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displaying 1 - 10 results in total 25

  • Biordi, J. C.; Lazzara, C. P.; Papp, J. F.
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    Chemical Flame Inhibition Using Molecular Beam Mass Spectrometry. Reaction Rates and Mechanisms in a Methane Flame Inhibited With 1.1% CF3Br.
    Bureau of Mines, Pittsburgh, PA
    RI 8307, 1978, 47 p.

  • Biordi, J. C.; Lazzara, C. P.; Papp, J. F.
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    Chemical Flame Inhibition Using Molecular Beam Mass Spectrometry. An Examination of the Partial Equilibration Hypothesis and Radical Recombination in 1/20 Atm Methane Flames.
    Bureau of Mines, Pittsburgh, PA
    RI 8222, 1977, 32 p.

  • Gay, R. L.; Young, W. S.; Knuth, E. L.
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    Quenching of Nitric-Oxide Formation in Methane-Air Flames by Secondary-Air Injection.
    California Univ., Los Angeles
    WSS/CI 77-11,
    Combustion Institute/Western States Section. Combustion of Cellulosic Fuels--Combustion Technology for Pollution Control. Spring Meeting, 1977. April 18-19, 1977, Seattle, WA, 1-46 p., 1977

  • Biordi, J. C.; Lazzara, C. P.; Papp, J. F.
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    Molecular Beam Mass Spectrometry Applied to Determining the Kinetics of Reactions in Flames. Part 2. A Critique of Rate Coefficient Determinations.
    Bureau of Mines, Pittsburgh, PA
    Combustion and Flame, Vol. 26, No. 1, 57-76, February 1976

  • Biordi, J. C.; Lazzara, C. P.; Papp, J. F.
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    Chemical Flame Inhibition Using Molecular Beam Mass Spectrometry. Reaction Rates and Mechanisms in a 0.3 Percent CF3Br Inhibitedd Methane Flame.
    Bureau of Mines, Pittsburgh, PA
    RI 8029, 1975, 46 p.

  • Gay, R. L.; Young, W. S.; Knuth, E. L.
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    Molecular Beam Sampling of H2CO and NO in One-Atmosphere Methane-Air Flames.
    California Univ., Berkeley
    1975, 25 p.

  • Hospital, A.; Roth, P.
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    In-Situ Mass Growth Measurements of Charged Soot Particles From Low Pressure Flames.
    Lehrstuhl fur Verbrennung und Gasdynamik, Duisburg, West Germany
    Combustion Institute, Symposium (International) on Combustion, 23rd. July 22-27, 1990, Combustion Institute, Pittsburgh, PA, Orleans, France, 1573-1579 p., 1991

  • Walters, E. A.; Grover, J. R.; Tapscott, R. E.; Clay, J. T., Jr.; Arneberg, D. L.; Wall, M. H.; Nimitz, J. S.; Beeson, H. D.
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    Initial Fire Suppression Reactions of Halons. Phase 3. Molecular Beam Experiments Involving Halon Clusters. Final Report. June 1988-April 1989.
    New Mexico Univ., Albuquerque
    Engineering and Services Lab., Tyndall AFB, FL, ESL-TR-89-50; SS 2.10(1), September 1990, 45 p.

  • Milne, T. A.; Greene, F. T.
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    Mass Spectrometric Studies of Reactions in Flames--Quantitative Sampling of Free Radicals From One-Atmosphere Flames. Technical Report.
    Midwest Research Inst., Kansas City, MO
    Advanced Research Projects Agency, Washington, DC, MRI Project 2551-P; ARPA Order No. 23-63; Amendment No. 38, July 16, 1965, 24 p.

  • Biordi, J. C.; Lazzara, C. P.; Papp, J. F.
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    Molecular Beam Mass Spectrometry Applied to Determining the Kinetics of Reactions in Flames. Part 1. Empirical Characterization of Flame Perturbation by Molecular Beam Sampling Probes.
    Bureau of Mines, Pittsburgh, PA
    Combustion and Flame, Vol. 23, 73-82, 1974