

On the Background Values of the Geochemical Spectra of Microelements of the Solid Phase of Snow During their Comparative Analysis in the Cities of Tobolsk And Tyumen
https://doi.org/10.18412/1816-0395-2023-4-61-65
Abstract
Local features of the geochemical spectra of trace elements in the snow dust of Tobolsk and Tyumen were revealed using a hierarchical cluster analysis of the normalized values of their content. Geochemical spectra of snow sampling points were studied in residential and industrial areas, as well as in significantly remote areas (conditional background). Four clusters were identified in Tobolsk and five in Tyumen, for each of them characteristic geochemical spectra and pollution sources were detected.
About the Authors
A.V. ZakharchenkoRussian Federation
Dr. Sci. (Biol.), Chief Research Fellow
O.A. Pasko
Russian Federation
Dr. Sci. (Agriculture), Vice-Rector for Research
A.A. Tigeev
Russian Federation
Cand. Sci. (Geography), Senior Research Fellow
D.V. Moskovchenko
Russian Federation
Dr. Sci. (Geography), Chief Research Fellow
References
1. Moskovchenko D.V., Pozhitkov R.Yu, Zakharchenko A.V., Tigeev A.A. Concentrations of Major and Trace Elements within the Snowpack of Tyumen, Russia. Minerals. 2021. Vol. 11(7):709. https://doi.org/10.3390/min11070709 .
2. Московченко Д.В., Пожитков Р.Ю., Соромотин А.В. Геохимическая характеристика снежного покрова г. Тобольск. Известия Томского политехнического университета. Инжиниринг георесурсов. 2021. Т. 332. № 5. С. 156—169. DOI 10.18799/24131830/2021/05/3195.
3. Li Z., Li H., Dong Z. Chemical characteristics and environmental significance of fresh snow deposition on Urumqi Glacier No. 1 of Tianshan Mountains, China. Chin. Geogr. Sci. 2010. Vol. 20(5). P. 389—397. https://doi.org/10.1007/s11769-010-0412-6.
4. Shevchenko V.P., Pokrovsky O.S., Vorobyev S.N., Krickov I.V., Manasypov R.M., Politova N.V., Kopysov S.G., Dara O.M., Auda Y.V., Shirokova L.S., Kolesnichenko L.G., Zemtsov V.A., Kirpotin S.N. Impact of snow deposition on major and trace element concentrations and elementary fluxes in surface waters of the Western Siberian Lowland across a 1700 km latitudinal gradient. Hydrology and Earth System Sciences. 2017. Vol. 21(11):5725-5746. https://doi.org/10.5194/hess-21-5725-2017.
5. Farida M.S., El-Dars E.N., Sami H.M. Interpretation of hydrogeochemical data using Hierarchical Cluster Analysis: A case study at Wadi El-Natrun, Egypt. Journal of African Earth Sciences. 2020. Vol. 170(1):103930. https://doi.org/10.1016/j.jafrearsci.2020.103930 .
6. Леженина А.А., Ярославцева Т.В., Рапута В.Ф. Мониторинг аэрозольного загрязнения снежного покрова на основе наземной и спутниковой информации. Журнал Сибирского федерального университета. Серия: Техника и технологии. 2016. Вып. 7. Т. 9 № 9(7). С. 950—959. https://elib.sfu-kras.ru/handle/2311/28073.
7. Гилязов А.Ф. Кластерный анализ как инструмент районирования территории по крупности речных наносов (на примере бассейна Волги). Вестник Удмуртского университета, Биология. Науки о Земле. 2015. Т. 25 Вып. 2 С. 149—158.
Review
For citations:
Zakharchenko A., Pasko O., Tigeev A., Moskovchenko D. On the Background Values of the Geochemical Spectra of Microelements of the Solid Phase of Snow During their Comparative Analysis in the Cities of Tobolsk And Tyumen. Ecology and Industry of Russia. 2023;27(4):61-65. (In Russ.) https://doi.org/10.18412/1816-0395-2023-4-61-65