Журналы →  Chernye Metally →  2018 →  №11 →  Назад

Ironmaking
Название Properties of coal for the production of pulverized coal and the criteria for their selection
Автор P. I. Chernousov, S. N. Seregin, O. V. Golybev
Информация об авторе

National University of Science and Technology «MISIS» (Moscow, Russia):

P. I. Chernousov, Cand. Eng., Associate Prof., e-mail: p.chernou@yandex.ru
O. V. Golubev, Cand. Eng., Associate Prof., e-mail: olega-san@yandex.ru

 

Stoilensky Mining and Concentrating Works (Staryi Oskol, Russia):
S. N. Seregin, Director of Repair and Maintenance Complex, e-mail: seregin_sn@nlmk.com

Реферат

Among the factors that determining the effectiveness of the technology of injection of pulverized coal (PC), the optimal choice of the used coal is playing an important role. Currently, a number of technical and economic criteria have been determined, which make it possible to evaluate the effectiveness of the use of any given coal as a PC. The main one is the «actual» coal-to-coke replacement ratio, which depends on many parameters, some of which are individual for particular enterprises and furnaces. Research analysis conducted in recent decades in the field of the influence of various parameters on the coke replacement ratio showed a signifi cant difference both in the employed approaches and in the obtained results. The high burning quality of coal used at the initial stage of the development of the PC technology made it possible to practice the technology of their use bypassing the problem of incomplete combustion of coal particles in the tuyere zone. With the accumulation of the practical experience and the development of theoretical foundations for the use of PC in the blast-furnace process, preference was given to coals with a low volatile. Coal size reduction and particle-size distribution of PC have a great significance in a practical use of PC. Preliminary assessment of the efficiency of using coal or a mixture of coal as a PC is a complex task. Ideally, the solution of this problem involves the use of laboratory equipment to study the efficiency of coal combustion and the subsequent use of the results obtained as inputs to a mathematical model that takes into account both technical and economic conditions. In the past two decades, not only research organizations, but also a number of metallurgical companies are developing integrated technical and economic models for calculating the efficiency of coal use as a PC. The use of empirical dependencies between efficiency of the use of PC and its quality indicators can lead to a significant fault in the result.

Ключевые слова Pulverized coal fuel, blast fusion, coke, flammability, grinding, tuyere hearth
Библиографический список

1. Titov V. N. Engineering methodology for assessing the eff ectiveness of the use of coal of various grades as pulverized coal. Bulleten nauchno-tekhnicheskoy i economicheskoy informatsii «Chernaya metallurgiya». 2014. No. 10. pp. 38–42.
2. Ray S., Giroux L., MacPhee T., Ng Ka Wing, Todoschuk T. Study of PCI Coals in New Injection Rig at CanmetENERGY (Ottawa). Proceedings of the METEC & 2nd ESTAD 2015. Düsseldorf, 2015. p. 7.
3. Bennett P., Fukushima T. Impact of PCI Coal Quality on Blast Furnace Operations. 12th International Conference on Coal Science, Australia, 2003. p. 11.
4. Carneiro R. T. S., Sad H., Junior H. R. S. Coal Selection Methodology For Blast Furnace Injection. 60th Ironmaking conference proceedings, Iron and Steel Society, Baltimore, MD, USA, 2001. pp. 485–494.
5. Shkoller M. B. Comprehensive assessment of coal in Western and Eastern Siberia as a raw material in the production of pulverized coal for blast furnaces. Metallurg. 2011. No. 2. pp. 33–38.
6. Kharakhulakh V. S., Starovoyt A. G., Izyumsky N. N. Issues of blast furnace production in Ukraine and ways to solve them when introducing the pulverized coal injection technology. Blast-furnace process — XXI century. Proceedings of the International congress of blast furnace metallurgists. Moscow: Izdatelsky dom «Kodeks», 2010. pp. 92–99.
7. Chernousov P. I., Golubev O. V., Petelin A. L. Methodology for Analyzing Microelement Behavior in Blast Furnace Smelting. Metallurgist. 2012. Vol. 55, Iss. № 9-10. pp. 651–658.
8. Ze-Jun Ma, Zhu Wei-Chun, Ma Li, Pan Wen, Wang Dong-Qing. Application and Research on Coal Blending Model for Pulverized Coal Injection of Blast Furnace. Proceedings of the 5th International Congress on the Science and Technology of Ironmaking (ICSTI’09). Shanghai, China, 2009. pp. 825–828.
9. Carpenter A. М. Use of PCI in blast furnaces. CCC/116. London, UK, IEA Clean Coal Centre, 2006. 66 p.
10. Sharma R. Injection of semi-soft coal into a blast furnace at TATA steel. San Francisco, CA, USA, AllBusiness, 2004. 17 p.
11. Dhonau B, Hillmann S. Experience of operation of the new coal injection unit in Germany. Chernye Metally. 2016. No. 3. pp. 40–41.
12. Schott R. Experience of Kuettner in the field of new blast furnace injection technologies. Chernye Metally. 2016. No. 8. pp. 15–24.
13. Kushnarev A. V., Filippov V. V., Mikhalev V. A., Tleugabulov B. S. System improvement of vanadium hot metal process at EVRAZ NTMK. CIS Iron and Steel Review. 2017. Vol. 13. pp. 13–17.
14. Hill D. G., Dwelly M. J., Strayer T. J. Why low volatile granular coal is the choice for coal injection at Bethlehem Steel’s Burns Harbor blast furnaces. 60th Ironmaking conference proceedings, Iron and Steel Society, Baltimore, MD, USA, 2001. pp. 459–472.
15. Kruse R. J., Chaubal P. C., Moore J. B., Valia H. S. Blast Furnace PCI Coal Selection at Ispat Inland. ISSTech 2003 Conference Proceedings. Indianapolis, IN, USA, 2003. pp. 787–797.
16. Kunitomo K., Orimoto T., Nishimura T., Naito M., Yagi J. Effects of Volatile Matter of Pulverized Coal on Reducing Agents Rate of Blast Furnace and Com-bustion Behavior of Coal Mixture. Tetsu-to-Hagane. 2004. Vol. 90, Iss. 4. pp. 190–197.
17. Assis P. S., Vieira C. B., Nolasco Sobrinho P. J. New Developments for Powder Coal Injection into the Blast Furnaces. Steel Research International. 2004. No. 75. pp. 235–239.
18. Babich A. I., Zenk D. G., Gudenau G. V., Khirsh А., Klok R. Study of the conversion of injected coal and other powders in shaft furnaces. Metallurgicheskie protsessy i oborudovanie. 2008. No. 1. pp. 45–51.
19. Shkoller M. B. Promising types of raw materials for the production of pulverized coal. Metallurg. 2011. No. 3. pp. 24–27.
20. Jialong Y., Yang J., Zhang Ch., Li J., She W., Zhu W. Research on Explosive Burning Characteristics of Pulverized Coal. AISTech 2017 Conference Proceedings. Nashville, Tennessee, USA, 2017. pp. 617–626.

Language of full-text русский
Полный текст статьи Получить
Назад