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Название Оценка экологического состояния почвенно-растительного покрова, загрязненного угольной пылью
DOI 10.17580/gzh.2023.09.10
Автор Пашкевич М. А., Дука А. А.
Информация об авторе

Санкт-Петербургский горный университет императрицы Екатерины II, Санкт-Петербург, Россия:

Пашкевич М. А., проф., д-р техн. наук
Дука А. А., научный сотрудник, duka_aa@pers.spmi.ru

Реферат

Описано воздействие промышленных объектов угольной отрасли на почвенно-растительный покров. Определены характеристики угольной пыли, проведен эксперимент по выращиванию растительных образцов в лабораторных условиях при различных уровнях пылевой нагрузки, проанализированы морфологические изменения, концентрации хлорофиллов и каротиноидов в растительной массе, состав почвенных и растительных образцов. Установлены зависимости изменения качества почв и растительности от количества вносимой в среду угольной пыли, определены пороговые значения пылевой нагрузки.

Ключевые слова Угольная промышленность, перевалка угля, угольная пыль, почвенно-растительный покров, биоаккумуляция, фотосинтетическая активность, поллютанты
Библиографический список

1. Teklit Zerizghi, Qingjun Guo, Liyan Tian, Rongfei Wei, Changqiu Zhao. An integrated approach to quantify ecological and human health risks of soil heavy metal contamination around coal mining area. Science of the Total Environment. 2022. Vol. 814. 152653. DOI: 10.1016/j.scitotenv.2021.152653
2. Xiaoyang Liu, Huading Shi, Zhongke Bai, Wei Zhou, Kun Liu et al. Heavy metal concentrations of soils near the large opencast coal mine pits in China. Chemosphere. 2020. Vol. 244. 125360. DOI: 10.1016/j.chemosphere.2019.125360
3. Md. Abu Bakar Siddique, Md. Kowsar Alam, Sayful Islam, Mir Talas Mahammad Diganta, Md. Ahedul Akbor et al. Apportionment of some chemical elements in soils around the coal mining area in northern Bangladesh and associated health risk assessment. Environmental Nanotechnology, Monitoring & Management. 2020. Vol. 14. 100366. DOI: 10.1016/j.enmm.2020.100366
4. Xin Xiao, Jixiong Zhang, Hui Wang, Xiaoxun Han, Jing Ma et al. Distribution and health risk assessment of potentially toxic elements in soils around coal industrial areas: A global meta-analysis. Science of The Total Environment. 2020. Vol. 713. 135292. DOI: 10.1016/j.scitotenv.2019.135292
5. Rudakov M. L., Duka N. E. Modeling acoustic effect exerted on personnel by operating equipment in underground coal mining. GIAB. 2021. No. 10. pp. 165–179.
6. Gendler S. G., Fazylov I. R., Abashin A. N. The results of exper imental studies of the thermal regime of oil mines in the thermal method of oil production. GIAB. 2022. No. 6-1. pp. 248–262.
7. Askarova D. A. The level of dust exposure and accumulation of heavy metals in plants in conditions of Northern Kazakhstan. Mir nauki, kultury, obrazovaniya. 2016. No. 5(60). pp. 264–265.
8. Robertus Yu. V., Lyubimov R. V., Kivatskaya A. V., Volostnov A. V., Osipova N. A. Ekologogeochemical situation on the site of the Taldu-Djurgunsky coal deposit (Mountain Altai). Mir nauki, kultury, obrazovaniya. 2011. No. 3(28). pp. 348–352.
9. Khabibullina F. M., Kuznetsova E. G., Panyukov A. N. Transformation of vegetation, soils, and soil microbiota in the impact zone of the coal mine “Vorkutinskaya”. Teoreticheskaya i prikladnaya ekologiya. 2015. No. 4. pp. 30–37.
10. Gendler S. G., Prokhorova E. A. Assessment of the cumulative impact of occupational injuries and diseases on the state of labor protection in the coal industry. GIAB. 2022. No. 10-2. pp. 105–116.
11. Zhiming Wang, Wei Zhou, Izhar Mithal Jiskani, Huaiting Luo, Zhongchen Ao et al. Annual dust pollution characteristics and its prevention and control for environmental protection in surface mines. Science of The Total Environment. 2022. Vol. 825. 153949.
12. Chukaeva M. A., Matveeva V. A., Sverchkov I. P. Complex processing of high-carbon ash and slag waste. Journal of Mining Institute. 2022. Vol. 253. pp. 97–104.
13. Pashkevich M. A., Kharko P. A. The use of a composite mix to remove metals from acidic drainage waters at tailings facilities. Obogashchenie Rud. 2022. No. 4. pp. 40–47.
14. Golokhvast K. S., Chaika V. V., Nikiforov P. A., Blinovskaya Ya. Yu., Filonova E. A. et al. Influence of the large coal terminal on composition of atmospheric suspensions of the settlement. Byulleten fiziologii i patologii dykhaniya. 2015. No. 56. pp. 73–77.
1 5. Korshunov G. I., Safina A. M., Karimov A. M. Research and analysis of the sources of emission of respirable fraction of dust at the coal mines. Bezopasnost truda v promyshlennosti. 2021. No. 10. pp. 65–70.
16. Bechina I. N., Popova L. F., Vasileva A. I., Korobitsina Yu. S. Accumulation and distribution of heavy metals in Novodvinsk soils. Nauchnyi dialog. 2013. No. 3(15). pp. 7–25.
17. Barsukova V. S. Physiological and genetic aspects of resistance of plants to heavy metals. Ekologiya. Seriya analiticheskikh obzorov mirovoy literatury. 1997. No. 47. pp. 1–67.
18. Zhuykova T. V., Zinnatova E. R. Accumulating capability of plants in areas anthropogenically polluted with heavy metals. Povolzhskiy ekologicheskiy zhurnal. 2014. No. 2. pp. 196–207.
19. Maslennikov P. V., Dedkov V. P., Kurkina M. V., Vashcheykin A. S., Zhuravlev I. O. et al. Accumulation of metals in plants of urban ecosystems. Vestnik Baltiyskogo federalnogo universiteta im. I. Kanta. 2015. No. 7. pp. 57–69.
20. Duka A. A. Alteration of top soil under the impact of coal industry. Philosophy of Science : Scientific Reviews within the International Education and Research Program. Saint-Petersburg : Sankt-Peterburgskiy gornyi universitet, 2022. pp. 138–147.
21. Smirnov Yu. D., Suchkov D. V., Danilov A. S., Goryunova T. V. Artificial soils for restoration of disturbed land productivity. Eurasian Mining. 2021. No. 2. pp. 92–96.
22. Alekseenko V. A., Shvydkaya N. V., Bech J., Puzanov A. V., Nastavkin A. V. Trace element accumulation by soils and plants in the North Caucasian geochemical province. Journal of Mining Institute. 2021. Vol. 247. pp. 141–153.
23. Sarapulova G. I. Geochemical approach in assessing the technogenic impact on soils. Journal of Mining Institute. 2020. Vol. 243. pp. 388–392.
24. Wang Zhan-Yi, Hou Jia, Guo Jian-Ying, Wang Cheng-Jie. Coal Dust Reduce the Rate of Root Growth and Photosynthesis of Five Plant Species in Inner Mongolian Grassland. Journal of Residuals Science and Technology. 2016. Vol. 13, No. 2. pp. 63–73.
25. Shamaila Zia-Khan, Wolfram Spreer, Yang Pengnian, Xiaoning Zhao, Hussein Othmanli et al. Effect of dust deposition on stomatal conductance and leaf temperature of cotton in Northwest China. Water. 2015. Vol. 7, Iss. 1. pp. 116–131.
26. Yang Huiling, Wei Lingling, Ye Xuehua, Liu Guofang, Yang Xuejun et al. Effects of coal dust deposition on seedling growth of Hedysarum laeve Maxim., a dominant plant species on Ordos Plateau. Acta Ecologica Sinica. 2016. Vol. 36, No. 10. pp. 2858–2865.
27. Li Y., Zhao N., Cao Y., Yang J. Effects of coal dust deposition on the physiological properties of plants in an openpit coal mine. Acta Ecologica Sinica. 2018. Vol. 38, No. 22. pp. 8129–8138.
28. Meravi N., Singh P. K., Prajapati S. K. Seasonal variation of dust deposition on plant leaves and its impact on various photochemical yields of plants. Environmental Challenges. 2021. Vol. 4. 100166. DOI: 10.1016/j.envc.2021.100166
29. Saltan N. V., Svyatkovskaya E. A., Shlapak E. P., Trostenyuk N. N., Gontar O. B. Changes in the photosynthetic activity of wood plants under a coal terminal environment. Teoreticheskaya i prikladnaya ekologiya. 2019. No. 2. pp. 68–74.
30. Mineev V. G., Sychev V. G., Gamzikov G. P., Sheudzhen A. Kh., Agafonov E. V. et al. Agrochemistry : Textbook. Moscow : Izdatelstvo VNIIA im. D. N. Pryanishnikova, 2017. 854 pp.
31. Rodionov V. A., Tsygankov V. D., Zhikharev S. Ya., Kormshchikov D. S. Research procedure for coal dust aerodynamics in long roadways. GIAB. 2021. No. 10. pp. 69–79. DOI: 10.25018/0236_1493_2021_10_0_69
32. Gukova A. V. Research of coal dust properties. Current Challenges in Construction, Municipal Housing Economy and Technosphere Safety : Proceedings of VI All-Russian Conference of Young Researchers with International Participation. Volgograd : Volgogradskiy gosudarstvennyi tekhnicheskiy universitet, 2019. pp. 156–158.
33. Krasilova V. A., Kossovich E. L., Gavrilova D. I., Kozyrev M. M. Laboratory installation for collection and concentration of airborne coal dust. GIAB. 2022. No. 6. pp. 121–130.
34. Kachor O. L., Sarapulova G. I., Bogdanov A. V. Investigation of the Possibility of Immobilization of Mobile Forms of Arsenic in Technogenic Soils. Journal of Mining Institute. 2019. Vol. 239. pp. 596–602. DOI: 10.31897/pmi.2019.5.596
35. Saveleva E. S., Alykov N. M. Comparison of different extraction systems in spectrophotometric determination of photosynthetic pigments in leaves. Izvestiya vuzov. Ser.: Khimiya i khimicheskaya tekhnologiya. 2012. Vol. 55, No. 3. pp. 26–28.

Полный текст статьи Оценка экологического состояния почвенно-растительного покрова, загрязненного угольной пылью
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