The Interaction Between Nitric Oxide and Hydrocarbon Oxidation Chemistry in a Spark Ignition Engine

This research investigated the effects of nitric oxide (NO) on hydrocarbon (HC) emissions from a homogeneous charge spark ignition engine. Nitric oxide production inside the engine was eliminated by operating the engine on mixtures of n-butane/O₂ and argon mixed from bottled gases in a custom-design...

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Veröffentlicht in:SAE transactions 1997-01, Vol.106, p.1129-1145
Hauptverfasser: Eng, J. A., Leppard, W. R., Najt, P. M., Dryer, F. L.
Format: Artikel
Sprache:eng
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Zusammenfassung:This research investigated the effects of nitric oxide (NO) on hydrocarbon (HC) emissions from a homogeneous charge spark ignition engine. Nitric oxide production inside the engine was eliminated by operating the engine on mixtures of n-butane/O₂ and argon mixed from bottled gases in a custom-designed intake system. The effects of NO on HC emissions were studied by adding NO to the intake. No changes in HC emissions were measured with NO addition, although NO addition did promote autoignition chemistry. Experiments were also performed with nitrogen dilution to confirm that the argon results are applicable to normal engine operation. With nitrogen dilution there was again no effect of NO addition on HC emissions. The lack of a chemical effect of NO on HC emissions implies that a majority of the HC consumption occurs at temperatures higher than 1500 K.
ISSN:0096-736X
2577-1531