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Water Quality Management at the Tailings Storage Facility of the Gaisky Mining and Processing Plant

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper justifies the waterproofing technology for waste storage conservation. The paper presents the results of full-scale monitoring of the quality of surface and groundwater affected by the tailings of the Gaisky Mining and Processing Plant. The determined chemical composition of enrichment waste is described. The existing methods of waste storage waterproofing are reviewed. The studied residuals of copper ore enrichment can be insulated with a mixture of processed secondary polyethylene and polypropylene pellets. The physical and mechanical properties of recycled polymers are investigated. The proposed technology of covering with a waterproofing coating can be applied to preserve technogenic deposits aiming at their future secondary extraction, as well as to ensure the environmental safety of newly designed facilities. The implementation of this technique will improve the regional environmental situation and reduce the migration of potentially hazardous substances as a result of seepage, thus reducing the pollution of natural waters.
Rocznik
Strony
214--225
Opis fizyczny
Bibliogr. 38 poz., rys., tab.
Twórcy
  • Saint Petersburg Mining University, Russia
  • Saint Petersburg Mining University, Russia
  • Saint Petersburg Mining University, Russia
Bibliografia
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  • Bolshunova, T.S., Rikhvanov, L.P., Mezhibor, A.M., Baranovskaya, N.V., Yusupov, D.V. (2017). Biogeochemical features of epiphytyc lichens from the area of the tailing of a gold-polymetallic deposit (Kemerovo region, Russia) comparative to a reference area. International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, 17(51), 165-172.
  • Bonotto, D.M., Garcia-Tenorio, R. (2019). Investigating the migration of pollutants at Barreiro area, Minas Gerais State, Brazil, by the 210 Pb chronological method. Journal of Geochemical Exploration, 196, 219-234.
  • Bortnikov, A.V., Kutolin, V.A., Samukov, A.D., Shuloyakov, A.D., Shirokikh, V.A. (2014). A study of possibilities for granitic rocks processing dispersed waste material utilization in mineral cotton production. Obogashchenie Rud, 6, 33-37.
  • Brysiewicz, A., Bonisławska, M., Czerniejewski, P., Kierasiński, B. (2019). Quality Analysis of Waters from Selected Small Watercourses within the River Basins of Odra River and Wisła River. Rocznik Ochrona Środowiska, 21, 1202-1216.
  • Bushuev, Y.Y., Leontev, V.I., Machevariani, M.M. (2018). Geochemical features of AuTe epithermal ores of the Samolazovskoye deposit (Central Aldan ore District, Yakutia). Key Engineering Materials, 769 KEM, 207-212.
  • Coulombe, V., Bussière, B., Côté, J., Garneau, P. (2012). Performance of insulation covers to control acid mine drainage in cold environment. Proceedings of the International Conference on Cold Regions Engineering, 789-799.
  • Dos Santos, L.S., Gardoni, M.D.G.A. (2014). Study of the durability of geomembranes for waterproofing of reservoirs of gold tailings dams in Brazil. 10th International Conference on Geosynthetics, ICG.
  • Gałuszka, A., Migaszewski, Z.M., Dołęgowska, S., Michalik, A. (2018). Geochemical anomalies of trace elements in unremediated soils of Mt. Karczówka, a historic lead mining area in the city of Kielce, Poland. Science of the Total Environment, 639, 397-405.
  • Kasimov, N.S., Kosheleva, N.E., Timofeev, I.V. (2016). Ecological and Geochemical Assessment of Woody Vegetation in Tungsten-Molybdenum Mining Area (Buryat Republic, Russia). IOP Conference Series: Earth and Environmental Science 41(1), 012026.
  • Koptev, V.Y., Kopteva A.V. (2017). Improving paraffin deposits detection methodology for better ecological safety during hydrocarbon transportation. International Journal of Applied Engineering Research, 12(5), 618-621.
  • Krasotkina, A.O., Machevariani, M.M., Korolev, N.M., Makeyev, A.B., Skublov, S.G. (2017). Typomorphic features of niobium rutile from the polymineral occurrence Ichetju (the Middle Timan). Zapiski Rossiiskogo Mineralogicheskogo Obshchestva, 146(2), 88-100.
  • Kremcheev, E.A., Gromyka, D.S., Nagornov, D.O. (2018). Techniques to determine spontaneous ignition of brown coal. Journal of Physics: Conference Series, 1118(1), 012021.
  • Kruk, M.N., Guryleva, N.S., Cherepovitsyn, A.E., Nikulina, A.Yu. (2018). Opportunities for improving the corporate social responsibility programs for metallurgical companies in the Arctic. Non-ferrous Metals, 44(1), 3-6.
  • Krzaklewski, W., Pietrzykowski, M. (2002). Selected physico-chemical properties of zinc and lead ore tailings and their biological stabilisation. Water, Air, and Soil Pollution, 141(1-4), 125-142.
  • Lee, J.K., Shang, J.Q. (2013). Thermal properties of mine tailings and tire crumbs mixtures.Construction and Building Materials, 48, 636-646.
  • Litvinenko, V.S. (2020). Digital Economy as a Factor in the Technological Development of the Mineral Sector. Natural Resources Research, 29(3), 1521-1541.
  • Lyamkin, D.I. (2000). Mechanical properties of polymers: Textbook. Moscow, 64.
  • Makarov, A.B. (2000). Technogenic deposits of mineral raw materials. Soros Educational Journal, 6(8).
  • Nagornov, D.O., Kremcheev, E.A., Kremcheeva, D.A. (2019). Research of the condition of regional parts of massif at longwall mining of prone to spontaneous ignition coal seams. International Journal of Civil Engineering and Technology, 10(1), 876-883.
  • Nedosekin, A.O., Rejshahrit, E.I., Kozlovskiy, A.N. (2019). Strategic approach to assessing economic sustainability objects of mineral resources sector of Russia. Journal of Mining Institute, 237, 354-360.
  • Nikolaevna, P.A., Sergeevich, S.A. (2020). Peculiarities of assessing the reservoir properties of clayish reservoirs depending on the water of reservoir pressure maintenance system properties. Journal of Applied Engineering Science, 18(1), 10-14.
  • Pochechun, V.A., Melchakov, Yu.L. Babenko, D.A. (2014). The use of a systematic approachin the study of natural and man-made geosystems. Bulletin of Tambov University. Series: Natural and Technical Sciences, 19(5), 1551-1554.
  • Recommendations for the design and construction of sludge collectors and tailings of metallurgical industry (1986) VODGEO Institute. Moscow, 128 p.
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  • Semyachkov, A.I., Drebenstedt, C, Vorobiev, A.E. (2012). Geoecology. Textbook for higher mining and geological educational institutions. Yekaterinburg, 289.
  • Sliti, N., Abdelkrim, C., Ayed, L. (2019). Assessment of tailings stability and soil contamination of Kef Ettout (NW Tunisia) abandoned mine. Arabian Journal of Geosciences,12(3), 73.
  • Végsöová, O., Straka, M., Rosová, A. (2019). Protecting and securing an environmentaffected by industrial activity for future utilization. Rocznik Ochrona Srodowiska, 21(1), 98-111.
  • Wang, W., Zhao, Y., Liu, H., Song, S. (2017). Fabrication and mechanism of cementbased waterproof material using silicate tailings from reverse flotation. Powder Technology, 315, 422-429.
  • Weishi, L., Guoyuan, L., Ya, X., Qifei, H. (2018). The properties and formation mechanisms of eco-friendly brick building materials fabricated from low-silicon iron ore tailings. Journal of Cleaner Production, 204, 685-692.
  • Yusupov, D.V., Bolshunova, T.S., Mezhibor, A.M., Rikhvanov, L.P., Baranovskaya, N.V. (2017). The use of Betula Pendula R. Leaves for the assessment of environmental pollution by metals around tailings from a gold deposit (Western Siberia, Russia). International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM, 17(41), 665-672.
  • Yusupov, D.V., Karpenko, Yu.A. (2016). REE, Uranium (U) and Thorium (Th) contents in Betula pendula leaf growing around Komsomolsk gold concentration plant tailing (Kemerovo region, Western Siberia, Russia). IOP Conference Series: Earth and Environmental Science, 43(1), 012053.
  • Zhang, Z., Sui, W., Wang, K., Tang, G., Li, X. (2018). Changes in particle size composition under seepage conditions of reclaimed soil in Xinjiang, China. Processes, 6(10), 201.
  • Zhao, F.-Q., Li, H., Liu, S.-J., Chen, J.-B. (2011). Preparation and properties of an environment friendly polymer-modified waterproof mortar. Construction and Building Materials, 25(5), 2635-2638.
  • Zhu, P., Zheng, M., Zhao, S., Wu, J., Xu, H. (2015). Synthesis and thermal insulation performance of silica aerogel from recycled coal gangue by means of ambient pressure drying. Journal Wuhan University of Technology, Materials Science Edition, 30(5), 908-913.
  • Zubala, T. (2019). Time and Space Variability of Water Quality in the Inner-city River in Lublin from the Aspect of Existing Natural and Land Use Conditions. Rocznik Ochrona Środowiska, 21, 712-727.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8cd6c0e9-8fe8-4dd0-a43f-ceb229ea9933
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