In situ high-Temperature gas sensors: Continuous monitoring of the combustion quality of different wood combustion systems and optimization of combustion process

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Abstract

The sensing characteristics and long-Term stability of different kinds of CO=HC gas sensors (non-Nernstian mixed potential type) during in situ operation in flue gas from different types of low-power combustion systems (wood-log-and wood-chip-fuelled) were investigated. The sensors showed representative but individual sensing behaviour with respect to characteristically varying flue gas composition over the combustion process. The long-Term sensor signal stability evaluated by repeated exposure to CO=H2 =N2 = synthetic air mixtures showed no sensitivity loss after operation in the flue gas. Particularly for one of the sensors (Heraeus GmbH), this high signal stability was observed in a field test experiment even during continuous operation in the flue gas of the wood-chip firing system over 4 months. Furthermore, it was experimentally shown that the signals of these CO=HC sensing elements yield important additional information about the wood combustion process. This was demonstrated by the adaptation of an advanced combustion airstream control algorithm on a woodlog-fed fireplace and by the development of a combustion quality monitoring system for wood-chip-fed central heaters.

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Kohler, H., Ojha, B., Illyaskutty, N., Hartmann, I., Thiel, C., Eisinger, K., & Dambacher, M. (2018). In situ high-Temperature gas sensors: Continuous monitoring of the combustion quality of different wood combustion systems and optimization of combustion process. Journal of Sensors and Sensor Systems, 7(1), 161–167. https://doi.org/10.5194/jsss-7-161-2018

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