Cite

[1] Smirnyakova V.V. Ocenka vozdejstviya predpriyatij ugol'noj otrasli na okruzhayushchuyu prirodnuyu sredu (Assessment of the impact of coal industry enterprises on the environment.). Proceedings of the 9th International conference on the problems of mining, construction and energy 2013:2(2):255–259. (in Russian) Search in Google Scholar

[2] Instrukciya po provedeniyu ocenki vozdejstviya na okruzhayushchuyu sredu. Prikaz Ministra ohrany okruzhayushchej sredy Respubliki Kazahstan ot 28 iyunya 2007 goda № 204-p (Instructions for Conducting an Environmental Impact Assessment. Order of the Minister of Environmental Protection of the Republic of Kazakhstan dated June 28, 2007 No. 204-p) [Online]. [Accessed 14.01.2021]. Available: https://adilet.zan.kz/rus/docs/V070004825_ Search in Google Scholar

[3] Poslanie glavy gosudarstva Kasym-ZHomarta Tokaeva narodu Kazahstana 1 sentyabrya 2020 goda (Message from the head of state Kassym-Zhomart Tokayev to the people of Kazakhstan on September 1, 2020) [Online]. [Accessed 14.01.2021]. Available: http://www.akorda.kz/ru/addresses/addresses_of_president/poslanie-glavy-gosudarstvakasym-zhomarta-tokaeva-narodu-kazahstana-1-sentyabrya-2020-g (in Russian) Search in Google Scholar

[4] Zarubin M., et al. Developing information systems of operation schedules to stabilize the grade of a mineral. Mining of Mineral Deposits 2017:11(4):59–70. https://doi.org/10.15407/mining11.04.05910.15407/mining11.04.059 Search in Google Scholar

[5] Minin A. A. Geologicheskie posledstvija gornorudnogo proizvodstva (Geological consequences of mining production.). Energiya: Ekonomika, Tehnika, Ekologiya 2010:3:49–51. (in Russian) Search in Google Scholar

[6] The US National Environmental Policy Act (NEPA). USA, 1969. Search in Google Scholar

[7] Council Directive of 27 June 1985 on the assessment of the effects of certain public and private projects on the environment (85/337/EEC). Official Journal 1985:47. Search in Google Scholar

[8] Maksimenko Yu. L. Maksimenko, Yu. L. Ocenka vozdejstviya na okruzhayushchuyu sredu: Posobie dlya praktikov (Environmental Impact Assessment: A Handbook for Practitioners.). Moscow: REFIA, 1996. (in Russian) Search in Google Scholar

[9] United Nations. Convention on Environmental Impact Assessment in a Transboundary Context. Geneva: UN, 1991. Search in Google Scholar

[10] Yelyubaev Zh. S. Legal Regulation of Subsoil Use and Investment in the Countries of Caspian and Black Sea Regions. Presented at the Conference ‘Upstream Development in the Caspian and Black Sea Regions’, Baku, Azerbaijan, 2014. Search in Google Scholar

[11] Kodeks Respubliki Kazahstan O nedrah i nedropol'zovanii (s izmeneniyami i dopolneniyami po sostoyaniyu na 09.03.2021 g.) (Code of the Republic of Kazakhstan On Subsoil and Subsoil Use (with amendments and additions as of 09.03.2021.)). [Online]. [Accessed 15.03.2021]. Available: https://online.zakon.kz/Document/?doc_id=31764592 (in Russian) Search in Google Scholar

[12] Ekologicheskij kodeks Respubliki Kazahstan ot 2 yanvarya 2021 goda № 400-VI ZRK (Environmental Regulation of the Republic of Kazakhstan dated January 2, 2021 No. 400-VI ZPK). [Online]. [Accessed 14.01.2021]. Available: https://adilet.zan.kz/rus/docs/K2100000400 Search in Google Scholar

[13] Zemel'nyj kodeks Respubliki Kazahstan ot 20 iyunya 2003 goda № 442. obnovlennyj s izmeneniyami na: 01.01.2021 (Land Code of the Republic of Kazakhstan dated June 20, 2003 No. 442. updated with changes as of: 01.01.2021.). [Online]. [Accessed 14.01.2021]. Available: https://adilet.zan.kz/rus/docs/K030000442_ (in Russian) Search in Google Scholar

[14] Vodnyj kodeks Respubliki Kazahstan ot 9 iyulya 2003 goda № 481-II (s izmeneniyami i dopolneniyami po sostoyaniyu na 02.01.2021 g.) Water Code of the Republic of Kazakhstan dated July 9, 2003 No. 481-II (with amendments and additions as of 01/02/2021).). [Online]. [Accessed 14.01.2021]. Available: https://online.zakon.kz/document/?doc_id=1042116 (in Russian) Search in Google Scholar

[15] Iljin V. I. Tekhnologicheskie processy i sposoby ochistki proizvodstvennyh stochnyh vod (Technological processes and methods of industrial wastewater treatment. Moscow: RHTU, 2014. Search in Google Scholar

[16] Pavlov D. V., Gogina E. S. Sovremennaya resursosberegayushchaya sistema oborotnogo vodosnabzheniya galvanicheskogo proizvodstva (Modern resource-saving water recycling system for galvanic production.). Vestnik MGSU 2013:10:175–182. Search in Google Scholar

[17] Pavlova I. V., Postnikova I. N. Zashchita prirodnyh vod ot tekhnogennyh zagryaznenij: uchebnoe posobie dlya studentov napravlenij podgotovki bakalavrov i magistrantov ‘Himicheskaya tekhnologiya’ i ‘Tekhnosfernaya bezopasnost'’ (Protection of natural waters from technogenic pollution: a textbook for students in the areas of training bachelors and undergraduates ‘Chemical technology’ and ‘Technosphere safety’.). Nizhny Novgorod: Nizhny Novgorod state technical university n. a. R.E. Alekseev, 2015. (in Russian) Search in Google Scholar

[18] Lesin Yu. V. Massoperenos dispersnyh chastic pri fil'tracii vody v krupnozernistyh sredah. Fiziko-tekhnicheskie problemy razrabotki poleznyh iskopaemyh (Mass transfer of dispersed particles during water filtration in coarse-grained media). Fiziko-Tehnicheckie Problemi Razrabotki Poleznih Iskopaemih 2010:1:92–96. (in Russian)10.1007/s10913-010-0011-z Search in Google Scholar

[19] Lesin Yu. V. Ochistka stochnyh vod v tekhnogennyh porodnyh massivah (Wastewater treatment in technogenic rock masses.). Mining informational and analytical bulletin 2010:OVZ:119–124. (in Russian) Search in Google Scholar

[20] Tyulenev M. A. Perenos zagryaznyayushchih veshchestv pri fil'tracii stochnyh kar'ernyh vod vo vskryshnyh porodah (Transfer of pollutants during filtration of pit wastewater in overburden.). Vestnik Kuzbasskogo Gosudarstvennogo Gosudarstvennogo Tehnicheskogo Universiteta 2011:2:22–30. (in Russian) Search in Google Scholar

[21] Kalnins S. N. et al. Applicability of Combined Project Evaluation Methodology to EIA Projects. Energy Procedia 2016:95:424–428. https://doi.org/10.1016/j.egypro.2016.09.05210.1016/j.egypro.2016.09.052 Search in Google Scholar

[22] Bajcinovci B. Environment Quality: Impact from Traffic, Power Plant and Land Morphology, a Case Study of Prishtina. Environmental and Climate Technologies 2017:19(1):65–74. https://doi.org/10.1515/rtuect-2017-000610.1515/rtuect-2017-0006 Search in Google Scholar

[23] Bajcinovci B. Environmental and Climate Dilemma: Coal for Heating or Clean Air for Breathing: A Case of Prishtina. Environmental and Climate Technologies 2019:23(1):41–51. https://doi.org/10.2478/rtuect-2019-000310.2478/rtuect-2019-0003 Search in Google Scholar

[24] Baird J., et al. Emergence of Collaborative Environmental Governance: What are the Causal Mechanisms? Environmental Management 2019:63(1):16–31. https://doi:10.1007/s00267-018-1105-710.1007/s00267-018-1105-730259093 Search in Google Scholar

[25] Kubule A., Komisarova T., Blumberga D. Optimization Methodology for Complete Use of Bio-resources. Energy Procedia 2017:113:28–34. https://doi.org/10.1016/j.egypro.2017.04.00910.1016/j.egypro.2017.04.009 Search in Google Scholar

[26] Astahov A. S. Ekologicheskaya bezopasnost' i effektivnost' prirodopol'zovaniya (Environmental safety and efficiency of nature management.). Moscow: MGU, 2003. Search in Google Scholar

[27] Rodzkin A., et al. The Assessment of Cost of Biomass from Post-Mining Peaty Lands for Pellet Fabrication. Environmental and Climate Technologies 2018:22(1)118–131. https://doi.org/10.2478/rtuect-2018-000810.2478/rtuect-2018-0008 Search in Google Scholar

[28] Diaz F., Cilinskis E. Use of Multi-Criteria TOPSIS Analysis to Define a Decarbonization Path in Colombia. Environmental and Climate Technologies 2019:23(3):110–128. https://doi.org/10.2478/rtuect-2019-008310.2478/rtuect-2019-0083 Search in Google Scholar

[29] Kuzmin S., et al. Development of a New Environmentally-Friendly Technology for Transportation of Mined Rock in the Opencast Mining. Environmental and Climate Technologies 2020:24(1):341–356. https://doi.org/10.2478/rtuect-2020-001910.2478/rtuect-2020-0019 Search in Google Scholar

[30] Kadnikova O., et al. Ecological Feasibility of Applying Technology in Recycling Garment and Knitwear Production. Environmental and Climate Technologies 2019:23(2):291–309. https://doi.org/10.2478/rtuect-2019-006910.2478/rtuect-2019-0069 Search in Google Scholar

[31] Rzhevskij V. V. Otkrytye gornye raboty, tekhnologiya i kompleksnaya mekhanizaciya: uchebnik dlya studentov vuzov, obuchayushchihsya po specialjnosti ‘Tekhnologiya i kompleksnaya mekhanizaciya otkrytoj razrabotki mestorozhdenij poleznyh iskopaemyh’ (Open pit mining, technology and integrated mechanization: a textbook for university students studying in the specialty ‘Technology and integrated mechanization of open pit mining of mineral deposits’.). Moscow: LIBROKOM, 2010. (in Russian) Search in Google Scholar

[32] Trubeckoj K. N., et al. Spravochnik. Otkritie gornie raboti (Directory. Open pit mining.). Gornoe Bjuro, 1994. (in Russian) Search in Google Scholar

[33] Trubeckoj K. N. Osnovnye napravleniya i puti resheniya problem resursosberezheniya pri kompleksnom osvoenii nedr s zemnoj poverhnosti (The main directions and ways of solving the problems of resource conservation in the complex development of subsoil from the earth's surface.). Mining informational and analytical bulletin 2011:1:433–446. (in Russian) Search in Google Scholar

[34] Chanturiya V. A., Bunin I. Z. Pulsed power nanotechnologies for disintegration and breaking up of refractory precious metals. Nanobiotechnology in energy, environment and electronics methods and applications. Singapore: Jenny Stendford Publishing, 2014:41–66. Search in Google Scholar

[35] Metodika rascheta vrednyh vybrosov (sbrosov) i ocenki ekologicheskogo ushcherba pri ekspluatacii razlichnyh vidov kar'ernogo transporta (Methodology for calculating harmful emissions (discharges) and assessing environmental damage during the operation of various types of open pit transport.). Moscow: National Mining Research Center – A. A. Skochinsky Institute of Mining, 1994. (in Russian) Search in Google Scholar

[36] Metodika rascheta vrednyh vybrosov (sbrosov) dlya kompleksa oborudovaniya otkrytyh gornyh rabot (na osnove udel'nyh pokazatelej (Methodology for calculating harmful emissions (discharges) for a complex of equipment for open pit mining (based on specific indicators).). Luberci: Minenergo, 2016:12–55. (in Russian) Search in Google Scholar

[37] Normativno-pravovaya baza prirodopol'zovaniya i ohrany okruzhayushchej sredy (Regulatory framework for the use of natural resources and environmental protection) [Online]. [Accessed 15.03.2021]. Available: http://scibook.net/uchebniki-ekologii_1295/normativno-pravovaya-baza-prirodopolzovaniya-57916.html (in Russian) Search in Google Scholar

[38] Zarubin M., Zarubina V. Results of using neural networks for technological processes control of iron mill. Energy Procedia 2016:95:512–516. https://doi.org/10.1016/j.egypro.2016.09.07710.1016/j.egypro.2016.09.077 Search in Google Scholar

[39] Zarubin M., et al. 3D-Quarry: Digitization of The Geological Model of Deposit Based on A Semi-Structured Data Model. Proceedings of the 36th International Business Information Management Association (IBIMA) 2020:1162–1170. Search in Google Scholar

[40] Yue D., et al. Network-based robust H∞ control of systems with uncertainty. Automatica 2005:41(6):999–1007. https://doi.org/10.1016/j.automatica.2004.12.01110.1016/j.automatica.2004.12.011 Search in Google Scholar

[41] Gorban A. N., et al. Neuroinformatics. Novosibirsk: Science, Siberian office of the Russian Academy of Sciences, 1998. Search in Google Scholar

[42] Tsaregorodtsev V. The View of architecture and the requirement to the neurosimulator for the solution of modern industrial tasks. Proceedings of the 11th All-Russian seminar ‘Neuroinformatics and its appendices’ 2003:171–175. Search in Google Scholar

[43] Tsaregorodtsev V. G. Simplification of neural networks kk-purposes, ideas and methods. Neyrokompyyutera 2002:4:5–13. Search in Google Scholar

[44] Zarubin M. Results of development optimized adaptive ACS on neural network for mining. Journal of Chemical Technology and Metallurgy 2016:4(51):473–482. Search in Google Scholar

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