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Integral Assessment of the Impact on Ukraine's Environment of Military Actions in the Conditions of Russian Aggression

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EN
The article outlines the current issues of environmental security in the context of the escalation of the RussianUkrainian war. The purpose of the study is to assess the risks associated with environmental hazards in the context of the escalation of the Russian-Ukrainian war. The article provides an overview of implementations of the economic mechanism of environmental risk assessment and provides quantitative characteristics of integrated threat assessments that characterize the environmental security of the regions of Ukraine. According to the results of the assessment of the integral indicator of ecological danger, the regions of Ukraine are grouped according to the level of safety. Estimated values are identified according to the proposed numerical range of environmental risk values. The obtained results indicate that the regions of Ukraine differ in terms of the integral indicator of ecological danger. To assess the danger of anthropogenic impact on human and environmental safety, the following environmental safety risk assessments were calculated.
Twórcy
  • Viacheslav Chornovil Institute of Sustainable Development of National University, Lviv Polytechnic, 2/4 Karpinskoho St., Building 1, Lviv, 79000, Ukraine
  • Viacheslav Chornovil Institute of Sustainable Development of National University, Lviv Polytechnic, 2/4 Karpinskoho St., Building 1, Lviv, 79000, Ukraine
autor
  • Viacheslav Chornovil Institute of Sustainable Development of National University, Lviv Polytechnic, 2/4 Karpinskoho St., Building 1, Lviv, 79000, Ukraine
Bibliografia
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  • 2. Aleksandrov I.O., Polovyan O.V., Konovalov O.F., Logachova O.V., Tarasov M.Y. 2010. Strategy of sustainable development of the region: monograph. NAS of Ukraine. Donetsk: Publication of Institute of Economics. prom-sti, 204.
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  • 7. EU4Environment. Towards green transformation of Ukraine: State of Play in 2021. Monitoring progress based on the OECD green growth indicators” 2021. Available at: https://www.eu4environment.org/app/uploads/2021/05/Ukraine-country-profile2020-21-second-edition.pdf
  • 8. Hlobystov E., Zharova L. 2010. Ecological safety of spatial development of productive forces of Ukraine. Mechanism of economic regulation, 3(2), 182–188.
  • 9. Hoffman A. 1999. Institutional evolution and change: Environmentalism and the U.S. chemical industry. Academy of Management Journal, 42, 351–371.
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  • 13. Kostenko E., Melnyk L., Matko S., Malovanyy M. 2017. The use of sulphophtalein dyes immobilized on anionite Ab-17X8 to determine the contents of Pb(Ii), Cu(Ii), Hg(Ii) and Zn(Ii) in liquid medium. Chemistry & Chemical Technology, 11(1), 117–124. https://doi.org/10.23939/chcht11.01.117
  • 14. Kyiv School of Economics. Direct damage caused to the infrastructure of Ukraine during the war reached more than 105.5 billion US dollars. 2022. Available at: https://kse.ua/about-the-school/news/direct-damage-caused-to-ukraine-sinfrastructureduring-the-war-has-reached-over-105-5-billion/
  • 15. Malovanyy M., Korbut M., Davydova I., Tymchuk I. 2021. Monitoring of the Influence of Landfills on the Atmospheric Air Using Bioindication Methods on the Example of the Zhytomyr Landfill, Ukraine. Journal of Ecological Engineering, 22(6), 36–49. https://doi.org/10.12911/22998993/137446
  • 16. Malovanyy M., Lyashok Y., Podkopayev S., Povzun O., Kipko O., Kalynychenko V., Virich S., Skyrda A. 2020. Environmental technologies for use of coal mining and chemical industry wastes. Journal of Ecological Engineering, 21(2), 95–103. https://doi.org/10.12911/22998993/116339
  • 17. Malovanyy M., Petrushka K., Petrushka I. 2019. Improvement of Adsorption-Ion-Exchange Processes for Waste and Mine Water Purification. Chemistry & Chemical Technology, 13(3), 372–376. https://doi.org/10.23939/chcht13.03.372
  • 18. Malovanyy А., Plaza E., Trela J., Malovanyy M. 2014. Combination of ion exchange and partial nitritation/Anammox process for ammonium removal from mainstream municipal wastewater. WaterScience & Technology, 70(1), 144–151. https://doi.org/10.2166/wst.2014.208
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  • 26. Popovych V., Telak J., Telak O., Malovanyy M., Yakovchuk R., Popovych N. 2020. Migration of Hazardous Components of Municipal Landfill Leachates into the Environment. Journal of Ecological Engineering, 21(1), 52–62. https://doi.org/10.12911/22998993/113246
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  • 28. The day of the war with Russia costs Ukraine up to $ 4 billion. UKRINFORM. 08.04.2022. Available at: https://www.ukrinform.ua/rubriceconomy/3452024-den-vijni-zrosieu-kostueukraini-do-4-milardiv-smigal.html
  • 29. Total economic losses suffered during the war. Kyiv School of Economics. 2022. Available at: https://kse.ua/en/about-the-school/news/zagalna-sumapryamih-zadokumentovanih-zbitkiv-infrastrukturistanovit-mayzhe-92-mlrd.
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  • 31. Tulaydan Y., Malovanyy M., Kochubei V., Sakalova H. 2017. Treatment of high-strength wastewater from ammonium and phosphate ions with the obtaining of struvite. Chemistry & Chemical Technology, 11(4), 463–468. https://doi.org/10.23939/chcht11.04.463
  • 32. Voytovych I., Malovanyy M., Zhuk V., Mukha O. 2020 Facilities and problems of processing organic wastes by family-type biogas plants in Ukraine. Journal of water and land development, 45(4–6), 185–189. https://doi.org/10.24425/jwld.2020.133493
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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-a06586d5-1e4c-4891-814e-a08ae945420c
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