EXAMINATION OF THE ENVIRONMENTAL IMPACT OF UXO AND WEAPON RESIDUES DETECTED USING DRONE-BASED AND GROUND-BASED MAGNETOMETER SURVEYS AND QUANTIFIED WITH LABORATORY MAGNETIC AND GEOCHEMICAL METHODS

dc.contributor.authorBondar, Ksenia
dc.date.accessioned2024-06-03T08:32:03Z
dc.date.available2024-06-03T08:32:03Z
dc.date.issued2024-05-14
dc.description.abstractLarge areas in Ukraine undergo missile attacks and artillery shelling resulting in contamination of land with with UXO, weapon residues and small size particulate matter. Weapon residues are sources of organic and inorganic harmful substances including heavy metals. They subsequently translocate to water, thus increasing the risk of human exposure. We propose to use the magnetic method as a tool for quantification of soil pollution with military-related HM emissions. An increasing body of literature discusses topsoil magnetic measurements used as a proxy for HMs pollution from industrial and urban sources. Hopefully, magnetic methods could be applied in areas of battle fields, small-arm shooting ranges, artillery, mortar and rocket ranges, and grenade courts. The action plan includes in-situ magnetometer surveys and magnetic susceptibility mapping, soil sampling and laboratory magnetic and geochemical measurements. Polluted soils and surface deposits are studied comparatively to unpolluted ones at the areas affected by the war in Ukraine.
dc.identifier.citationBondar, Ksenia. (2024). Examination of the environmental impact of UXO and weapon residues detected using drone-based and ground-based magnetometer surveys and quantified with laboratory magnetic and geochemical methods. Presentation. Kyiv: American University Kyiv. URI:https://er.auk.edu.ua/handle/234907866/90
dc.identifier.urihttps://er.auk.edu.ua/handle/234907866/90
dc.language.isoen_US
dc.subjectmagnetic methods
dc.subjectsoil pollution
dc.subjectmilitary-related HM emissions
dc.titleEXAMINATION OF THE ENVIRONMENTAL IMPACT OF UXO AND WEAPON RESIDUES DETECTED USING DRONE-BASED AND GROUND-BASED MAGNETOMETER SURVEYS AND QUANTIFIED WITH LABORATORY MAGNETIC AND GEOCHEMICAL METHODS
dc.typePresentation

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