaki OotukaYoshikuni SatoTatsuo Okumura
    • Masashi AndoNoboru IshidaSatoshi SugayaTakafumi OshimaNorihiko NadanamiTakaki OotukaYoshikuni SatoTatsuo Okumura
    • G01N27407
    • G01N27/4074Y10T436/179228
    • This is a method and apparatus for accurately determining a NOx concentration of a measurement gas that contains H2O and/or CO2, without being affected by a dissociation of H2O and/or CO2. In this method and apparatus, (1) the NOx-measurement gas containing H2O and/or CO2 is introduced to travel through a heated flow channel formed by an oxygen ion conductive solid ceramic electrolyte body that electrically control amount of O2 from the flow channel, (2) while said measurement gas travels, a residual gas including NO and H2O and/or CO2 is formed from the measurement gas, (3) said residual gas is flowed to contact a catalytic electrode to which a negative polarity of a low voltage that does not dissociate H2O and/or CO2 but dissociates NO is applied, so that said electrode dissociates a NO gas of the residual gas into N ions and O ions and flows an electric current through the electrolyte body in proportion to an amount of the O ions dissociated from said residual gas at the electrode, and (4) the NOx concentration in the measurement gas is determined based on the current. The low voltage preferably applied in the above (3) is about 350-450 mV.
    • 这是一种用于精确地测定含有H 2 O和/或CO 2的测量气体的NOx浓度而不受H 2 O和/或CO 2离解影响的方法和装置。在该方法和装置中,(1)NOx测量 引入含有H 2 O和/或CO 2的气体通过由氧离子导电固体陶瓷电解质体形成的加热流动通道,该氧气离子传导性固体陶瓷电解质体从流动通道电气控制O2的量,(2)当所述测量气体行进时,残留气体包括 从测量气体形成NO和H 2 O和/或CO 2,(3)所述残留气体流动以接触催化电极,在该催化电极处施加不分离H 2 O和/或CO 2但解离NO的低电压的负极性 使得所述电极将残留气体的NO气体分解为N离子和O离子,并且与电极处的所述残留气体分离的O离子的量成比例地流过电解质体,并且( 4)测定气体中的NOx浓度基于电流来确定。上述(3)中优选施加的低电压为约350〜450mV。
    • 7. 发明授权
    • Gas sensor
    • 气体传感器
    • US06635162B2
    • 2003-10-21
    • US09397931
    • 1999-09-17
    • Satoshi SugayaNorihiko NadanamiNoboru IshidaTakafumi Oshima
    • Satoshi SugayaNorihiko NadanamiNoboru IshidaTakafumi Oshima
    • G01N27407
    • G01N27/417
    • A gas sensor having a laminate structure composed of thin sheets of solid electrolyte and including a cavity portion 21 and an oxygen concentration cell 5. The oxygen concentration in the cavity portion 21 is held constant. The oxygen concentration cell 5 includes an active electrode 12 having a relatively high catalytic capability with respect to NOx or combustible gas and an inner common electrode 13/15 (serving as an inactive electrode and an oxygen-concentration-sensing electrode) having a relatively low catalytic capability with respect to NOx or combustible gas. The oxygen concentration cell 5 is disposed in the gas sensor so as to be exposed to the interior of the cavity portion 21. The concentration of NOx or combustible gas is determined based on an electromotive force (of the order of mV) generated between the active electrode 12 and the inner common electrode 13/15 by a concentration cell effect.
    • 具有由固体电解质薄片构成的层叠结构的气体传感器,包括空腔部21和氧浓度电池5.空腔部21中的氧浓度保持恒定。 氧浓度单元5包括相对于NOx或可燃性气体具有相对较高的催化能力的有源电极12和具有相对低的可燃气体的内部公共电极13/15(用作非活性电极和氧浓度感测电极) 相对于NOx或可燃气体的催化能力。 氧气浓度单元5设置在气体传感器中以暴露于空腔部分21的内部。NOx或可燃气体的浓度基于在活性物质之间产生的电动势(大约mV) 电极12和内部公共电极13/15。