FireDOC Search

displaying 1 - 10 results in total 34

  • Wichman, I. S.; Atreya, A.
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    Simplified Model for the Pyrolysis of Charring Materials.
    National Bureau of Standards, Gaithersburg, MD; Michigan State Univ., East Lansing
    Combustion and Flame, Vol. 68, No. 3, 231-247, June 1987
    National Science Foundation, Washington, DC,

  • Hilado, C. J.; Brick, V. E.; Brauer, D. P.
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    Effect of Pyrolysis Temperature and Air Flow on Toxicity of Gases from a Polycarbonate Polymer.
    Journal of Combustion Toxicology, Vol. 5, No. 4, 485-493, November 1978

  • Seeger, M.; Gritter, R. J.
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    Thermal Decomposition and Volatilization of Poly(a-olefins).
    IBM Research Lab., San Jose, CA
    Journal of Polymer Science: Polymer Chemistry Edition, Vol. 15, 1393-1402, 1977
    15th Prague IUPAC Microsymposium, Preprint A3, Prague, CSSR, July 21-24, 1975, 1977

  • Hilado, C. J.; Huttlinger, N. V.; Brauer, D. P.
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    Effect of Pyrolysis Temperature and Air Flow on Toxicity of Gases from a Polyethylene Polymer.
    Journal of Combustion Toxicology, Vol. 5, No. 4, 465-475, November 1978

  • Hertzberg, M.; Zlochower, I. A.; Edwards, J. C.
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    Coal Particle Pyrolysis Mechanisms and Temperatures.
    Bureau of Mines, Pittsburgh, PA
    RI 9169, 1988, 42 p.

  • Fredlund, B.
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    Model for Heat and Mass Transfer in Timber Structures During Fire: A Theoretical, Numerical and Experimental Study.
    Lund Institute of Science and Technology, Sweden
    CIB W14/88/42 (S); LUTVDG/TVBB-1003, May 1988, 254 p.

  • Hilado, C. J.; Huttlinger, P. A.
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    Rising vs. Fixed Pyrolysis Temperature in Evaluating Toxicity.
    Product Safety Corp., Sunnyvale, CA
    Modern Plastics, Vol. 57, No. 9, 89,94, September 1980

  • Hilado, C. J.; Casey, C. J.; Schneider, J. E.
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    Effect of Pyrolysis Temperature on Relative Toxicity of Some Plastics.
    California Univ., San Francisco
    Fire Technology, Vol. 15, 122-129, May 1979

  • Hilado, C. J.; Cumming, H. J.; Schneider, J. E.
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    Relative Toxicity of Pyrolysis Gases From Materials: Effects of Temperature, Air Flow and Criteria.
    Fire Safety Center, Sunnyvale, CA
    Fire and Materials, Vol. 3, No. 4, 183-187, December 1979

  • Muramatsu, M.; Umemura, S.; Okada, T.
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    Mathematical Model of Evaporation--Pyrolysis Processes Inside a Naturally Smoldering Cigarette.
    Japan Tobacco and Salt Public Corp., Kanagawa, Japan
    Combustion and Flame, Vol. 36, 245-262, 1979