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Refractories and Ceramics
Название Ceramic gas filters for purification of hot exhaust gases from heating units of ferrous metallurgy
Автор B. L. Krasnyi, K. I. Ikonnikov, O. I. Rodimov, M. O. Senina
Информация об авторе

“BAKOR” Scientific and Technical Center (Shcherbinka, Russia):

B. L. Krasnyi, Dr. Eng., General Director, e-mail: bakor@ntcbakor.ru
K. I. Ikonnikov, Cand. Eng., Head of Research Center of Special Ceramics, e-mail: konst@ntcbakor.ru
O. I. Rodimov, Junior Researcher of Research Center of Special Ceramics, e-mail: olegrodimov468@gmail.com

 

D. Mendeleev University of Chemical Technology of Russia (Moscow, Russia):
M. O. Senina, Assistant, Dept. of Chemical Technology of Ceramics and Refractories, e-mail: snnmarina@rambler.ru

Реферат

Porous highly heat-resistant materials based on silicon carbide with mullite and cordierite binder have been developed. A comparative analysis of silicon carbide porous materials with ceramic binders based on mullite and cordierite and foreign analogues is carried out. Materials with a compressive strength of 71.3 and 53.1 MPa and porosity of 38.2 and 37.7% for cordierite and mullite binder, respectively, were obtained. Material with cordierite binder has high heat resistance (more than 75 heat transfer), while on mullite - 21 heat transfer. The structure of the filter element allows you to retain dust with particles up to 1 micron. For regeneration of filtering characteristics, pulsed air regeneration is applied at a pressure of 6-8 bar. On the basis of this ceramic, candle filters with a length of 1000 mm and an outer diameter of 60 mm are made, designed for installation on the filtering of hot gases of the modular type FCI-9.8. The unit is suitable for purification of exhaust gases generated during the operation of such metallurgical units as a chamber and circulation vacuum generator, an electric arc furnace, an oxygen converter, a ladle furnace, etc. The estimated payback period of the unit, provided that the recovery module is installed, is about 4.2 of the year. When used together with a recuperator, the flue gas exhaust heat can be used for heating water, heating household premises in the cold season, for quenching furnaces of parts, drying units, etc.

Ключевые слова Silicon carbide, porous ceramics, gas cleaning, metallurgy, electric arc furnace, VD- degasser, RH- degasser, ladle furnace, oxygen converter
Библиографический список

1. Federal Law “On Environmental Protection” dated 10.01.2002 No. 7-ФЗ (FZ).
2. Passport of the “Ecology” National Project. Approved. 24.12.2018. Ministry of Natural Resources of Russia. 48 p.
3. Information and technical guide to the best available techniques ITS 26-2017 “Production of iron, steel and ferroalloys”. Moscow: Byuro NDT. 2017. 478 p.
4. Heidenreich S. Hot gas filtration: a review. Fuel. 2013. Vol. 104. pp. 83–94.
5. Krasnyi B. L., Ikonnikov К. I., Vartanyan М. А., Rodimov О. I. Obtaining porous permeable ceramics based on silicon carbide for filtering hot flue gases (review). Novye ogneupory. 2019. No. 7. pp. 36–42.
6. Eom J.-H., Kim Y.-W., Raju S. Processing and properties of macroporous silicon carbide ceramics: A review. Journal of Asian Ceramic Societies. 2013. Vol. 1, Iss. 3. pp. 220–242.
7. Roy J., Chandra S., Das S., Maitra S. Oxidation behavior of silicon carbide: a review. Review on Advanced Materials Science. 2014. Vol. 38, Iss. 1. pp. 29–39.
8. Lebedev А. S., Anfilogov V. N., Blinov I. А. Porous ceramic based on silicon carbide. Doklady akademii nauk: Khimiya. 2016. Vol. 468. No. 3. pp. 285–287.
9. GOST 2409–2014. Refractories. Method for determination of bulk density, apparent and true porosity, water absorption. Introduced: 01.09.2015.
10. GOST R 53065.1. Refractory products with less than 45% true porosity. Method for determination of compressive strength at room temperature. Part 1. Test without packings. Introduced: 01.07.2009.
11. Belov S. V., Vityaz B. К. Et. al. Porous permeable materials: reference edition. Edited by S. V. Belov. Moscow: Metallurgiya, 1987. 335 p.
12. Ding S., Zeng Y.-P., Jiang D. Thermal shock behaviour of mullitebonded porous silicon carbideceramics with yttria addition. Journal of Physics D: Applied Physics. 2007. Vol. 40. No. 7. pp. 2138–2142.

13. Zhu S., Ding S., Xi H., Li Q., Wang R. Preparation and characterization of SiC/cordierite composite porous ceramics. Ceramics International. 2007. Vol. 33, Iss. 1. pp. 115–118.
14. Gasanov Z. S. High-temperature cleaning of flue gases from boiler houses using waste products as fuel: Dissertation … of Candidate of Engineering Sciences. Voronezh, 2013. 267 p.
15. Ezhova N. N., Vlasov А. S., Delitsyn L. М. State-of-the-art methods for cleaning flue gases. Ekologiya promyshlennogo proizvodstva. 2006. No. 2. pp. 50–57.

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