Comparative energy content of steel during modernization of oao northern pipe plant steel smelting production / Zuev M.V., Lisienko V.G., Zasukhin A.L., Shirokov V.S., Pyatkov V.L. // Refractories and Industrial Ceramics. - 2011. - V. 52, l. 4. - P. 258-263.

ISSN:
10834877
Type:
Article
Abstract:
The comparative energy content of open-hearth steel with a scrap-process and electric steel in the modernization stage of electric steel smelting production is considered. The structure of steel energy content is revealed in the form of technological fuel number (TFN) and the main limiting factors of energy content are determined. Amarked reduction is demonstrated for the energy content of electric steel compared with open-hearth steel. The specific nature of the carburization process for scrap is demonstrated. Typical energy content indices are revealed. The main reserves of energy resource conservation are determined. © 2011 Springer Science+Business Media, Inc.
Author keywords:
Comparative energy-output ratio; Cost-effective use of resources; Dynamic energy intensity; Electric steelmaking; Limiting factors; Modernization; Open-hearth process; Steelmaking; Structure of steel energy intensity
Index keywords:
Comparative energy-output ratio; Cost-effective use of resources; Dynamic energy intensity; Electric steel making; Limiting factors; Conservation; Energy resources; Modernization; Natural resources; O
DOI:
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Affiliations B. N. El'tsin Ural Federal University, Ekaterinburg, Russian Federation
Author Keywords Comparative energy-output ratio; Cost-effective use of resources; Dynamic energy intensity; Electric steelmaking; Limiting factors; Modernization; Open-hearth process; Steelmaking; Structure of steel energy intensity
References Tupitsyna, O., Absolute competitive capacity: Interview with managing director of the northern pipe plant M. B. Zuev (2009) Vestnik TMK, 24 (3), pp. 18-19; Dvorkin, V., Energy effective investment (2009) Vestnik TMK, 24 (3), pp. 14-17; Lisienko, V.G., Shchelokov, Y.M., Rozin, S.E., Energy Analysis. Procedure and Basic Information Provisions: Teaching Aid [In Russian], (201). , UGTU-UPI, Ekaterinburg; Lisienko, V.G., Shchelokov, Y.M., Ladygichev, M.G., (2002) Energy Saving Reader: Reference Edition in 2 Books, Book, 1. , (V. G. Lisenko, editor) [in Russian], Teplotekhnik, Moscow; Lisienko, V.G., Shchelokov, Y.M., Ladygichev, M.G., (2005) Melting Unit: Reference Edition in 4 Books, Book, 1. , (V. G. Lisenko, editor) [in Russian], Teplotekhnik; Lisienko, V.G., Shchelokov, Y.M., Ladygichev, M.G., (2005) Melting Unit: Reference Edition in 4 Books, Book, 2. , (V. G. Lisenko, editor) [in Russian], Teplotekhnik; Lisienko, V.G., Shchelokov, Y.M., Ladygichev, M.G., (2007) Erection of Industrial Furnaces. Planning of Melting Units: Reference Edition, Book, 3. , (V. G. Lisenko, editor) [in Russian], Teplotekhnik
Correspondence Address Zuev, M.V.; B. N. El'tsin Ural Federal University, Ekaterinburg, Russian Federation
Language of Original Document English
Abbreviated Source Title Refract. Ind. Ceram.
Source Scopus