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Explosion Hazard of Aromatic Organic Compounds Containing One or Two Nitrogroups

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Warianty tytułu
Języki publikacji
PL
Abstrakty
EN
Aromatic compounds containing one or two nitrogroups use in chemical industry commercially, in the first place there are mono- and di- nitroderivatives of benzene and toluene. Some industrial incidents at heat selfignition of them, and explosive properties of them were discussed in literature. This investigation deals with explosion hazard of less investigated in this regard class nitrocompounds - azo-dyes. All azo-dyes contain azo or amino groups, two benzene circles with substituents. Some of them contain one or two nitrogroups. Nitro- and azo- groups can give explosion hazard to organic substance. Temperature of fast decomposition beginning at heating and kinetic parameters of slow decomposition were experimentally measured for nine of them. The enthalpies of formation were measured experimentally, and explosion parameters were calculated for three of them. These results gave an opportunity to calculate the temperatures of heat explosion on a base of fundamental theory of heat explosion at convection heat transfer with environment. It was found that calculated temperatures of heat explosion agreed with experimental temperatures of fast decomposition beginning at heating, the divergence was 4.5% on average. Thus it was shown that investigated azo-dyes were the weak explosives, and theory of heat explosion could be quite applied to them.
Słowa kluczowe
Rocznik
Strony
49--55
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
autor
autor
  • Mendeleev University of Chemical Technology, Miusskaya Sq. 9,125190 Moscow, Russia, KozakGD@nm.ru
Bibliografia
  • [1] Kondrikov B.N., Technological safety on bound of ages, (Rus) Moscow, Publish center of Mendeleev University of chemical technology, 2006, p. 112.
  • [2] Raikova V.M., The Main Directions of Investigation of Safety of Nitrocompounds Production Process, in: Reliable and safety of technological processes, (Rus.) Publish center of Mendeleev University of chemical technology, Moscow, 2006, pp. 26-50.
  • [3] Kozak G.D., Factors Augmenting the Detonability of Energetic Materials, Propellants, Explos., Pyrotech., 2005, 30(4), 291-297.
  • [4] Kozak G.D., Explosion Hazard of Chemical Substances with Explosiphore Groups, in: Reliable and safety of technological processes, (Rus.) Publish center of Mendeleev University of chemical technology, Moscow, 2006, pp. 51-75.
  • [5] Kozak G.D., Akinin N.I., Raikova V.M., Arinina S.V., Explosion Hazard of Some Organic Peroxides, Proc. 6th seminar “New trends in research of energetic materials”, Univ. Pardubice, CSR, 2003, pp. 173-182.
  • [6] Akinin N.I., Arinina S.V., Kozak G.D., Ponomarev I.N., The Explosion Parameters of Benzoyl and Cyclohexanone Peroxides, Proc. 7th seminar “New trends In research of energetic materials”, Univ. Pardubice, Czech. Republic, April 20-22, 2004, pp. 409-418.
  • [7] Arinina S.V., Kozak G.D., Comparative explosion hazard of peroxides and of nitrocompounds, Proc. 8th seminar “New trends in research of energetic materials”, Univ. Pardubice, Czech. Republic, April, 2005, pp. 412-428.
  • [8] Aleshkina E.I., Egorshev V.YU., Kozak G.D., Investigation of Oxidiphenyl Azide Explosive Properties, (Rus.), Chemical industry today, 2004, (3), 49-55.
  • [9] Vasin A.YA., Makarov G.V., Marinina L.K., Svetlova L.M., General Regularities of Aromatic Azo-Compounds Thermal Decomposition, (Rus.) Proc. academies, Chemistry and chemical technology, 1984, 27(5), 535-539.
  • [10] Vasin A.Ya., Marinina L.K., Anosova E.B., Investigation of Correlation Between Fire Hazard and Thermal Stability of Solid Chemical Substances, (Rus.) Chemical industry today, 2007, (3), 46-50.
  • [11] Sumin A.I., Kondrikov B.N., Gamezo V.N., Raikova V.M., Shock and Detonation General Kinetics and Thermodynamics in Reactive Systems Computer Package, Proc. 11th Int. Detonation Symposium, USA, Bookcomp, Ampersand, 2000, pp. 30-35.
  • [12] Kondrikov B.N., Raikova V.M., Samsonov B.S., Kinetic of Reaction of Burning of Nitrocompounds at High Pressure, (Rus.) Combustion, explosion and shock waves, 1973, 9(1), 84-90.
  • [13] Kondrikov B.N., Ignition and Burning of Nitrocompounds, Textbook (Rus.), Moscow, Publish center of Mendeleev University of chemical technology, 1985, p. 80.
  • [14] Kondrikov B.N., Burning of High Explosives, Limiting Conditions of its Initiation and Propagation, (Rus.), Thesis for a Doctor’s degree, Moscow, 1973, p. 350.
  • [15] Explosion and fire. Investigation report No. 2003-01-I-MS, U.S. Chemical safety and hazard investigation board, 2003, p. 77.
  • [16] Dubovik A.V. et al., Estimation of Trinitrotoluol Equivalent of Couloring Agent Diazol Scarlet-K, in: Reliable and safety of technological processes, (Rus) Publish center of Mendeleev University of chemical technology, Moscow, 2006, pp. 136-159.
  • [17] Frank-Kamenetskii, Diffusion and heat transfer in chemical kinetic, (Rus.) Science, Moskow, 1967, p. 491.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT1-0034-0049
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