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Economic and environmental aspects of using mining equipment and emulsion explosives for ore mining

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The calculation of economic efficiency during the preparatory mine operations using various mining equipment and types of explosives was performed. The general exponential regularity of determining the cost of carrying out 1 m3 of working depending on the strength of rocks to compression when using different types of explosives and tunneling equipment was established. An environmental assessment of the use of emulsion explosives in an iron ore mine showed a decrease in concentrations of environmentally hazardous substances and a decrease in environmental hazard coefficients, which resulted in a decrease in the pollution of the atmospheric air.
Czasopismo
Rocznik
Strony
88--97
Opis fizyczny
Bibliogr. 26 poz., wykr.
Twórcy
  • Dnipro University of Technology, 19 Yavornytskoho Ave. 49005, Dnipro, Ukraine
  • Dnipro University of Technology, 19 Yavornytskoho Ave. 49005, Dnipro, Ukraine
  • Dnipro University of Technology, 19 Yavornytskoho Ave. 49005, Dnipro, Ukraine
  • Ukrainian State University of Chemical Technology, 8 Gagarin Ave., 49005, Dnipro, Ukraine
Bibliografia
  • [1] Kholodenko T., Ustimenko Y., Pidkamenna L., Pavlychenko, A.: Ecological safety of emulsion explosives use at mining enterprises. Progressive Technologies of Coal, Coalbed Methane, and Ores Mining 2014: 255-260. DOI: 10.1201/b17547-45
  • [2] Mertuszka P., Kramarczyk B.: The impact of time on the detonation capacity of bulk emulsion explosives based on Emulinit 8L. Propellants, Explosives, Pyrotechnics 2018, 43(8): 799-804. DOI: 10.1002/prep.201800062
  • [3] Mertuszka P., Fuławka K., Pytlik M., Szastok M.: The influence of temperature on the detonation velocity of selected emulsion explosives. Journal of Energetic Materials 2019, 38(3): 336–347. DOI: 10.1080/07370652.2019.1702739
  • [4] Mertuszka P., Cenian B., Kramarczyk B., Pytel W.: Influence of explosive charge diameter on the detonation velocity based on Emulinit 7L and 8L bulk emulsion explosives. Central European Journal of Energetic Materials 2018, 15(2): 351-363. DOI: 10.22211/cejem/78090
  • [5] Gorova A., Pavlychenko A., Kholodenko T.: Prospects for the bioindication methods implementation in the environmental management system of industrial enterprises. Annual Scientific-Technical Colletion – Mining of Mineral Deposits 2013: 83-84. DOI: 10.1201/b16354-15
  • [6] Kholodenko T., Ustimenko Y., Pidkamenna L., Pavlychenko A.: Technical, economic and environmental aspects of the use of emulsion explosives by ERA brand in underground and surface mining. New Developments in Mining Engineering 2015 2015: 211-219. DOI: 10.1201/b19901-38
  • [7] Lyashenko V., Vorob’ev A., Nebohin V., Vorob’ev K.: Improving the efficiency of blasting operations in mines with the help of emulsion explosives. Mining of Mineral Deposits 2018, 12(1): 95-102. DOI: 10.15407/mining12.01.095
  • [8] Lyashenko V.I., Golik V.I., Dyatchin V. Z.: Increasing environmental safety by reducing technogenic load in mining regions. Izvestiya. Ferrous Metallurgy 2020, 63(7): 529–538. DOI: 10.17073/0368-0797-2020-7-529-538
  • [9] Krysin R. S., Ishchenko N. I., Klimenko V. A., Piven V. A., Kuprin, V. P.: Explosive ukrainit-PM-1: Equipment and fabrication technology. Gornyi Zhurnal 2004, (8): 32-37.
  • [10] Gurin A.A., Lyashenko V.I.: Improvement of the Assessment Methods of the Effect of Mass Emissions in Pits on the Environment. Occupational Safety in Industry 2018, (1): 35–41. DOI: 10.24000/0409-2961-2018-1-35-41
  • [11] Khomenko O., Kononenko M., Savchenko, M.: Technology of underground mining of ore deposits. Dnipro: NTU “DP” 2018. DOI: 10.33271/dut.001
  • [12] Khomenko O., Kononenko M., Myronova I.: Ecological and technological aspects of iron-ore underground mining. Mining of Mineral Deposits 2017, 11(2): 59–67. DOI: 10.15407/mining11.02.059
  • [13] Kononenko M., Khomenko O.: New theory for the rock mass destruction by blasting. Mining of Mineral Deposits 2021, 15(2): 111–123. DOI: 10.33271/mining15.02.111
  • [14] Kononenko M., Khomenko O., Savchenko M., Kovalenko I.: Method for calculation of drilling-andblasting operations parameters for emulsion explosives. Mining of Mineral Deposits 2019, 13(3): 22-30. DOI: 10.33271/mining13.03.022
  • [15] Khomenko O., Kononenko M., Myronova I., Savchenko M.: Application of the emulsion explosives in the tunnels construction. E3S Web of Conferences 2019, 123: 01039. DOI: 10.1051/e3sconf/201912301039
  • [16] Kononenko M., Khomenko O.: Mathematic simulation for the rock mass destruction by blasting. Physical and Chemical Geotechnologies 2021: 27–37. DOI: 10.15407/pcgt.21.05
  • [17] Vladyko O., Kononenko M., Khomenko O.: Imitating modeling stability of mine workings. Geomechanical Processes During Underground Mining 2012: 147-150. DOI: 10.1201/b13157-26
  • [18] Kononenko M., Khomenko O., Kovalenko I., Savchenko M.: Control of density and velocity of emulsion explosives detonation for ore breaking. Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu 2021, (2): 69–75. DOI: 10.33271/nvngu/2021-2/069
  • [19] Dychkovskyi, R., Tabachenko, M., Zhadiaieva, K., Dyczko, A., & Cabana, E.: Gas hydrates technologies in the joint concept of geoenergy usage. E3S Web of Conferences 2021, 230, 01023. https://doi.org/10.1051/e3sconf/202123001023
  • [20] Myronova I.: Changing of biological traits of winter wheat that vegetate near emission source of iron-ore mine. Mining of Mineral Deposits 2015, 9(4): 461–468. DOI: 10.15407/mining09.04.461
  • [21] Myronova I.: The level of atmospheric pollution around the iron-ore mine. New Developments In Mining Engineering 2015 2015: 193-197. DOI: 10.1201/b19901-35
  • [22] Mironova I., Borysovs’ka O.: Defining the parameters of the atmospheric air for iron ore mines. Progressive Technologies of Coal, Coalbed Methane, and Ores Mining 2014: 333-339. DOI: 10.1201/b17547-57
  • [23] Khomenko O., Kononenko M., Myronova I., Sudakov A. Increasing ecological safety during underground mining of iron-ore deposits. Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu 2018, (2): 29-38. DOI: 10.29202/nvngu/2018-2/3
  • [24] Kicki, J., & Dyczko, A. The concept of automation and monitoring of the production process in an underground mine. New Techniques and Technologies in Mining 2010, 245–253. doi:10.1201/b11329-41
  • [25] Dychkovskyi, R.O.: Forming the bilayer artificially created shell of georeactor in underground coal well gasification, Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu 2015, 5, 37-42.
  • [26] Myronova I.: Prediction of contamination level of the atmosphere at influence zone of iron-ore mine. Mining of Mineral Deposits 2016, 10(2): 64-71. DOI: 10.15407/mining10.02.0064
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu „Społeczna odpowiedzialność nauki” - moduł: Popularyzacja nauki i promocja sportu (2022-2023)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-aef22162-9e4e-4120-8ddd-acfea216d5f2
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