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Zoning of Unused Land of Military Facilities in Krasnodar Krai

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The research paper covers the features of the socio-economic and environmental diagnostics of agricultural land use. Zoning is a kind of basis for the territorial record keeping of the natural conditions and resources, quantity, quality, as well as the production capacity of lands in the system of taxonomic units. It is a natural and historical basis for the placement of agricultural production, land valuation, the development of land use patterns, land management patterns and projects, farming and agriculture systems, etc. Natural zoning reflects the need for priority land use in the interests of the economy. It has an agrobioecological basis due to the peculiarities of agricultural production, the essence of which is the utilization of the solar energy by the plant organisms necessary to maintain the ecological stability of the territory. The authors used the methods of particle-size and chemical analysis, the methods of comparing indicators for zones with various types of agriculture and soils of the military sites under the influence of the man-made factors. The main socio-economic indicators characterizing the development of land use were analyzed. The concept of state policy forms in the valuation of unused lands of Krasnodar Krai was substantiated.
Rocznik
Strony
111--116
Opis fizyczny
Bibliogr. 14 poz., rys.
Twórcy
  • Department of Real Estate Economics, Faculty of Land Management, State University of Land Use Planning, 15, Kazakova str., Moscow, 105064, Russia
  • Department of Land Management, Faculty of Land Management, State University of Land Use Planning 15, Kazakova str., Moscow, 105064, Russia
  • Department of Land Management, Faculty of Land Management, State University of Land Use Planning 15, Kazakova str., Moscow, 105064, Russia
  • Pedology, Ecology and Environmental Management Department, State University of Land Use Planning, 15, Kazakova str., Moscow, 105064, Russia
  • Urban Cadastre Department, State University of Land Use Planning, 15, Kazakova str., Moscow, 105064, Russia
Bibliografia
  • 1. Avakyan, K.M., Achkanov, A.Ya., Podlesny, I.V. 2017. Soil Resources of the Kuban River Estuary and Their Agro-Industrial Grouping. Bulletin of the NTI All-Russian Research Institute of Rice, 24, 51-54.
  • 2. Bugaevsky, V.K. 1971. Movable Components in the Meadow Soils of the Forest-and-Steppe Areas. In: Brief Outline Reports “Moscow University of Agriculture”. Publishing House of the Moscow University, Moscow, pp. 195-197.
  • 3. Bugaevsky, V.K. 2017. Development of Saline Soil and Waterlogged Soil. In: Recommendations for Rice Cultivation in Krasnodar Krai. All-Russian Research Institute of Rice, Krasnodar, pp. 10-15.
  • 4. Cherednichenko, L.I. 1994. Patterns of Development of Landslides on the Black Sea Coast (AnapaTuapse). In: Geography of Krasnodar Krai Krasnodar, pp. 13-15.
  • 5. Chernov, A.V. 1983. Geomorphology of the HighWater Beds of Plain Rivers. MSU Publ., Moscow.
  • 6. Danilov-Danilyan, V.I. (Ed.). 1997. Ecology, Nature Conservation and Environmental Safety. MNEPU Publ., Moscow.
  • 7. Durach, C.F., Wiengarten, F. 2017. Environmental management: The impact of national and organisational long-term orientation on plants’ environmental practices and performance efficacy. Journal of Cleaner Production, 167, 749–758. https://doi.org/10.1016/j.jclepro.2017.08.183
  • 8. Gosselin, F., Cordonnier, T., Bilger, I., Jappiot, M., Chauvin, C., Gosselin, M. 2018. Ecological research and environmental management: We need different interfaces based on different knowledge types. Journal of Environmental Management, 218, 388–401. https://doi.org/10.1016/j.jenvman.2018.04.025
  • 9. Ladyman, M.K., Temple, T.J., Piperakis, M.M., Fawcett-Hirst, W. Gutierrez-Carazo, E., Coulon, F. 2019. Decision Framework for the environmental management of explosive contaminated land. Science of The Total Environment, 690, 730-738. https://doi.org/10.1016/j.scitotenv.2019.06.360
  • 10. Puppim de Oliveira, J.A. 2019. Intergovernmental relations for environmental governance: Cases of solid waste management and climate change in two Malaysian States. Journal of Environmental Management, 233, 481–488. https://doi.org/10.1016/j.jenvman.2018.11.097
  • 11. Ruseeva, Sh., Narodetskaya, Sh., Dunaevsky, B.V. (Eds.). 1976. Agroclimatic Resources of Krasnodar Krai. Gidromet-Izdat, Leningrad.
  • 12. Todaro, N.M., Testa, F., Daddi, T., Iraldo, F. 2019. Antecedents of environmental management system internalization: Assessing managerial interpretations and cognitive framings of sustainability issues. Journal of Environmental Management, 247, 804815. https://doi.org/10.1016/j.jenvman.2019.06.106
  • 13. Virapongse, A., Brooks, S., Covelli Metcalf, E., Zedalis, M., Gosz, J., Kliskey, A., Alessa, L. 2016. A social-ecological systems approach for environmental management. Journal of Environmental Management, 178, 83–91. https://doi.org/10.1016/j.jenvman.2016.02.028
  • 14. Wallace, K.J., Jago, M. 2018. Category mistakes: A barrier to effective environmental management. Journal of Environmental Management, 199, 13–20. https://doi.org/10.1016/j.jenvman.2017.05.029
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fc4cf219-29d6-4dd6-b8ea-d57d2ec2c0da
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