Shock tube determination of the overall rate of NH2+NO→products at high temperatures
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Mechanical Engineering,General Chemical Engineering
Reference29 articles.
1. Mechanism and modeling of nitrogen chemistry in combustion
2. Reburning chemistry: a kinetic modeling study
3. A Shock Tube Study of the Product Branching Ratio for the Reaction NH2 + NO Using Frequency-Modulation Detection of NH2
4. Modeling the thermal De-NOx process: Closing in on a final solution
5. A kinetic study of the reaction of NH2 with NO in the temperature range 1400–2800 K
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1. Experimental and Theoretical Investigation of the Reaction of NH2 with NO at Very Low Temperatures;The Journal of Physical Chemistry A;2023-08-17
2. Progress and Prospective of Nitrogen-Based Alternative Fuels;Chemical Reviews;2020-06-05
3. From theoretical reaction dynamics to chemical modeling of combustion;Proceedings of the Combustion Institute;2017
4. A simple reactive gasdynamic model for the computation of gas temperature and species concentrations behind reflected shock waves;International Journal of Chemical Kinetics;2008
5. Near-infrared diode laser absorption sensor for rapid measurements of temperature and water vapor in a shock tube;Applied Physics B;2007-09-26
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