Technological modes of metals direct reduction in an aggregate of jet-emulsion type
https://doi.org/10.17073/0368-0797-2020-5-364-372
Abstract
About the Authors
I. A. RybenkoRussian Federation
Dr. Sci. (Eng.), Professor of the Chair of Applied Information Technology and Programming
Novokuznetsk, Kemerovo Region
Hans-Görg Roos
Germany
Ph.D, Professor of Mathematics
Dresden, Sachsen
References
1. Yusfin Yu.S., Gimmel’farb A.A., Pashkov N.F. Novye protsessy polucheniya metalla [New processes of metal production]. Moscow: Metallurgiya, 1994, 320 p. (In Russ.).
2. Lisienko V.G., Solov’eva N.V., Trofimova O.G. Al’ternativnaya metallurgiya: problema legirovaniya, model’nye otsenki effektivnosti [Alternative metallurgy: problem of alloying, model effectiveness evaluation]. Moscow: Teplotekhnik, 2007, 440 p. (In Russ.).
3. Processes of predominantly liquid-phase reduction of iron. Tekhnicheskie nauki. Metallurgiya i obrabotka metallov [Technical science. Metallurgy and metal processing]. Available at URL: http://knigi.link/obrabotka-metallov-metallurgiya/protsessyi-preimuschestvenno-jidkofaznogo-12575.html. (Accessed: 09.04.2020). (In Russ.).
4. Knyazev V.F., Gimmel’farb A.I., Nemenov A.M. Beskoksovaya metallurgiya zheleza [Non-coking metallurgy of iron]. Moscow: Metallurgiya, 1972, 272 p. (In Russ.).
5. Romenets V.A. Protsess Romelt [Romelt process]. Moscow: ID Ruda i Metally, 2005, 400 p. (In Russ.).
6. Tsymbal V.P., Mochalov S.P., Rybenko I.A. etc. Protsess SER metallurgicheskii struino-emul’sionnyi reaktor [JER process – metallurgical jet-emulsion reactor]. Moscow: Metallurgizdat, 2014, 488 p. (In Russ.).
7. Сhemical WorkBench. Available at URL: http://www.kintech.ru/. (Accessed: 09.04.2020).
8. NIST-JANAF. Available at URL: http://webbook.nist.gov. (Accessed: 09.04.2020).
9. NASA CEA. Available at URL: http://www.lerc.nasa.gov/WWW/CEAWeb/. (Accessed: 09.04.2020).
10. MTDATA. Available at URL: http://www.npl.co.uk/npl/cmmt/mtdata/mtdata.htm. (Accessed: 09.04.2020).
11. Thermo-Calc. Available at URL: http://www.thermocalc.se. (Accessed: 09.04.2020).
12. MALT2. Available at URL: http://www.kagaku.com/malt. (Accessed: 09.04.2020).
13. HSC Chemistry. Available at URL: http://www.outokumpu.fi/hsc/. (Accessed: 09.04.2020).
14. EQS4WIN. Available at URL: http://www.mathtrek.com/. (Accessed: 09.04.2020).
15. ThermoChemical Calculator. Available at URL: http://blue.caltech.edu/tcc/index.html. (Accessed: 09.04.2020).
16. F*A*C*T. Available at URL: http://www.crct.polymtl.ca/fact/fact.htm. (Accessed: 09.04.2020).
17. Rybenko I.A. Razvitie teoreticheskikh osnov i razrabotka resursosberegayushchikh tekhnologii pryamogo vosstanovleniya metallov s ispol’zovaniem metoda i instrumental’noi sistemy modelirovaniya i optimizatsii. Avtoref. dis... dokt. tekhn. nauk [Development of theoretical foundations and resource-saving technologies for direct reduction of metals using method and instrumental system of modeling and optimization. Extended Abstract of Dr. Sci. Diss.]. Novokuznetsk, 2018, 40 p. (In Russ.).
18. Rybenko I.A. “Engineering-Metallurgy” instrumental system for a wide range of optimization tasks. In: Metallurgiya: tekhnologii, innovatsii, kachestvo: tr. XX mezhdunar. nauch.-prakt. konf. Ch. 1. [Metallurgy: technology, innovation, quality: Papers of the XX Int. Sci.-Pract. Conf. Part 1]. Novokuznetsk: ITs SibGIU, 2017, pp. 75–81. (In Russ.).
19. Trusov B.G. TERRA software system for modeling phase and chemical equilibria at high temperatures. In: III mezhd. simpozium “Gorenie i plazmokhimiya”, 24 – 26 avgusta 2005, Almaty, Kazakhstan [III Int. Symposium “Combustion and Plasma Chemistry”. August 24 – 26, 2005, Almaty, Kazakhstan]. Almaty: izd. Kazak universiteti, 2005, pp. 52–58. (In Russ.).
20. Rybenko I.A. Development of optimal technological modes for producing metals using methods of mathematical modeling and instrumental systems. Chernaya metallurgiya. Byul. in-ta “Chermetinformatsiya”. 2018, no. 2, pp. 57–61. (In Russ.).
Review
For citations:
Rybenko I.A., Roos H. Technological modes of metals direct reduction in an aggregate of jet-emulsion type. Izvestiya. Ferrous Metallurgy. 2020;63(5):364-372. (In Russ.) https://doi.org/10.17073/0368-0797-2020-5-364-372