High-Pressure Flow Reactor Product Study of the Reactions of HOx + NO2: The Role of Vibrationally Excited Intermediates

Author:

Dransfield Timothy J.1,Donahue Neil M.1,Anderson James G.1

Affiliation:

1. Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts

Publisher

American Chemical Society (ACS)

Subject

Physical and Theoretical Chemistry

Reference29 articles.

1. Reduction of Stratospheric Ozone by Nitrogen Oxide Catalysts from Supersonic Transport Exhaust

2. Tropospheric chemistry: A global perspective

3. DeMore, W. B.; Friedl, R. R.; Golden, D. M.; Hampson, R. F.; Huie, R. E.; Kolb, C. E.; Kurylo, M. J.; Molina, M. J.; Moortgat, G. K.; Ravishankara, A. R.; Sander, S. P. Chemical kinetics and photochemical data for use in stratopsheric modeling. Technical Report 00-3, Jet Propulsion Laboratory, 2000.

4. Evaluated Kinetic and Photochemical Data for Atmospheric Chemistry: Supplement VI. IUPAC Subcommittee on Gas Kinetic Data Evaluation for Atmospheric Chemistry

5. High pressure range of the addition of HO to HO, NO, NO2, and CO. I. Saturated laser induced fluorescence measurements at 298 K

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