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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/49600
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dc.contributor.authorDudar, Tamara
dc.date.accessioned2020-05-08T08:03:59Z-
dc.date.available2020-05-08T08:03:59Z-
dc.date.created2019-03-20
dc.date.issued2019-03-20
dc.identifier.citationDudar T. Uranium mining and milling facilities legacy sites: Ukraine case study / Tamara Dudar // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 4. — No 4. — P. 212–218.
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/49600-
dc.description.abstractThis research aims to present and analyze the territories of uranium mining and milling facilities of Ukraine from the point of “legacy sites” view. The territory of approximately 246 km long and 26 km wide where uranium legacy sites are located was first outlined and considered according to the developed classification. Further steps to explore this topic using remote sensing technique are indicated.
dc.format.extent212-218
dc.language.isoen
dc.publisherLviv Politechnic Publishing House
dc.relation.ispartofЕкологічні проблеми, 4 (4), 2019
dc.relation.ispartofEnvironmental Problems, 4 (4), 2019
dc.relation.urihttp://atom.org.ua/wp-content/2016/03/Uran_mines_
dc.subjecturanium legacy site
dc.subjecturanium mining and milling facilities
dc.subjectunderground mining
dc.subjectin situ leaching
dc.titleUranium mining and milling facilities legacy sites: Ukraine case study
dc.typeArticle
dc.rights.holder© Національний університет “Львівська політехніка”, 2019
dc.rights.holder© Dudar T., 2019
dc.contributor.affiliationNational Aviation University
dc.format.pages7
dc.identifier.citationenDudar T. Uranium mining and milling facilities legacy sites: Ukraine case study / Tamara Dudar // Environmental Problems. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 4. — No 4. — P. 212–218.
dc.relation.references1.Regulatory Supervision of Legacy Sites: The Process from Recognition to Resolution. Report of an international workshop Lillehammer, 21–23 November 2017.
dc.relation.references2.IAEA, 2005. Environmental contamination from uranium production facilities and their remediation. In: Proc. an Int. Work. Held Lisbon, Port. 11–13 Febr.2004.
dc.relation.references3.Miloš René (December 20th 2017). History of Uranium Mining in Central Europe, Uranium – Safety, Resources, Separation and Thermodynamic Calculation, Nasser S. Awwad, Intech Open, DOI:10.5772/intechopen.71962.
dc.relation.references4.Hähne R, Murphy S, Vrijen J. J., “State and prospects of closure and remediation of tailings deposits from uranium ore processing and heap leaching in Europe” Vienna, Austria: IAEA, 2011.
dc.relation.references5.Dudar T. V., Stankevich S.A. et al.: Environmental safety of the territory of uranium mining and milling legacy in Ukraine. VII All-round Ukrainian and international participation Environmental Congress (Ecology–2019), September 25–27, 2019. Collection of research papers. – Vinnitsya: VNTU? 2019/ P/51.
dc.relation.references6.Dudar T. V. Uranova spadshchina Ukrainy: ecologichni naslidky. Ekilogichna bezpeka derzavy: problem I shlyakhy vurishennya. Materialy XV miznarodnoi konferentsii. 9-13 September 2019. Kharkiv. P. 157–161.
dc.relation.references7.Balyan O., Bulgakova M. Yeremenko I. Report “Ecologichna bezpeka uranovyh shakht”. Available at: http://atom.org.ua/wp-content/2016/03/Uran_mines_ Ukraine_report.pdf
dc.relation.references8.Podulyakh S. Yaderne sertse Ukrainy. Atomprom Ukrainy. No. 2, 2017. P. 6-8.
dc.relation.references9.Kovalenko G. D. Radioecologiya Ukrainy: monographiya. Izdanie 3, pererab. I dopoln. Kharkiv.: INZEK, 2013. 344 p.
dc.relation.references10.Ryazantsev V. Terytoriya tekhnogennogo lykha. Atomprom Ukrainy. No. 2, 2017. P. 20–24.
dc.relation.referencesen1.Regulatory Supervision of Legacy Sites: The Process from Recognition to Resolution. Report of an international workshop Lillehammer, 21–23 November 2017.
dc.relation.referencesen2.IAEA, 2005. Environmental contamination from uranium production facilities and their remediation. In: Proc. an Int. Work. Held Lisbon, Port. 11–13 Febr.2004.
dc.relation.referencesen3.Miloš René (December 20th 2017). History of Uranium Mining in Central Europe, Uranium – Safety, Resources, Separation and Thermodynamic Calculation, Nasser S. Awwad, Intech Open, DOI:10.5772/intechopen.71962.
dc.relation.referencesen4.Hähne R, Murphy S, Vrijen J. J., "State and prospects of closure and remediation of tailings deposits from uranium ore processing and heap leaching in Europe" Vienna, Austria: IAEA, 2011.
dc.relation.referencesen5.Dudar T. V., Stankevich S.A. et al., Environmental safety of the territory of uranium mining and milling legacy in Ukraine. VII All-round Ukrainian and international participation Environmental Congress (Ecology–2019), September 25–27, 2019. Collection of research papers, Vinnitsya: VNTU? 2019/ P/51.
dc.relation.referencesen6.Dudar T. V. Uranova spadshchina Ukrainy: ecologichni naslidky. Ekilogichna bezpeka derzavy: problem I shlyakhy vurishennya. Materialy XV miznarodnoi konferentsii. 9-13 September 2019. Kharkiv. P. 157–161.
dc.relation.referencesen7.Balyan O., Bulgakova M. Yeremenko I. Report "Ecologichna bezpeka uranovyh shakht". Available at: http://atom.org.ua/wp-content/2016/03/Uran_mines_ Ukraine_report.pdf
dc.relation.referencesen8.Podulyakh S. Yaderne sertse Ukrainy. Atomprom Ukrainy. No. 2, 2017. P. 6-8.
dc.relation.referencesen9.Kovalenko G. D. Radioecologiya Ukrainy: monographiya. Izdanie 3, pererab. I dopoln. Kharkiv., INZEK, 2013. 344 p.
dc.relation.referencesen10.Ryazantsev V. Terytoriya tekhnogennogo lykha. Atomprom Ukrainy. No. 2, 2017. P. 20–24.
dc.citation.journalTitleЕкологічні проблеми
dc.citation.volume4
dc.citation.issue4
dc.citation.spage212
dc.citation.epage218
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
Appears in Collections:Environmental Problems. – 2019. – Vol. 4, No. 4

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