Title of article :
Calorimetric hydrocarbon sensor for automotive exhaust applications
Author/Authors :
Wu، نويسنده , , Ming-Cheng and Micheli، نويسنده , , Adolph L.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Abstract :
We have developed a calorimetric sensor utilizing a thermoelectric device supported on a planar alumina substrate. By using a highly selective carbon monoxide (CO) oxidation catalyst and a non-selective platinum (Pt) catalyst, the device can be built to detect either CO or hydrocarbons with high selectivity. The CO oxidation catalyst comprises lead-modified platinum and exhibits excellent selectivity over the 200–400 °C temperature range. The thermoelectric device consists of two thick film junctions made of niobium pentoxide (Nb2O5)-doped titanium dioxide (TiO2) and a lithiated nickel (Ni), which are supported on a planar alumina substrate. The thermocouple detects the difference in temperature due to different catalytic reactions over the two junctions and shows a high output signal because of the high Seebeck coefficient of Nb2O5-doped TiO2 (−400 μV/°C). In gas bench tests, the sensor has a linear output of 0–2.75 mV over 0–1000 ppm of propylene and a response time of 2.5 s (at 90% of amplitude) at a gas temperature of 350 °C. An engine dynamometer evaluation shows that the response of the sensor parallels the change in CO and hydrocarbon constituent concentrations when the engine air-to-fuel ratio is varied.
Keywords :
Selective CO oxidation catalyst , Calorimetric hydrocarbon sensors , Exhaust constituent sensors
Journal title :
Sensors and Actuators B: Chemical
Journal title :
Sensors and Actuators B: Chemical