Preview

Ecology and Industry of Russia

Advanced search
Open Access Open Access  Restricted Access Subscription or Fee Access

Analysis of the Work of Flue Gas Stack of Non-Ferrous Metallurgy

https://doi.org/10.18412/1816-0395-2020-2-52-56

Abstract

The features of the work of flue gas stack in non-ferrous metallurgy serving thermal installations for copper production are considered. On the example of the operation of two flue gas stacks of the copper smelting shop of OJSC SUMZ (Revda), with the help of which converter gases (pipe height 150 m) and suction gases from Vanyukov furnaces (pipe height 120 m) are removed, environmental studies were carried out and their operation was analyzed before and after changing the technology for producing matte at the factory. Recommendations are given on improving the environmental situation at the plant, some of which have been implemented. The results obtained in the work are of certain interest and can be used at other similar enterprises of non-ferrous metallurgy associated with the production of copper and using similar thermal units.

About the Authors

B.P. Yur’ev
Ural Federal University name of the first president of Russia B.N. Yeltsin
Russian Federation
Cand. Sci. (Eng.), Associate Professor


V.A. Dudko
Ural Federal University name of the first president of Russia B.N. Yeltsin
Russian Federation
Post-graduate Student


References

1. Гущин С.Н., Казяев М.Д., Киселев Е.В., Шаврин В.С., Юрьев Б.П. Гидравлический расчет трубопроводов и выбор тягодутьевых средств, обеспечивающих работу промышленных печей. Екатеринбург, УрФУ, 2011.

2. Ельшин А.М. Дымовые трубы. Для специалистов, работающих в области трубостроения и эксплуатации промышленных дымовых труб. М., Стройиздат, 2001.

3. Яблонько Е.В. Основные проблемы в эксплуатации дымовых труб. Молодой ученый. 2011. №. 9. С. 65—68.

4. Дужих Ф.П., Осоловский В.П., Ладыгичев М.Г. Промышленные дымовые и вентиляционные трубы. Справ. изд. М., Теплотехник, 2004.

5. Манеев А.П., Терехов В.И. Особенности теплообмена на наружной поверхности дымовых труб в условиях ветрового воздействия. Теплоэнергетика. 2015. №. 3. С. 29—34.

6. Кузбмишкин А.А., Гарькин И.Н. Обследование дымовых промышленных труб. Молодой ученый. 2014. № 1. С. 94—95.

7. Messner M.E., Kinneberg D.A. Use of oxygen in copper converting. Met Soc AIME. TMS Pap A69-22. 2017. P. 13.

8. Devia M., Parra R., Queirolo C., Sбnchez M., Wilkomirsky I. Copper smelting and converting: past and present Chilean developments. Mineral Processing and Extractive Metallurgy: Transactions of the Institute of Mining and Metallurgy. 2019. Vol. 128. No. 1—2. P. 108—116.

9. Hawker W., Vaughan J., Jak E., Hayes P.C. The synergistic copper process concept. Mineral Processing and Extractive Metallurgy: Transactions of the Institute of Mining and Metallurgy. 2018. Vol. 127. No. 4. P. 210—220.

10. Liu Z., Xia L. The practice of copper matte converting in China. Mineral Processing and Extractive Metallurgy: Transactions of the Institute of Mining and Metallurgy. 2019. Vol. 128. No. 1—2. P. 117—124.

11. Han Z. Replacement of P-S converting with continuous converting using a Vaniukov furnace for slagging plus a furnace with mutiple non-submerged lances for copper making. Res Des Non-Ferrous Metall. 2015. Vol. 36. No. 5. P. 18—21.

12. Vaisburd S., Berner A., Brandon D.G., Kozhakhmetov S., Kenzhaliyev E., Zhalelev R. Slags and mattes in Vanyukov's process for the extraction of copper. Metall. Mater. Trans. 2015. Vol. 33. No. 4. P. 551—559.

13. Mohagheghi M., Askari M. Copper recovery from reverberatory furnace flue dust. International Journal of Mineral Processing. 2016. Vol. 157. P. 205—209.

14. Liu W.P., Yin X.F. Recovery of copper from copper slag using a microbial fuel cell and characterization of its electrogenesis. International Journal of Minerals, Metallurgy and Materials. 2017. Vol. 24. No. 6. P. 621—626.

15. Cui Z.X., Wang Z., Wei C.B., Wang H.B., Hou P., Du W.Z. Plant practice of two-step copper smelting process at Dongying Fangyuan. The Transactions of Nonferrous Metals Society of China. 2018. No. 4. P. 24—27.


Review

For citations:


Yur’ev B., Dudko V. Analysis of the Work of Flue Gas Stack of Non-Ferrous Metallurgy. Ecology and Industry of Russia. 2020;24(2):52-56. (In Russ.) https://doi.org/10.18412/1816-0395-2020-2-52-56

Views: 509


ISSN 1816-0395 (Print)
ISSN 2413-6042 (Online)