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Verification of assumption about mechanism of reaction of nitric oxide with oxygen

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Some variations of nitric oxide oxidation have been analysed. Some available data of kinetic investigation results as well as quantitative criteria of the accepted assumptions were used. In order to reconcile the experimental kinetic equation and complex temperature relationship of the constant of the equation, some hypotheses of the concurrent reactions were verified using two independent ways. It has been proved that a multistage mechanism predominates at lower temperatures. Hypothetical constant reaction rates at quasi equilibrium state have been estimated using the discussed mechanism. Another mechanism of complex reaction or elementary reaction predominates at higher temperatures. Moreover, taking the assumption of the multistage mechanism and the stationary state approach in acceptable limits is the same as the acceptance of the elementary character of nitric oxide oxidation reaction at higher temperatures.
Rocznik
Strony
40--45
Opis fizyczny
Bibliogr. 14 poz., tab.
Twórcy
autor
  • Fertilizers Research Institute, al. Tysiąclecia Panstwa Polskiego 13A, 24-110 Pulawy, Poland, fax: (081) 887 65 66
  • Institute of Inorganic Technology and Mineral Fertilizers, University of Technology, Wybrzeze St. Wyspiańskiego 23
autor
  • Institute of Inorganic Technology and Mineral Fertilizers, University of Technology, Wybrzeze St. Wyspiańskiego 23
autor
  • Fertilizers Research Institute, al. Tysiąclecia Panstwa Polskiego 13A, 24-110 Pulawy, Poland, fax: (081) 887 65 66
Bibliografia
  • (1) Atkins P. W., Physical Chemistry, Oxford University Press, 1990, 802.
  • (2) Glasson W. A., Tuesday Ch.S. The Atmospheric Thermal Oxidation of Nitric Oxide, J. Am. Chem. Soc., 1963, 85, 2901.
  • (3) Cotton F. A., Wilkinson G., Advanced Inorganic Chemistry, John Wiley, 1988, 320.
  • (4) Greig J. D., Hall P. G., Thermal Oxidation of Nitric Oxide at Low Concentrations, Trans. Farad. Soc., 1967, 63, 655.
  • (5) Treacy J. C., Daniels F., Kinetic Study of the Oxidation of Nitric Acid with Oxygen in the Pressure Range 1 to 20 mm, J. Am. Chem. Soc., 1955, 77, 2033.
  • (6) Olbregts J., Termolecular reaction of Nitrogen Monoxide and Oxygen: A Still Unsolved Problem, Inter. J. Chem. Kinet., 1985, 17, 835.
  • (7) Boudart M., Microkinetics, in: Handbook of Heterogeous Catalysis, VCH Weinheim, 1997, 3, 963.
  • (8) Boudart M., Djega-Mariadassou G., Kinetics of Heterogeneous Catalytic Reactions, Princeton Univ. Press, Princeton, N.Y., 1984, 79.
  • (9) Głowiński J., Tylus W., Hałat A., Analysing a Sequence of Reactions by the De Donder Equation, Polish J. Chem., 2001, 75, 105.
  • (10) Głowiński J., Tylus W.. Verifying the Assumption of Steady-state Intermediate Concentration, Polish J. Chem. Technol., 1999, 1, 7.
  • (11) Kondratev M. M., Konstanty skorosti gazofaznykh reaktsii. Nauka, Moskva, 1971, 228.
  • (12) Mallard W. G., Westley F., Herron J. T., Hampson R. F., Frizzell D. H., NIST Chemical Kinetics Database, WindowsTM Version 2Q98, Users' Guide, 1999.
  • (13) Malko M. W., Nesterenko W. B., Kinetika i mekhanizm khimiczeskikh reaktsii w dissotsiruyushchem teplonositele - cheterekhokisi azota, Nauka i Technika, Minsk, 1974, 63.
  • (14) Brown F. B., Crist R. H., Further Studies on the Oxidation of Nitric Oxide. The Rate of the Reaction between Carbon Monoxide and Nitrogen Dioxide, J. Chem. Phys., 1941, 9, 840.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS3-0002-0057
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