

Assessment of the Source of Anthropogenic Pollution Impact on the Hydro-chemical Runoff of the Main Ore Elements (Using the Example of Dumps at the Altai Mining and Processing Plant, Alei Сatchment)
https://doi.org/10.18412/1816-0395-2023-11-54-60
Abstract
The content of the main ore and associated elements in the material of the tailings of the Altai mining and processing plant, in the snow cover and surface waters of the dumps, as well as in the water filtrates of the dump material was studied. It was detected that the concentration of Cu in the substrates of the dumps of the Altai mining and processing plant varies from 970 to 7350 mg/kg and exceeds the background values of the copper content in the soils of Northwestern Altai up to 1000 times, the Pb content varies. from 850 to 2800 mg/kg and exceeds the background value up to 500 times, Zn – up to 200 times (content from 350 to 12170 mg/kg), Cd – up to 100 times. It was recorded that the Pb content in pound surface water on of tailings dumps exceeds the MPC of hazardous substances 2.5 times and is 79 μg/l, Cu – 52 times (52.3 mg/l), Zn – 250 times (254 mg/l), Cd – 940 times (0.94 mg/l). It was identified that in liquid media – lysimetric, surface and snow waters of the Altai mining and processing plant tailings pond – the ratio of pollutant concentrations to background and standards norms (Russian and foreign) is higher for more labile and easily leachable elements – cadmium and zinc. In solid components (substrates, snow dust), the concentrations of copper and lead noticeably exceed the background, clarke and standard concentrations.
Keywords
About the Authors
A.V. PuzanovRussian Federation
Dr. Sci. (Biol.), Director
S.V. Baboshkina
Russian Federation
Cand. Sci. (Biol.), Senior Research Fellow
T.A. Rozhdesvenskaya
Russian Federation
Cand. Sci. (Biol.), Senior Research Fellow
I.V. Gorbachev
Russian Federation
Environmental control specialist
S.N. Balykin
Russian Federation
Cand. Sci. (Biol.), Senior Research Fellow
S.V. Saltykov
Russian Federation
Research Scientist
References
1. Canovas C.R., Macias F., Basallote M.D. Olias M., Nieto J., Pérez-Lуpez R. Metal(loid) release from sulfiderich wastes to the environment: The case of the Iberian Pyrite Belt (SW Spain). Current Opinion in Environmental Science and Health. 2021. Vol. 20. No. 100240.
2. Danilov A.S., Smirnov Y.D., Korelskiy D.S. Effective methods for reclamation of area sources of dust emission. Journal of Ecological Engineering. 2017. Vol. 18(5). P. 1—7.
3. Dobbins D.S., Marcelo-Silva J., Siebert S.J. Phytoremediation and Nurse Potential of Aloe Plants on Mine Tailings. International Journal of Environmental Research and Public Health 2023. Vol. 20(2):1521. Р. 1—11.
4. Вороничев А.А., Отто О.В., Гроо М.И. О возможности рекультивации хвостохранилищ Алтайского горно-обогатительного комбината. Вестник Науки и Творчества. 2016. № 5 (5). С. 90—94.
5. Puzanov A.V., Baboshkina S.V., Gorbachev I.V. Сharacteristics of heavy metal migration in the naturalanthropogenic anomalies of the North-Western Altai. Geochemistry International. 2012. Vol. 50. № 4. P. 358—366.
6. Щербакова И.Н., Густайтис М.А., Лазарева Е.В., Богуш А.А. Миграция тяжелых металлов (Сu, Рb, Zn, Fe, Cd) в ореоле рассеяния Урского хвостохранилища (Кемеровская область). Химия в интересах устойчивого развития. 2010. Т. 18. N 5. С. 621—633.
7. Pashkevich M. A., Alekseenko A.V., Nureev R.R. Environmental damage from the storage of sulfide ore tailings. Journal of Mining Institute. 2023. Vol. 260. P. 155—167.
8. Виноградов А.П. Геохимия редких и рассеянных химических элементов в почвах. М.: Изд-во АН СССР. 1957. 234 с.
9. Голик В.И., Комащенко В.И. Практика выщелачивания металлов из отходов переработки руд. Известия Тульского государственного университета. Науки о Земле. 2016. № 3. С. 13—23.
10. Касимов Н.С. Экогеохимия ландшафтов. М., ИП Филимонов М.В., 2013. 208 с.
11. Kloke A. Richtwerte'80. Orientirungsdaten fur tolerier bare еiniger Elemente in Kulturboden. Mittailungen des VDLUFA. 1980. Vol. 1—3. P. 9. 22.
12. Пряничникова Е.В. Эколого-геохимическая оценка горнорудного района (на примере Садоно-Унальской котловины, республика Северная Осетия, Алания). Автореф. канд. дисс. М., 2005. 18 с.
13. Иванов В.В. Экологическая геохимия элементов. Справочник. В 6 кн. Под ред. Э.К. Буренкова. М., Недра, 1996.
14. Bao Zh., Al T. Bain, J. Shrimpton H., Finfrock Y., Ptacek C., Blowes D. Sphalerite weathering and controls on Zn and Cd migration in mine waste rock: An integrated study from the molecular scale to the field scale. Geochimica et Cosmochimica Acta. 2022. Vol. 318. P. 1—18.
15. Kossoff D., Hudson-Edwards K., Dubbin W., Alfredsson M. Incongruent weathering of Cd and Zn frоm mine tailings. Mineralogical Magazine. 2008. Vol. 72(1). P. 81—84.
Review
For citations:
Puzanov A., Baboshkina S., Rozhdesvenskaya T., Gorbachev I., Balykin S., Saltykov S. Assessment of the Source of Anthropogenic Pollution Impact on the Hydro-chemical Runoff of the Main Ore Elements (Using the Example of Dumps at the Altai Mining and Processing Plant, Alei Сatchment). Ecology and Industry of Russia. 2023;27(11):54-60. (In Russ.) https://doi.org/10.18412/1816-0395-2023-11-54-60