Zugriffsnummer 44921
Dokumenttyp Zeitschriftenartikel Open Access Hybrid
Peer Review mit Peer Review
Sprache Englisch
Titel Homogeneous conversion of NOx and NH3 with CH4, CO, and C2 H4 at the diluted conditions of exhaust-gases of lean operated natural gas engines
Autor(in); Institution
Schmitt, Steffen; Bielefeld University, Department of Chemistry, Bielefeld, GERMANY
Schwarz, Sabrina; KIT, Karlsruhe, GERMANY
Ruwe, Lena; 3.7, Grundlagen des Explosionsschutzes, PTB-Braunschweig
Horstmann, Jacqueline; Bielefeld University, Department of Chemistry, Bielefeld, GERMANY
Sabath, Franziska; Bielefeld University, Department of Chemistry, Bielefeld, GERMANY
Maier, Lubow; KIT, Karlsruhe, GERMANY
Deutschmann, Olaf; KIT, Karlsruhe, GERMANY
Kohse-Höinghaus, Katharina; Bielefeld University, Department of Chemistry, Bielefeld, GERMANY
Quelle/Jahr International Journal of Chemical Kinetics:(2021), 213 - 229
ISSN 0538-8066 (PRINT) ; 1097-4601 (ONLINE)
DOI
Verlag New York, NY: Wiley
Freie Schlagworte gas-phase kinetics ; ammonia ; nitric oxide ; exhaust gas aftertreatment ; natural gas engines
Zusammenfassung Understanding gas-phase reactions in model gas mixtures approximating pre-turbine heavy-duty natural gas engine exhaust compositions containing NO, NO2, CH4, CO, and C2H4 is extremely relevant for after treatment procedure and catalyst design and is thus addressed in this work. In a plug-flow reactor at atmospheric pressure, five different model gas mixtures were investigated in the temperature range of 700 to 1200 K, using species analysis with electron ionization molecular-beam mass spectrometry. The mixtures were designed to reveal influences of individual components by adding NO2, CH4, CO, and C2H4 sequentially to a highly argon-diluted NO/NH3 base mixture. Effects of all components on the reactivity for NOx conversion were investigated both experimentally as well as by comparison with three selected kinetic models. Main results show a significantly increased reactivity upon NO2 and hydrocarbon addition with lowered NO conversion temperatures by up to 200 K. Methane was seen to be of dominant influence in the carbon-containing mixtures regarding interactions between the carbon and nitrogen chemistry as well as formaldehyde formation. The three tested mechanisms were capable to overall represent the reaction behavior satisfactorily. On this basis, it can be stated that significant gas-phase reactivity was observed among typical constituents of pre-turbine natural gas engine exhaust at moderate temperature.
Kostenfreier Zugang Open Access Hybrid
Rechteinformation CC BY 4.0 ; Creative Commons Attribution 4.0 License
Themenbereich der Metrologie Physikalische Sicherheitstechnik, Explosionsschutz

Zitierung

Schmitt, S., Schwarz, S., Ruwe, L., Horstmann, J., Sabath, F., Maier, L., Deutschmann, O., & Kohse-Höinghaus, K. (2021). Homogeneous conversion of NOx and NH₃ with CH₄, CO, and C₂ H₄ at the diluted conditions of exhaust-gases of lean operated natural gas engines. International Journal of Chemical Kinetics, 213–229. https://doi.org/10.1002/kin.21435

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