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Application of industrial monitoring to investigation of technological processes

Identyfikatory
Warianty tytułu
PL
Zastosowanie monitoringu przemysłowego do badań procesów technologicznych
Języki publikacji
EN
Abstrakty
EN
A new technique for processing of industrial monitoring data is developed and used to study the production of hydrogen cyanide via oxidative ammonolysis of methane by the Andrussov method. A mathematical model of the ammonolysis process is developed, based on the Brandon method. Analysis of the industrial monitoring data by means of the developed technique leads to conclusions not available from laboratory experiments. Based on the obtained results a new technological regime for hydrogen cyanide production by the Andrussov method is proposed and tested under industrial conditions.
Rocznik
Strony
95--109
Opis fizyczny
Bibliogr. 30 poz., tabl. 6, rys. 7
Twórcy
autor
  • Kharkov Polytechnic University, 21 Frunze St., Kharkov 61002, Ukraine
autor
  • Departrnent of Chemistry, University of Washington, Seattle, WA 98195-1700, USA
autor
  • Kharkov Polytechnic University, 21 Frunze St., Kharkov 61002, Ukraine
autor
  • Institute of Chemistry, Jan Kochanowski University, 5 Checinska St, Kielce 25-020, Poland
Bibliografia
  • [1] G. LUKS, Experimental Methods in Inorganic Chemistry, Mir, Moscow 1965 (Rus).
  • [2] V.D. MAZIN., Planning of measurements and processing of results, S.-Petersburg University, S.-Petersburg 1992 (Rus).
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  • [4] G.J. IVCHENKO and UJ. MEDVEDEV, Mathematical statistics, Vysshaya Shkola, Moscow1984(Rus).
  • [5] J. BEDNAT and A. PIRSOL, The applied analysis of the casual data, Mir, Moscow 1989 (Rus).
  • [6] N.V. Tnusov, G.L GRYN and and A.Ya. LOBOIKO, Manufacture of the hydrocyanic acid by Andrussov method, Osnova, Kharkov 1999 (Rus).
  • [7] L. ANDRUSSOV, Angew. Chemie, 48,5931935.
  • [8] I.E. ADADUROV, Ukr. Khim. Zh., 11,2371936.
  • [9] V.I. ATROSHCHENKO, in: Technology of the connected nitrogen (VJ. ATROSCHENKO, Ed.) Kharkov Polytechnic Institute, Kharkov 1939, pp. 26-72 (Rus).
  • [10] R. WENDLANT, Electrochemie, 53,307 1949.
  • [11] A.THOMAS, Annual chimie, 4, 258 1949.
  • [12] L. ANDRUSSOW,Bull. Soc. chim. France, No 1-2,45 1951.
  • [13] N. UPDEROAFF, Petroleum Refiner., 32, 197 1953.
  • [14] U. MAFFEZZONNI, Chemie and Ind., 69, 842 1953.
  • [15] D. COSTESCU, Acad. rep. popul. Romine, Studii si cercetari chim., 56, 91 1957.
  • [16] S.S. BOBKOV, Chem. science and industry (USSR), No 2, 341957.
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  • [18] A. KRAUSE, Buli. Acad. Polon. Scien., 8, 301 1960.
  • [19] R. SHERWOOD, Industr. Eng. Chem. Fundamentals, 2, 111 1962.
  • [20] H. RUSZAWY and J. ZYOADLO ,Przem. chemiczny, 42, 323 1963.
  • [21] B. PAN and R. ROTH, Ind. Eng. Chem, Process Design and Develop., 7, 53 1968.
  • [22] S.S. BOBKOV and S.K. SMIRNOV,A hydrocyanic acid, Khimiya, Moscow 1970 (Rus).
  • [23] E. KOBERSTEIN Industr. , Eng. Chem. Prosess Design and Develop., 12,4441973.
  • [24] T. BACZYNSKA,M. SEWERYNIAK and Z. JAWORSKA-GALAS, Przem. chemiczny, 65, 6611986.
  • [25] D. HASENBERO and L. SCHMIDT,J. Catalysis, 104,441 1987.
  • [26] V.L ATROSHCHENKO and S.1. KAROIN, Technology of nitric acid, Khimiya, Moscow 1970 (Rus).
  • [27] M.M. KARAVAEV,A.P. ZASORIN and N.F. KLESCHEV, Catalytic oxidation of ammonia, Khimiya, Moscow 1970 (Rus).
  • [28] V.V. KAFAROV, Methods of cybernetics in chemistry and chemical technology, Khimiya, Moscow 1976 (Rus).
  • [29] B. PAN, J. Catalysis, 21, 271971.
  • [30] P. ROTH and T. JUST, Ber. Bunseng. Phys. Chem., 80, 171 1976.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPP1-0026-0009
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