Вестник МГТУ, 2026, Т. 29, № 2.
Fang S., Hua C., Yang J., Liu F. [et al.]. Combined pollution of soil by heavy metals, microplastics, and pesticides: Mechanisms and anthropogenic drivers // Journal o f Hazardous Materials. 2025. Vol. 485. Article number: 136812. DOI: https://doi.org/10.1016/j.jhazmat.2024.136812. Li G., Sun G.-X., Ren Y., Luo X.-S. [et al.]. Urban soil and human health: A review // European Journal o f Soil Science. 2018. Vol. 69, Iss. 1. P. 196-215. DOI: https://doi.org/10.1111/ejss.12518. Li N., Kang Y., Pan W., Zeng L. [et al.]. Concentration and transportation o f heavy metals in vegetables and risk assessment o f human exposure to bioaccessible heavy metals in soil near a waste-incinerator site, South China // Science of The Total Environment. 2015. Vol. 521-522. P. 144-151. DOI: https://doi.org/10.1016/ j.scitotenv.2015.03.081. Silva G. H. M. C., Araujo P. R. M., Vieira C. B., Araujo J. K. S. [et al.]. The role of soil organic matter quality and mineralogy controlling the highest mercury concentration o f the Brazilian mangroves // Science o f The Total Environment. 2025. Vol. 975. Article number: 179274. DOI: https://doi.org/10.1016/j.scitotenv. 2025.179274. Tian S., Wang X., Kaal J., Zhu S. [et al.]. Elevation-dependent soil organic matter persistence and molecular traits influence mercury storage in timberline ecotones // Journal of Hazardous Materials. 2025. Vol. 499. Article number: 140155. DOI: https://doi.org/10.1016/jjhazmat.2025.140155. Wilding L. P. Spatial variability: Its documentation, accommodation, and implication to soil surveys // Soil Spatial Variability / eds.: D. R. Nielsen, J. Bouma. Pudoc, Wageningen, The Netherlands, 1985. P. 166-194. References Afonina, T., Kolomina, T., Ponomarenko, E., Slauta, A. 2015. Water quality assessment in lake Baikal coastal areas and their pollution sources. Proceedings o f Irkutsk State Technical University, 6(101), pp. 37-43. EDN: UNRZRR. (In Russ.) Belozertseva, I. A., Vorobyeva, I. B., Vlasova, N. V. 2025. Current state o f the natural environment of the Southwestern shore o f Lake Baikal (Slyudyansky district). Geography and Natural Resources, 46(3), pp. 67-81. DOI: https://doi.org/10.15372/gipr20250307. EDN: JTUFES. (In Russ.) Belozertseva, I. A., Vorobeva, I. B., Vlasova, N. V., Gagarinova, O. V. et al. 2018. Ecological status o f the coast of Lake Baikal and its influence on the lake pollution. Advances in Current Natural Sciences, 11, pp. 85-95. EDN: YNWFIL. (In Russ.) Belozertseva, I. A., Vorobyeva, I. B., Vlasova, N. V., Lopatina, D. N. et al. 2017. Snow pollution in Lake Baikal water area in nearby land areas. Water Resources, 44(3), pp. 340-353. DOI: https://doi.org/10.7868/ s032105961703004x. EDN: YRWHQN. (In Russ.) Vakhromeev, A. G., Shcherbin, S. A., Bragina, O. A., Evdokimenko, D. S. et al. 2022. Methods o f utilization and application of the contents o f sludge storage facilities o f the Baikal pulp and paper mill for the needs of the oil and gas complex o f Eastern Siberia . Chemistry fo r Sustainable Development, 30(4), pp. 354-363. DOI: https://doi.org/10.15372/khur2022390. EDN: MNFGQU. (In Russ.) Vinogradov, A. P. 1957. Geochemistry o f rare and dispersed chemical elements in soils. Moscow. (In Russ.) Gorelova, S. V., Gorbunov, A. V., Lyapunov, S. M., Okina, O. I. et al. 2020. Assessment o f an industrial agglomeration impact on soil and air pollution with toxic elements (on the example of the Tula City). Ecology o f Urban Areas, 2, pp. 6-20. DOI: 10.24411/1816-1863-2020-12006. EDN: SWZUPF. (In Russ.) Grebenschikova, V. I., Lustenberg, E. E., Kitaev, N. A., Lomonosov, I. S. 2008. Geochemistry of Baikal environmental. Baikal geoecological polygon. Novosibirsk. (In Russ.) Grebenschekova, V. I., Noskov, D. A., Gerasimov, N. S. 2009. Geochemistry and formation conditions of Angaro-Vitimskii granitoid batholite (Pribaikalje). Proceedings o f Irkutsk State Technical University, 3(39), pp. 24-30. EDN: KVQQBF. (In Russ.) Ivanov, S. A., Dmitrieva, O. F., Kulmakova, N. I., Dimitriev, Yu. O. 2016. Soil pollution from toxins o f the Volga river shoreland in the area o f Cheboksary hydropower station. Human Ecology, 5, pp. 3-8. DOI: https://doi.org/10.33396/1728-0869-2016-5-3-8. EDN: VWSENV. (In Russ.) Maximova, E. N., Simonova, E. V. 2014. Assessment o f the state o f sludge-lignin o f the Baikalsk pulp and paper mill according to sanitary and microbiological indicators. Current Issues in the Humanities and Natural Sciences , 5-1, pp. 35-38. EDN: SGIOAN. (In Russ.) Malnik, V. V., Suturin, A. N. 2017. The diversity of microorganisms inhabiting the sludge tanks o f Baikalsk pulp and paper plant (BPPP). Acta Biologica Sibirica, 3(3), pp. 32-38. DOI: https://doi.org/10.14258/ abs.v3i3.3613. EDN: YMKYYD. (In Russ.) Nikanorov, A. M., Reznikov, S. A., Matveev, A. A., Arakelian, V. S. et al. 2013. Pollution o f the sediments of Lake Baikal by polycyclic aromatic hydrocarbons. Regional Research o f Russia, 1, pp. 105-117. EDN: PUWVIX. (In Russ.) Paradina, L. F., Pavlova, L. F., Chuparina, E. V., Pakhomova, N. N. et al. 2012. Features o f the composition of coal ash from the thermal power plant of the Baikal Pulp and Paper Plant (BPPP). Materials o f the All-Russian conf. Modern Problems o f Geochemistry, Irkutsk, 22-26 October, 2012. Irkutsk, 2012. Vol. 1, pp. 223-226. (In Russ.)
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