Kinetics of the gas-phase reaction of hydroxyl radicals with trimethyl phosphate over the 273–837 K temperature range

Author:

Koshlyakov P. V.1234,Barkova D. A.1234,Gerasimov I. E.1234,Chesnokov E. N.1234ORCID,Zhang Xiaokai5678,Krasnoperov L. N.5678

Affiliation:

1. Institute of Chemical Kinetics and Combustion

2. Siberian Branch of Russian Academy of Sciences

3. Novosibirsk

4. Russian Federation

5. Department of Chemistry and Environmental Science

6. New Jersey Institute of Technology

7. Newark

8. USA

Abstract

Rate constant of reaction 1 at 1 bar, over the temperature range 273–837 K.

Funder

Russian Science Foundation

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

Reference26 articles.

1. A. N.Baratov , Monograph , FSU VNIIPO MINISTRY of Emergency Situations of Russia , 2003 , p. 364

2. R. E.Tapscott , R. S.Sheinson , V.Babushok , M. R.Nyden , and R. G.Gann , Technical Note (NIST TN) - 1443 , Alternative Fire Suppressant Chemicals: A Research Review with Recommendations , 2001 , p. 84

3. J. W.Hastie and D. W.Bonnell , Molecular Chemistry of Inhibited Combustion Systems , National Bureau of Standards , B81-170375, 1980 , p. 206 , Final NBSIR, 80-2169, B81-170375

4. The influence of phosphorus oxides and acids on the rate of H + OH recombination☆

5. Photometric determination of the rate of H2O formation from H and OH in the presence of phosphine combustion products

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