Have a personal or library account? Click to login
Environmental Awareness of the Personnel of the Slovenian Armed Forces: Self-Identification as a Basis for Strengthening the Environmental Aspect of Civil-Military Relations
Arnejčič, B., in Vah, I., 2001. Civil-Military Relations in Slovenia: Aspects, Factors, Problems. V: Pantev, P. (ur.), Civil-Military Relations in South-East Europe (str. 175–204). Institut für Internationale Friedenssicherung in Institute for Security and International Studies v sodelovanju s PfP-Consortium.
Bebler, A., 2005. Civil-Military Relations and Democratic Control of the Armed Forces in Slovenia. V: Bebler, A. (ur.), Sodobno vojaštvo in družba, str. 87–100. Fakulteta za druž-bene vede.
Beck, J. A., Gledhill, M., Schlosser, C., Stamer, B., Böttcher, C., Sternheim, J., Greinert, J., in Achterberg, P. E., 2018. Spread, Behavior, and Ecosystem Consequences of Conventional Munitions Compounds in Coastal Marine Waters. Frontiers in Marine Sciences, 5(141), str. 1–26. DOI: 10.3389/fmars.2018.00141.
Berlak, A., 2016. Kritična diskurzivna analiza odnosa tiskanih medijev do Osrednjega vojaškega vadišča Poček v obdobju 2000–2015, diplomsko delo. Fakulteta za družbene vede.
Dandeker, C., 1990. Flexible Forces for the Twenty-First Century, Facing Uncertainty Report no. 1. Department of Leadership, Swedish National Defense College.
Direktiva Evropskega parlamenta in Sveta, 2004. Direktiva o okoljski odgovornosti v zvezi s preprečevanjem in sanacijo okoljske škode, (2004/35/ES, 21. 4. 2004).
Direktiva Evropskega parlamenta in Sveta, 2011. Direktiva o presoji vplivov nekaterih javnih in zasebnih projektov na okolje (2011/92/EU, 13. 12. 2011).
Druks Gajšek, P., in Mazej Grudnik, Z., 2021. Poročilo o izvedbi vzorčenja in analiz podzemne vode in sedimenta na območju vojaškega poligona Poček (3.–5. 11. 2021). Eurofins ERICo Slovenija d. o. o.
Fedran, J., 2024. Umetna inteligenca v vojaškem izobraževanju in usposabljanju. V: Vuk, P., in Fedran, J. (ur.), Inteligenca, inovacije in tehnologija v vojaškem delovanju, str. 81–117. Center vojaških šol.
Garb, M., 2019. Kdo je pravi vojak? Analiza sodobne vojaške identitete. Sodobni vojaški izzivi, 21-4, str. 15–25. DOI: 10.33179/BSV.99.SVI.11.CMC.21.4.1.
Government Accountability Office, 2006. Improvement Continues in DOD’s Reporting on Sustainable Ranges but Additional Time Is Needed to Fully Implement Key Initiatives. https://www.gao.gov/assets/gao-06-725r.pdf, 9. november 2024.
Harris, P., 2015. Militarism in Environmental Disguise: The Greenwashing of an Overseas Military Base. International Political Sociology, 9(1), str. 19–36. DOI: 10.1111/ips.12074.
Hewitt, A. D., Jenkins, T. F., Ramsey, C. A., Bjella, K. L., Ranney, T. A., in Perron, N. M., 2005. Estimating Energetic Residue Loading on Military Artillery Ranges. US Army Engineer Research and Development Center.
Joó, R., 1996. Who Guards the Guards? A Fundamental Question for Democratic Regimes. V: Joó, R. (ur.), The democratic control of armed forces, str. 6–12. Chaillot Papers.
Lee Jenni, G. D., Peterson, M. N., Katz Jameson, J., in Cubbage, F. W., 2015. Military Perspectives on Public Relations Related to Environmental Issues. International Journal of Comparative Sociology, 27(4), str. 353–369. DOI: 10.1080/1062726X.2015.1027770.
Kiss, Z. L., 1999. Changes of the Military Mind in Hungary: In the Miror of Empirical Data. V: Jelušič, L., in Selby, J. (ur.), Defence restructuring and conversion: Sociocultural aspects, str. 214–273. European Commission, COST Action A10, Directorate-General Research.
Kogovšek, J., Knez, M., Mihevc, A., Petrič, M., Slabe, T., in Šebela, S., 1999. Military training area in Kras (Slovenia). Environmental Geology, 38(1), str. 69–76. DOI: 10.1007/s002540050402.
Kogovšek, J., in Petrič, M., 2004. Advantages of longer-term tracing – three case studies from Slovenia. Environmental Geology, 47(1), str. 76–83. DOI: 10.1007/s00254-004-1135-8.
Kotnik-Dvojmoč, I., 2000. Preoblikovanje oboroženih sil sodobnih evropskih držav (študija primera Slovenije), doktorska disertacija. Fakulteta za družbene vede.
Kümmel, G., 2002. The Military and its Civilian Environment: Reflections on a Theory of Civil-Military Relations. Connections: The Quarterly Journal, 1(4), str. 63–82.
Magagula, H. B., 2016. Land cover change induced by military action: a case study of two South African military training areas. V: Donaldson, R., idr. (ur.), Proceedings of Centenary Conference of the Society of South African Geographers, str. 301–314. Society of South African Geographers.
Michaelowa, A., Koch, T., Charro, D., Gameros, C., Burton, D., in Lin, H. C., 2022. Military and Conflict Related Emissions: Kyoto to Glasgow and Beyond. Perspectives Climate Group.
Petkovšek, A. S., Kugonič Vrbič, N., Finžgar, L., Šešerko, M., Glinšek, A., Bole, M., Druks Gajšek, P., Petrič, M., Kogovšek, J., Jelenko, I., Košir, P., Čarni, A., Marinšek, A., Šilc, U., Zelenik, I., Tome, D., Božič, G., Levanič, T., Kraigher, H., in Pokorny, B., 2009. Pehotna strelišča kot dejavnik tveganja za okolje s poudarkom na ekološki sanaciji pehotnega strelišča na vojaškem poligonu Poček (M3-0213). ERICo Velenje, Inštitut za ekološke raziskave.
Rajaeifar, M. A., Belcher, O., Parkinson, S., Neimark, B., Weir, D., Ashworth, K., Larbi, R., in Heidrich, O., 2022. Decarbonize the military – mandate emissions reporting. Armed forces have a massive carbon footprint that is absent from global accounting. Nature, 611(7934), str. 29–32. DOI: 10.1038/d41586-022-03444-7.
Rodríguez-Artiles, J. F., Pérez-Zabaleta, A., in Labeaga-Azcona, J. M., 2019. Effects of noise emitted by military aircraft on housing close to an air base: the case of Gando air base (Spain). Revista Internacional de Contaminacion Ambiental, 35(1), str. 207–221. DOI: 10.20937/RICA.2019.35.01.15
Shields, P., 2015. Civil-military relations. V: Berman, E., Bearfield, D. A., in Dubnick, M. J. (ur.). Encyclopedia of Public Administration and Public Policy, 3rd Edition, str. 564–569. Routledge.
Skalny, A. V., Aschner, M., Bobrovnitsky, I. P., Chen, P., Tsatsakis, A., Paoliello, M. M. B., Djordević, A. B., in Tinkov, A. A., 2021. Environmental and health. Hazards of military metal pollution. Environmental Research, 201, str. 1–9. DOI: 10.1016/j.envres.2021.111568.
Sujetovienė, G., in Česynaitė, J., 2019. Assessment of Toxicity to Earthworm Eisenia fetida of Lead Contaminated Shooting Range Soils with Diferent Properties. Bulletin of Environmental Contamination and Toxicology, 103, str. 559–564. DOI: 10.1007/s00128-019-02695-x.
Šipec, R., Kravcar, S., Osterc, I., in Vasilevski, L., 2024. Dejavnosti Ministrstva za obrambo Republike Slovenije na področju zelenega prehoda: energetska učinkovitost in zeleni prehod v oboroženih silah. V Vuk, P., in Fedran, J. (ur.), Inteligenca, inovacije in tehnologija v vojaškem delovanju, str. 139–158. Center vojaških šol.
United Nations Framework Convention on Climate Change, 2014. Revision of the UNFCCC reporting guidelines on annual inventories for Parties included in Annex I to the Convention (FCCC/CP/2013/10/Add.3, 31. 1. 2014). https://unfccc.int/resource/docs/2013/cop19/eng/10a03.pdf, 3. september 2024.
Van Antwerp, R. L., 2001. Encroachment Impacts on Army Installations and How to Deal with Them. Federal Facilities Environmental Journal, 12(2), str. 19–32. DOI: 10.1002/ffej.1002.
Vuk, P., 2024. Vpliv digitalizacije na vojaško delovanje, poveljevanje in odločanje. V: Vuk, P., in Fedran, J. (ur.), Inteligenca, inovacije in tehnologija v vojaškem delovanju, str. 49–80. Center vojaških šol.