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Comparative Аssessment of Еmission Рroducts Distribution from Siberian Aluminum Plants

https://doi.org/10.18412/1816-0395-2018-3-51-55

Abstract

The results of a comparative analysis of the distribution of the components of the Bratsk (BrAZ), Irkutsk (IrkAZ), Sayanogorsk (SAZ) and Krasnoyarsk (KrAZ) aluminum components emissions from the air onto the snow cover are presented. It was found that the dependence of the decrease in the concentration of fluorine, sodium and lithium in the snow cover with distance from these industries is exponential. The same course of changes in the concentrations of Al, F, Ca, Mg, Li, Si, As, Zn, Sr, Sb in the snow water filtrate in the KrAZ, BrAZ and IrkAZ emissions zones was established. This course of concentration changes differs from that of the same elements in the background region. Based on the calculation of the element enrichment coefficient in the solid sediment of the snow cover, the anthropogenic origin of Zn, As, Sb in the region of influence of BrAZ and KrAZ emissions is shown. Based on the calculation of the element enrichment factor in snow water, the natural origin of Zn, As, Sb in snow water is shown in the area of impact of BrAZ and KrAZ emissions (from 1 km to 5–7 km). It is suggested to reduce fluoride emissions in the source by using lithium additives in the electrolyte. To reduce the emission distribution range, it is suggested to precipitate the aerosols included in the emissions within a radius chosen based on the exponential dependence of the deposition, and also to apply the approaches of ecological landscaping and improvement of the industrial territory.

About the Authors

A.P. Sukhodolov
Baikal State University
Russian Federation
Dr. Sci. (Econ.), Rector


N.I. Ianchenko
Irkutsk National Research Technical University
Russian Federation
Dr. Sci. (Eng.), Рrofessor


A.V. Talovskaya
National Research Tomsk Polytechnic University
Russian Federation
Cand. Sci. (Geolog. and Mineral.), Associate Professor


E.G. Yazikov
National Research Tomsk Polytechnic University
Russian Federation
Dr. Sci. (Geolog. and Mineral), Professor


References

1. РУСАЛ. [Электронный ресурс] URL: http://www.rusal.ru (дата обращения: 01.08.2016).

2. Зельберг Б.И., Рагозин Л.В., Баранцев А.Г., Ясевич О.И., Григорьев В.Г., Баранов А.Н. Справочник металлурга. Производство алюминия и сплавов на его основе. СПб., Изд-во МАНЭБ, 2013. 676 с.

3. Состояние загрязнения атмосферы в городах на территории России за 2014 г. Ежегодник. СПб., ФГБУ "ГГО" Росгидромета, 2015. 288 с.

4. Давыдова Н.Д. Проблемы загрязнения природой среды Сибири. Успехи современного естествознания. 2014. № 5(1). С. 186—189.

5. Talovskaya A.V., Osipova N.A., Filimonenko E.A., Polikanova S.A., Samokhina N.P., Yazikov E.G., Matveenko I.A. Fluorine concentration in snow cover within the impact area of aluminium production plant (Krasnoyarsk city) and coal and gas-fired power plant (Tomsk city). IOP Conference Series- Earth and Environmental Science. V. 27 (1). Аrt. no. 012043. doi: 10.1088/1755-1315/27/1/012043

6. Rasulov O., Schwarz M. Monitoring the air pollution and evaluation of the impact of aluminium production in Talco. Journal of Environmental Management and Tourism. 2016. V. 7 (2). P. 169—174. doi: 10.14505/jemt.v7.2(14).01

7. Kolomyts E.G. Evolutionary Conception in Snow Cover Science. Environment and Ecology Research. 2014. V. 2(2). P. 35—59.

8. Загрязнение почв Иркутской области токсикантами промышленного происхождения: ежегодник (2000—2007). Иркутск, ФС России по гидрометеорологии и мониторингу окружающей среды,Иркутское УНМС, ГУ Иркутский ЦГМС-Р, Иркутский ЦМС. 2001—2007. 101 с.

9. Kasimov N.S., Vlasov D.V. Clarkes of chemical elements as comparison standards in ecogeochemistry. Vestnik Moskovskogo Universiteta. Seriya 5. Geografiya. 2015. P. 7—17.

10. Shevchenko V., Lisitzin A., Vinogradova A., Stein R. Heavy metals in aerosols over the seas of the Russian Arctic. Science of the Total Environment. 2003. Vol. 306. No. 3. P. 11—25. doi: 10.1016/S0048-9697(02)00481-3.

11. Filimonova L.M., Parshin A.V., Bychinskii V.A. Air pollution assessment in the area of aluminum production by snow geochemical survey. Russian Meteorology and Hydrology. 2015. Vol. 40. No. 10. P. 691—698.doi: 10.3103/S1068373915100076.

12. Арбузов С.И. Металлоносность углей Сибири. Известия Томского политехнического университета. 2007. № 1. С. 77—83.

13. Баранов А.Н., Вахромеев А.Г., Янченко Н.И. и др. Получение литиевых продуктов из сибирских рассолов для экологизации производства алюминия. Иркутск: Изд-во ИрГТУ, 2004. 125 с.

14. Blinov V.V., Granin N.G., Mizandrontsev I.B., Gnatovskii R.Y., Zhdanov A.A. Seasonal variations in the vertical structure of pelagian water stratum in the Southern Baikal. Water Recourses. 2017. V. 44 (3). P. 417—427. doi: 10.1134/S0097807817030058.

15. Мощность алюминиевого завода в Абу-Даби планируется увеличить почти вдвое. [Электронный ресурс] URL: http://www.mineral.ru/News/45551.html (дата обращения: 05.10.2014).


Review

For citations:


Sukhodolov A., Ianchenko N., Talovskaya A., Yazikov E. Comparative Аssessment of Еmission Рroducts Distribution from Siberian Aluminum Plants. Ecology and Industry of Russia. 2018;22(3):51-55. (In Russ.) https://doi.org/10.18412/1816-0395-2018-3-51-55

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