Shock Tube/Laser Absorption Measurements of the Reaction Rates of OH with Ethylene and Propene

Author:

Vasu Subith S.1,Hong Zekai1,Davidson David F.1,Hanson Ronald K.1,Golden David M.1

Affiliation:

1. Mechanical Engineering Department, Stanford University, Stanford, California 94305, United States

Publisher

American Chemical Society (ACS)

Subject

Physical and Theoretical Chemistry

Reference63 articles.

1. OH time-histories during oxidation of n-heptane and methylcyclohexane at high pressures and temperatures

2. Sirjean, B.; Dames, E.; Sheen, D. A.; You, X.Q.; Sung, C.; Holley, A. T.; Egolfopoulos, F. N.; Wang, H.; Vasu, S. S.; Davidson, D. F.; Hanson, R. K.; Pitsch, H.; Bowman, C. T.; Kelley, A.; Law, C. K. T., W.; Cernansky, N. P.; Miller, D. L.; Violi, A.; Lindstedt, R. P.A High-Temperature Chemical Kinetic Model of n-Alkane Oxidation, JetSurFversion 1.0; 2009.http://melchior.usc.edu/JetSurF/Version1_0/Index.html.

3. A comprehensive detailed chemical kinetic reaction mechanism for combustion of n-alkane hydrocarbons from n-octane to n-hexadecane

4. Ranzi, E.Version 0512; 2006.http://www.chem.polimi.it/CRECKModeling/kinetic.html.

5. A shock tube study of the reactions of the hydroxyl radical with several combustion species

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