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Вестник МГТУ. 2023. Т. 26, № 2. С. 191-199. DOI: https://doi.org/10.21443/1560-9278-2023-26-2-191-199 Солнышкова М. А., Пашкевич М. А. Исследование эффективности биологической очистки воды от нитратов с помощью биоплато // Естественные и технические науки. 2018. № 5(119). С. 169-173. EDN: XSKILZ. Хохряков А. В., Студенок А. Г., Студенок Г. А. Исследование процессов формирования химического загрязнения дренажных вод соединениями азота на примере карьера крупного горного предприятия // Известия Уральского государственного горного университета. 2016. № 4(44). С. 35-37. DOI: https://doi.org/ 10.21440/2307-2091-2016-4-35-37. EDN: XUXSHX. Babatunde A. O., Zhao Y. Q., Doyle R. J., Rackard S. M. [et al.]. On the fit of statistical and the k-C* models to projecting treatment performance in a constructed wetland system // Journal of Environmental Science and Health, Part A. 2011. Vol. 46, Iss. 5. Р. 490-499. DOI: https://doi.org/10.1080/10934529.2011.551729. Jermakka J., Wendling L., Sohlberg E., Heinonen H. [et al.]. Potential technologies for the removal and recovery of nitrogen compounds from mine and quarry waters in subarctic conditions // Critical Reviews in Environmental Science and Technology. 2015. Vol. 45, Iss. 7. P. 703-748. DOI: https://doi.org/10.1080/10643389.2014.900238. References Dubovik, O. S., Markevich, R. M. 2016. Improvement of biotechnology of nitrogen and phosphorus removal from municipal wastewater. Proceedings o f BSTU. Chemistry, Organic Substances Technology and Biotechnology, 4, pp. 186. EDN: WHMPTT. (In Russ.) Zubov, M. G., Boyarenev, S. F., Zubov, G. M., Kulikov, N. I. et al. 2013. Biotechnology of wastewater treatment with immobilization of activated sludge and nitrogen removal. Water Supply and Sanitary Technique, 8 , pp. 72-75. EDN: QZHNZX. (In Russ.) Ivanova, L. A., Myazin, V. A., Korneikova, M. V., Fokina, N.V. et al. 2021. It's time to clean up the Arctic. Creation of phyto-treatment system for post-treatment of mining wastewater from nitrogen compounds. Apatity. (In Russ.) Kirilina, T. V., Do Tkhi Tkhu Khang, Sirotkin, A. S. 2013. Efficiency assessment of wastewater pretreatment using unicellular and multicellular hydrobionts. Vestnik Kazanskogo tekhnologicheskogo universiteta , 16(8), pp. 200-203. EDN: QBIZOF. (In Russ.) Meshengisser, Y. M., Shchetinin, A. I., Esin, M. A. 2006. Removal of nitrogen and phosphorus by an active sludge. Kommunalnoe khozyaistvo gorodov, 74, pp. 36-45. (In Russ.) Rybnikova, L. S., Navolokina, V. Yu. 2020. Assessment of hydrosphere condition in the upper Tagil River basin (Sverdlovsk region). Problems o f Subsoil Use, 2(25), pp. 81-89. DOI: 10.25635/2313-1586.2020.02.081. EDN: OBKXMT. (In Russ.) Savichev, O. G. 2008. Biological wastewater treatment using bog biogeocenoses. Bulletin o f the Tomsk Polytechnic University. Geo Assets Engineering, 312(1), pp. 69-74. EDN: JKOQVT. (In Russ.) Solnyshkova, M. A. 2020. Reduction of surface water pollution by inorganic nitrogen compounds in the impact zone of mining enterprises in the Murmansk region. Ph.D. Thesis. Saint Petersburg. (In Russ.) Solnyshkova, M. A., Pashkevich, M. A. 2018. Study of biological water purification efficiency from nitrates with bioplato. Estestvennye i tekhnicheskie nauki, 5(119), pp. 169-173. EDN: XSKILZ. (In Russ.) Khokhryakov, A. V., Studenok, A. G., Studenok, G. A. 2016. Study of processes of formation of chemical pollution of drainage water with nitrogen compounds on the example of the pit of a large mining enterprise. Izvestiya o f the Ural State Mining University, 4(44), pp. 35-37. DOI: https://doi.org/10.21440/2307-2091- 2016-4-35-37. EDN: XUXSHX. (In Russ.) Babatunde, A. O., Zhao, Y. Q., Doyle, R. J., Rackard, S. M. et al. 2011. On the fit of statistical and the k-C* models to projecting treatment performance in a constructed wetland system. Journal o f Environmental Science and Health, Part A, 46(5), pp. 490-499. DOI: https://doi.org/10.1080/10934529.2011.551729. Jermakka, J., Wendling, L., Sohlberg, E., Heinonen, H. et al. 2015. Potential technologies for the removal and recovery of nitrogen compounds from mine and quarry waters in subarctic conditions. Critical Reviews in Environmental Science and Technology, 45(7), pp. 703-748. DOI : https://doi.org/10.1080/10643389. 2014.900238. Сведения об авторе Щеглов Глеб Андреевич - ул. Ферсмана, 14а, г. Апатиты, Мурманская обл., Россия, 184209; Институт проблем промышленной экологии Севера КНЦ РАН, аспирант; e-mail: g.scheglov@ksc.ru, ORCID: https://orcid.org/0000-0003-2870-3616 Gleb А. Shcheglov - 14a Fersmana Str., Apatity, Murmansk region, Russia, 184209; Institute of Industrial Ecology Problems in the North KSC RAS, Ph.D. Student; e-mail: g.scheglov@ksc.ru, OrCID: https://orcid.org/0000-0003-2870-3616 199

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