Alternative Fire Suppressant Chemicals: A Research Review with Reccomendations
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Richard G. Gann | Marc R. Nyden | Robert E Tapscott | Ronald S. Sheinson | V. Babushok | R. Gann | M. Nyden | R. Tapscott | Valeri I Babushok | R. Sheinson
[1] Ted A. Moore,et al. IDENTIFICATION AND PROOF TESTING OF NEW TOTAL FLOODING AGENTS: COMBUSTION SUPPRESSION CHEMISTRY AND CUP-BURNER TESTING , 1998 .
[2] Kazuo Takahashi,et al. Inhibition of Combustion by Bromine-Free Polyfluorocarbons I. Burning Velocities of Methane Flames Containing Polyfluoroalkylamines , 1994 .
[3] R. Terrell,et al. General anesthetics. 4. Methyl pentahaloethyl and methyl heptahaloisopropyl ethers as anesthetic agents. , 1972, Journal of medicinal chemistry.
[4] M. Kurylo,et al. The gas phase reactions of hydroxyl radicals with a series of nitroalkanes over the temperature range 240–400 K , 1990 .
[5] E. W. Heinonen,et al. Advanced Streaming Agent Development, Volume IV: Tropodegradable Halocarbons. , 1996 .
[6] F. W. Bennett,et al. 317. Organometallic and organometalloidal fluorine compounds. Part VII. Trifluoromethyl compounds of phosphorus , 1953 .
[7] Mc Hale. Survey of Vapor Phase Chemical Agents for Combustion Suppression , 1968 .
[8] A. Bracken,et al. Fluorine compounds in anæsthesia (6) Examination of fourteen heavily halogenated ring compounds , 1964, Anaesthesia.
[9] E. M. Bulewicz,et al. Catalytic effect of metal additives on free radical recombination rates in H2+O2+N2 flames , 1971 .
[10] H. S. Gutowsky. Techniques in Chemistry , 1966 .
[11] Atul K. Jain,et al. Evaluation of ozone depletion potentials for chlorobromomethane (CH2ClBr) and 1-bromo-propane (CH2BrCH2CH3) , 1998 .
[12] G. B. Skinner,et al. Effects of various inhibitors on hydrogen-air flame speeds , 1963 .
[13] R. Atkinson. Kinetics and mechanisms of the gas-phase reactions of the hydroxyl radical with organic compounds , 1989 .
[14] Richard Betts,et al. The science of climate change , 2010 .
[15] M. M. Boudakian. Fluorinated Aromatic Compounds , 2000 .
[16] Richard G Gann,et al. Fire suppression system performance of alternative agents in aircraft engine and dry bay laboratory simulations , 1995 .
[17] H. Wise,et al. The effect of metal salts on premixed hydrocarbon—air flames , 1963 .
[18] J. T. Hughes,et al. Flame Extinguishment Properties of Dry Chemicals: Extinction Weights for Small Diffusion Pan Fires and Additional Evidence for Flame Extinguishment by Thermal Mechanisms: , 1992 .
[19] D. M. Cunnold,et al. Atmospheric Trends and Lifetime of CH3CCI3 and Global OH Concentrations , 1995, Science.
[20] J. Shreeve,et al. Bis(perfluoroalkyl)sulfur difluorides and bis(perfluoroalkyl) sulfoxides , 1971 .
[21] Robert Tapscott. HALON REPLACEMENT OPTIONS FOR USE IN AIRCRAFT FIRE SUPPRESSION SYSTEMS. , 1996 .
[22] T. Matsuno,et al. Radiative Effects and Halocarbon Global Warming Potentials of Replacement Compounds for Chlorofluorocarbons , 1995 .
[23] N CORBOUD,et al. [The general anesthetics]. , 1952, Schweizerische Monatsschrift fur Zahnheilkunde = Revue mensuelle suisse d'odonto-stomatologie.
[24] E. W. Heinonen,et al. Advanced Agent Identification and Preliminary Assessment. , 1996 .
[25] A. Bracken,et al. Fluorine compounds in anaesthesia (8) , 1974, Anaesthesia.
[26] 尚弘 島影. National Institute of Standards and Technologyにおける超伝導研究及び生活 , 2001 .
[27] J. T. Hughes,et al. The Extinction of Hydrocarbon Flames Based on the Heat Absorption Processes Which Occur in Them , 1984 .
[28] G. Marchionni,et al. Hydrofluoropolyethers : Another alternative to CFCs , 1997 .
[29] P. Haaland,et al. Halon Replacement for Aircraft Fire Suppression Systems , 1998 .
[30] R. Garcia,et al. Ozone depletion and global warming potentials of CF3I , 1994 .
[31] D. Sauerbeck,et al. Changing Metal Cycles and Human Health , 1984, Dahlem Workshop Reports, Life Sciences Research Report.
[32] T. Ono,et al. New fire suppression mechanism of perfluoroalkylamines , 1995 .
[33] T. G. Lee,et al. Fire extinguishment by means of dry powder , 1957 .
[34] Valeri I. Babushok,et al. Flame inhibition by ferrocene and blends of inert and catalytic agents , 2000 .
[35] Valeri I. Babushok,et al. Chemical limits to flame inhibition , 1998 .
[37] E. Mchale,et al. The role of negative halogen ions in hydrocarbon flame inhibition , 1975 .
[38] Ronald S. Sheinson. The U.S. Navy Halon Total Flooding Replacement Program: Laboratory Through Full-Scale , 1997 .
[39] V. L. Orkin,et al. Atmospheric lifetimes and global warming potentials of hydrofluoroethers: Reactivity toward OH, UV spectra, and IR absorption cross sections , 1999 .
[40] A. Lovelace,et al. Free Radical Additions Involving Fluorine Compounds. IV. The Addition of Dibromodifluoromethane to Some Fluoroölefins1 , 1955 .
[41] M. Vanpee,et al. A study of flame inhibition by metal compounds , 1979 .
[42] E. Weil,et al. A Review of Phosphate Ester Fire Resistance Mechanisms and Their Relevance to Fluid Testing , 1996 .
[43] K. Ulm,et al. Synthesis and chemistry of perfluoro-2-iodo-2-methyl-alkanes , 1987 .
[44] G. Linteris,et al. Experimental study of the inhibition of premixed and diffusion flames by iron pentacarbonyl , 1996 .
[45] G. Linteris. Suppression of Cup-Burner Diffusion Flames By Super-Effective Chemical Inhibitors and Inert Compounds | NIST , 2001 .
[46] A. Townshend. Metals and their Compounds in the Environment. Occurrence, Analysis and Biological Relevance , 1993 .
[47] Richard G. Gann. Next Generation Fire Suppression Technology Program (NGP) , 1999 .
[48] E. R. Ritter,et al. Thermal reactions of 2-chloro-1,1,1,2-tetrafluoroethane , 1996 .
[49] PowerFlex® 700H. TECHNICAL DATA , 1949 .
[50] J. E. Dolan. The suppression of methane/air ignitions by fine powders , 1957 .
[51] T. S. Scott,et al. Dangerous Properties of Industrial Materials , 1969 .
[52] William J. Miller,et al. Inhibition of low pressure flames , 1969 .
[53] Richard G Gann. Next generation fire suppression technology program (NGP):: 1998 technical highlights , 1999 .
[54] H. Wagner,et al. Influence of additives on the velocity of laminar flames , 1961 .
[55] A. V. Tiggelen,et al. Inhibition and extinction of premixed flames by dust particles , 1964 .
[56] Anthony P. Hamins,et al. Extinction of nonpremixed flames with halogenated fire suppressants , 1994 .
[57] B. Robbins. Preliminary studies of the anesthetic activity of fluorinated hydrocarbons. , 1946, The Journal of pharmacology and experimental therapeutics.
[58] J. Tatlow,et al. 31. Aromatic polyfluoro-compounds. Part I. The synthesis of aromatic polyfluoro-compounds from pentafluorobenzene , 1959 .
[59] R. Bagnall,et al. New inhalation anaesthetics: II. Fluorinated methyl propyl ethers , 1978 .
[60] Richard G Gann. FY2000 annual report :: next generation fire suppression technology program (NGP) , 2001 .
[61] R. Terrell,et al. General anesthetics. 2. Halogenated methyl isopropyl ethers. , 1971, Journal of Medicinal Chemistry.
[62] E. Fisher,et al. Inhibition of Non-Premixed Flames by Dimethyl Methylphosphonate , 1997 .