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Asymmetry of the Response and Recovery Curves of Exhaust Gas Sensors, Correlated to the Non-linearity of the Operating Principle
SENSACT05/1.4_F.Menil_IXL

Authors

Francis Ménil - Laboratoire IXL, Université de Bordeaux I
Claude Lucat - Laboratoire IXL, Université de Bordeaux I
Hélène Debéda - Laboratoire IXL, Université de Bordeaux I
Pascal Tardy - oratoire IXL, Université de Bordeaux I

Abstract

Keywords :

chemical sensors, gas exhaust sensors, response times, recovery times, non-linearity

Abstract :

The experimental response/recovery time of a chemical sensor is considered as the sum of an intrinsic time, independent of experimental conditions and supposing an instantaneous step function change of the fluid surrounding the sensor, and of an extrinsic time, depending on the transient concentration of target species, linked to the fluid delivery system. The transient concentration in the test cell is assumed to follow the exponential variations described by the wellstirred tank model. The application of the law governing the sensor signal to the transient concentration yields the extrinsic response/recovery times and accounts well for the symmetry or asymmetry between the response and recovery curves observed in standard laboratory conditions, according to the linearity or non-linearity of the sensor. All major trends derived from this theoretical approach are verified experimentally, and this is shown to have major implications in many practical cases, including microsensors and microfluidic as well as car exhaust sensors.

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