This study evaluates heavy-metal contamination in soils affected by military activities using training areas as proxies for conflict zones. Soil samples from a shooting range and a grenade range were analyzed using XRF and FAAS after mineralization. High concentrations of Cu, Ni, and Pb were detected, with extreme Pb levels at the shooting range exceeding preventive values. The results support the use of military training sites for developing remediation strategies applicable to war-affected regions. The study provides a relevant proxy-based approach to assess contamination under restricted field conditions and highlights contamination specificity linked to military activities.
This study evaluates the role of unmanned aerial vehicles (UAVs) in demining operations and environmental monitoring under wartime and post-conflict conditions. A structured literature review (2015–present) assessed UAV-enabled detection, mapping, and environmental sensing capabilities. The results indicate that UAVs significantly enhance reconnaissance efficiency, reduce suspected hazardous areas, and improve safety, yet cannot independently meet humanitarian clearance standards. While wartime use prioritises rapid risk mitigation, post-conflict deployment supports systematic clearance, environmental monitoring, and land restoration. The study highlights a gap in doctrinal integration and underscores the need for standardised UAV-based demining and environmental workflows.