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50 years of the Department of Metallurgical Technologies Nizhny Tagil Institute of Technology (NTI, UrFU branch)
Название Reduction smelting of ore-coal iron ore raw materials without carburization
DOI 10.17580/chm.2022.10.02
Автор K. B. Pykhteeva
Информация об авторе

Nizhny Tagil Technological Institute (branch) of the Ural Federal University named after the first President of Russia B. N. Yeltsin, Nizhny Tagil, Russia:

K. B. Pykhteeva, Cand. Eng., Associate Prof., Dept. of Metallurgical Technologies, e-mail: pyhkb@mail.ru

Реферат

Dedicated to grandfather and father Tleugabulov Suleiman Mustafievich and Tleugabulov Boris Suleimanovich
With the traditional method of processing cast iron into steel, a sufficiently large amount of finely dispersed iron-containing waste is formed at each stage, which represents secondary raw material resources. The use of them in small quantities as part of the agglomeration charge has no practical importance. Therefore, the development of technology for their mass metallurgical processing is a problematic task of a global scale. This present work is devoted to the solution of this problem. The processes of direct reduction of metals by solid carbon on the basis of new theoretical positions of dissociation-adsorption mechanism (DAM) open the way to effective processing of dispersed metal-containing industrial waste – converter and blast furnace sludge. Converter sludge represents a significant part of metal-containing industrial waste with a high concentration of iron. When organizing the process of charge preparation from the dispersed components of the charge (ore part and coal) and their uniform mixing, a developed contact surface is achieved. Unlike coke metallurgy, which is based on the preparation and use of a charge consisting of a lumped ore part and lump coke. When such a charge is loaded into the furnace, the chemical reaction between metal oxides and solid carbon is practically unable to proceed in a solid-phase state due to the limited contact surface between them. The pelletizing of a finely dispersed mixture will allow to obtain a mono-charge and to realize the process of reducing melting of the monocharge. In this work, the technology of one-stage reduction smelting of prepared ore-coal raw materials has been developed and proposed. At the same time, it is possible not only to dispose of the generated waste of metallurgical production (converter sludge), but also to recover the metal without its excessive carburization. In doing so, the final product of this processing scheme is naturally - alloyed steel without loss of valuable elements during the oxidation period.

Ключевые слова Blast furnace, converter, reduction smelting, direct production of iron, slime, raw materials, carburization
Библиографический список

1. Tokuda K., Kikuti S., Tsuge O. Method and device for production of reduced iron. Patent RF, No. 2303072. Apllied: 11.03.2004. Published: 20.07.2007. Bulletin No. 20.
2. Kashiwaya Y., Yamaguchi Y., Kinoshita H., Ishii K.. Observation of reduction behavior of hematite with solid carbon and crystallographic orientation between hematite and magnetite. ISLJ International. 2007. Vol. 47. Iss. 2. pp. 226–233.
3. Ying Yi Zhang, Yuan Hong Qi, Zong Shu Zou, Yun Gang Li. Development prospect of rotary hearth furnace process in China. Advanced Materials Research. 2013. Vol. 746. pp. 533–553.
4. Nokhrina О. I., Khodosov I. Е. The use of hard coals in reduction of iron in the solid phase. Innovations in materials science and metallurgy: proceedings of the IV International Interactive Scientific and Practical Conference. Ekaterinburg: Izdatelstvo UrFU, 2015. pp. 32–37.
5. Nokhrina О. I., Rozhikhina I. D.,Rybenko I. А., Khodosov I. Е. Development of the basics of energy-efficient metallization processes using thermodynamic modeling. Izvestiya vuzov. Chernaya metallurgiya. 2016. Vol. 59. No. 4. pp. 237–244.
6. Ivanov I. N., Lukyanova Т. V. Russian industry in the world market: state, challenges, prospects. Stal. 2019. No. 10. pp. 66–73.
7. Tleugabulov S. М. High-tech reduction-smelting process for steel production. Stal. 2011. No. 4. pp. 14–19.
8. Tleugabulov S. М., Aytkenov N. B., Koyshina G. М., Tazhiev Е. B. Technology for obtaining ore-coal pellets from a mixture of converter and coal sludge and steel reduction smelting. Stal. 2021. No. 1. pp. 78–80.
9. Tleugabulov S. M., Tleugabulov B. S., Koishina G. M., Altybaeva D. K., Tazhiev E. B. Smelting reduction of a monocharge. Scientific and production technical. Metallurgist. 2016. Vol. 60. No. 1–2. pp. 31–37.
10. Kurunov I. F. The state and trends in the development of iron metallurgy in the world in the light of challenges of the 21st century. Iron metallurgy – challenges of the 21st century. Proceedings of the VII International Congress of Blast Furnace Workers. Moscow: Izdatelskiy dom «Kodeks», 2017. pp. 10–20.
11. Iron metallurgy: textbook for universities. Edited by Yu. S. Yusfin. 3rd edition. Moscow: IKTs «Akadem-kniga», 2004. 774 p.
12. Tleugabulov S. M., Nurumgaliev А. Kh., Koishina G. M., Aytkenov N. B. Recovery-smelting process in relation to metal-containing waste. Stal. 2019. No. 3. pp. 65–69.
13. Tleugabulov S. M. Steel reduction melting method and device for its implementation. Patent KZ, No. 31496. Applied: 13.03.2015. Published: 15.09.2016. Bulletin No. 11.

Language of full-text русский
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