Журналы →  Obogashchenie Rud →  2013 →  №6 →  Назад

COMPLEX RAW MATERIAL UTILIZATION
Название Magnetic products recovery from fly ash of Kashirskaya power plant
Автор Ryabov Yu. V., Delitsyn L. M., Vlasov A. S., Golubev Yu. N.
Информация об авторе

Joint Institute for High Temperatures of the Russian Academy of Sciences (Russia):

Ryabov Yu. V., Senior Researcher, Ph. D. in Engineering Sciences, Ryabov1938@yandex.ru

Delitsyn L. M., Head of Laboratory, Doctor of Geology and Mineralogy, delitzin@ihead.ras.ru

Vlasov A. S., Senior Researcher, Ph. D. in Engineering Sciences

 

Interregional Research and Production Concern «Neksi», CJSC (Russia):

Golubev Yu. N., Deputy Director General

Реферат

The developed technology provides for complete utilization of coalfired power plants' fly ash with maximum possible recovery of not only carbon, but also iron with a view to produce alumino-silicate product, suitable for production of construction materials. Quantites of Fe2O3, accumulated in ash dumps of a number of power plants, that burn coal from Ekibastuz and Kuznetsk Coal Basins, indicate that ash is an important large source of magnetic products. The differential characteristic of ash, if compared with iron ore deposits, is that it contains iron in the form of magnetic balls and glass phase. Balls are present as separate formations and in intergrowth with glass phase. On the basis of the results of Kashirskaya power plant fly ash phase and chemical analysis, as well as fly ash physical properties, the power plant in question burning coal from Kuznetsk Coal Basins, a technology for fly ash beneficiation has been developed. The proposed technology is based on electro dynamic separation, which, using eddycurrent effect in electrically conductive minerals, also permits to recover weaklymagnetic particles into magnetic product. Magnetic product from electrodynamic separator, resulting from ash with 8 % iron content, is represented by magnetic balls, and is further subjected to attritioning, desliming, drying and classification. Fraction finer than 80 microns contains approximate ly 70 % iron, fraction coaser than 80 microns — 60 % iron. Total recovery of iron into both products exceeds 50 %. Field of utilization of these products is quite large.

Ключевые слова Fly ash, electrodynamic separation, attritioning, magnetic balls, beneficiation, grade, recovery
Библиографический список

1. Delitsyn L. M., Vlasov A. S. Teploenergetika — Thermal Engineering, 2010, No. 3, pp. 49–55.
2. Delitsyn L. M., Ryabov Yu. V., Vlasov A. S. Ekologiya promyshlennogo proizvodstva — Industrial ecology (EPP), 2012, Iss. 1, pp. 74–79.
3. Rudnyye mestorozhdeniya SSSR (USSR ore deposits). Under the editorship of acad. V. I. Smirnov. Moscow, Nedra, 1978, 352 p.
4. Kizelshteyn L. Ya., Dubov I. V., Shpitsgluz A. L., Parada S. G. Komponenty zol i shlakov TES (Components of thermal power plants ashes and slags). Мoscow, Energoatomizdat, 1995, 176 p.
5. Panteleyev V. G., Larina E. A., Melentyev V. A. et al. Sostav i svoystva zoly i shlakov TES. Spravochnoye posobiye (Structure and properties of thermal power plants ashes and slags. Handbook). Ed. V. A. Melentyev. Leningrad, Energoatomizdat, 1985, 288 p.
6. Kizelshteyn L. Ya., Kalashnikov A. S. Khimiya tverdogo topliva — Solid Fuel Chemistry, 1991, No. 6, pp. 128–134.
7. Khytsnar Ya., Kokhan'ski B., Tora B. Polucheniye, svoystva i primeneniye magnetitovoy pyli iz pobochnykh produktov szhiganiya uglya (Production, properties and use of magnetite dust from coal firing byproducts). Materialy IV nauchnoprakticheskogo seminara «Zoloshlaki TES: udaleniye, transport, pererabotka, skladirovaniye» (Proc. of IV research and practice seminar «Ash and slag of thermal power station: disposal, transport, processing, warehousing»). Moscow, April 19–20, 2012. Moscow, Publishing House MPEI, 2012, pp. 98–102.
8. Zyryanov V. V., Petrov S. A., Matviyenko A. A. Neorganicheskiye materialy — Inorganic Materials, 2010, Vol. 46, No. 6, pp. 729–737.
9. Bayukov O. A., Anshits N. N., Balayev A. D. Neorganicheskiye materialy — Inorganic Materials, 2005, Vol. 41, No. 1, pp. 54–63.
10. Sharonova O. M., Anshits N. N., Oruzheynikov A. I. Khimiya v interesakh ustoychivogo razvitiya — Chemistry for Sustainable Development, 2003, Vol.11, pp. 639–648.
11. Pat. 2407595 Russian Federation.
12. Anshits N. N., Bayukov O. A., Yeremin Ye. V., Solovyev L. A., Rabchevskiy Ye. V., Anshits A. G. Fizika tverdogo tela — Physics of the Solid State, 2010, Vol. 52, Iss. 6, pp. 1115–1119.
13. Sokolov E. V., Maksimova N. V., Nigmatulina Ye. N., Frenkel A. Ye. Priroda, khimicheskiy i fazovyy sostav energeticheskikh zol chelyabinskikh ugley (Nature, chemical and phase composition of energetical ashes of Chelyabinsk coals), Novosibirsk, Publishing House SB RAS, 2001, 107 p.
14. Osetrov Ye. N. Ferrosfery energeticheskikh zol — katalizatory okislitelnoy kondensatsii prirodnogo gaza (Ferrospheres of energetical ashes — the catalyzators of natural gas oxidative condensation). Sbornik materialov VII Vserossiyskoy nauchnotekhni cheskoy konferentsii studentov, aspirantov i molodykh uchenykh, posvyashchennoy 50-letiyu pervogo poleta cheloveka v kosmos (Proc. of VII All-Russian scientific and technical conf. of students, postgraduates and young researchers dedicated to semicentenary of the first human's flight to space), Krasnoyarsk, Siberian Federal University, 2011, pp. 17–22.
15. Buvakov K. V., Zavorin A. S., Gladkov V. Ye. Izvestiya Tomskogo politekhnicheskogo universiteta — The Bulletin of Tomsk Polytechnic University, 2006, Vol. 309, No. 5, pp. 136–140.
16. Mnushkin I. I., Netyaga O. B., Mastyka Yu. S., Timchenko N. A. Magnitnaya separatsiya zol teplovykh elektrostantsiy (Magnetic separation of thermal power station ashes). Obogashcheniye poleznykh iskopayemykh. Nauchnotekhnicheskiy sbornik (Minerals processing. Scientifictechnical collector of articles), Kiev, Tekhnika, 1990, Iss. 40, pp. 65–69.
17. Pat. 78097 Russian Federation.
18. Anshits A. G., Kondratenko Ye. V., Fomenko Ye. V., Anshits N. N., Sharonova O. M., Nizov V. A., Kovalev A. M., Bayukov O. A., Salanov A. N. Khimiya v interesakh ustoychivogo razvitiya — Chemistry for Sustainable Development, 1999, No. 2.
19. Kopytov M. A., Golovko A. G. Izvestiya Tomskogo politekhnicheskogo universiteta — The Bulletin of Tomsk Polytechnic University, 2009, Vol. 315, No. 3, pp. 83–86.
20. Pat. 2110852 Russian Federation.

Language of full-text русский
Полный текст статьи Получить
Назад