Snow Contamination by Metals and Metalloids in a Polar Town: A Case Study of Nadym, Russia
- PMID: 38459980
- DOI: 10.1007/s00244-024-01057-x
Snow Contamination by Metals and Metalloids in a Polar Town: A Case Study of Nadym, Russia
Abstract
Snow composition depends on the long-range transport of pollutants. This article examines aspects of snow composition in the town of Nadym in Western Siberia. During fieldwork conducted in 2021 and 2022, we determined dust load, concentrations and ratio of dissolved and suspended forms of metals and metalloids (MMs). Moreover, we analyzed air mass trajectories using the HYSPLIT model, and the results showed that industrial regions of the southern Urals, southeastern Siberia, and Kazakhstan were the sources of MMs. Content of the insoluble fraction was increased by 23-fold in Nadym. The dust load in Nadym was higher than that in urban communities situated in the temperate zone, even though this town is relatively small in population and has little industrial infrastructure. This significant increase in dust load led to a ten- to 100-fold increase in the content MMs. Local soils (Fe, Al), vehicles (W), building dust (Mg, Ca), and anti-icing agents (Na) were found to be the sources of pollution. We found that the high dust load is caused by meteorological factors, such as temperature inversion and a large number of calm days, which reduce the dispersion of pollution. This case study demonstrates that winter air quality in polar settlements can be worse than that in urban areas in the temperate zone, even with few local sources of pollution. Furthermore, the trend toward an increase in the number of windless days, such as observed in Siberia as a result of global climate change, increases the risk of anthropogenic pollution of the atmosphere of polar cities.
© 2024. The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.
References
-
- Agbalyan EV, Listishenko AA (2017) Accumulation of pollutants (mercury and cadmium) in soil, plants and animals. Sci Bull Yamal-Nenets Auton Dist 3(96):4–10 (In Russian)
-
- Agbalyan EV, Shinkaruk EV (2018) The mercury content in the blood of inhabitants of the Yamalo-Nenets autonomous district. Gigiena i Sanitaria 97(8):799–802. https://doi.org/10.18821/0016-9900-2018-97-8-799-802 (In Russian) - DOI
-
- Agbalyan EV, Shinkaruk EV, Popova TL, Maksimenko YI (2019) Essential and toxic elements in the biosubstrates of the inhabitants of the Yamal peninsula. Sci Bull Yamal-Nenets Auton Dist 3(104):35–45. https://doi.org/10.26110/ARCTIC.2019.104.3.007 (In Russian) - DOI
-
- Alekseev I, Shamilishvili G, Abakumov E (2019) Ecotoxicological state of urban soils of the arctic with different functional load (Yamal autonomous region). In: Vasenev V, Dovletyarova E, Cheng Z, Prokof’eva T, Morel J, Ananyeva N (eds) Urbanization: challenge and opportunity for soil functions and ecosystem services: proceedings of the 9th SUITMA congress, vol 9. Springer, Cham, pp 206–211. https://doi.org/10.1007/978-3-319-89602-1_25
-
- Allen-Gil SM, Ford J, Lasorsa BK, Monetti M, Vlasova T, Landers DH (2003) Heavy metal contamination in the Taimyr peninsula, Siberian Arctic. Sci Total Environ 301(1–3):119–138. https://doi.org/10.1016/S0048-9697(02)00295-4 - DOI
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