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Methodology of ecodiagnostics on the example of rural areas

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The present state of the environment in the rural area has been analyzed. The main factors which led to the existing situation have been revealed. The structure of Ukraine’s crops area and the amount of accumulated waste in Ukraine influencing the agricultural landscapes of rural areas have been analyzed. The dependence between the amount of accumulated waste and the incidence within the time interval was revealed. As a result of calculations, we have received the social losses due to an increase in the morbidity of the population living in the area of the impact of landfills, the coefficient of ecological stability of the studied territories was calculated and it was found that the presence of landfills reduces the coefficient of ecological stability. It has been revealed that with the help of satellite data monitoring of agricultural landscapes is possible, which can be used in calculating the price of land considering the quality factor of this land.
Rocznik
Strony
139--144
Opis fizyczny
Bibliogr. 25 poz.
Twórcy
  • Assoc. Prof.; Odessa Institute of Trade and Economics of Kyiv National University of Trade and Economics, Inglezi 6, 65070 Odessa, Ukraine
  • Assoc. Prof.; Odessa National A. S. Popov Academy of Telecommunications, Kuznechna 1, 65000 Odessa, Ukraine
  • DSc; Institute for Economics and Forecasting of the National Academy of Sciences of Ukraine, Panasa Myrnoho 26, 01011 Kyiv, Ukraine
  • PhD; National University of Life and Environmental Sciences of Ukraine, Heroiv Oborony 15, 03041 Kyiv, Ukraine
  • DSc, PhD Eng.; Silesian University of Technology; Faculty of Energy and Environmental Engineering; Institute of Water and Wastewater Engineering, Konarskiego 18, 44-100 Gliwice, Poland
Bibliografia
  • [1] State Statistics Committee of Ukraine (2017). Demographic Yearbook “Population of Ukraine”. Retrieved from: http://www.ukrstat.gov.ua.
  • [2] Sozinov, O. (2001). Agrosphere of Ukraine in the XXI Century. Bulletin of the National Academy of Sciences of Ukraine, 10, 7-16.
  • [3] Gandy,M. (2014). Recycling and the politics of urban waste. Routledge, London: Routledge.
  • [4] García-Ayllón, S. (2017). Diagnosis of complex coastal ecological systems: Environmental GIS analysis of a highly stressedMediterranean lagoon through spatiotemporal indicators. Ecological Indicators, 83, 451-462.
  • [5] Czop,M., Kajda-Szcześniak,M. (2013). Evaluation of Basic Fuel Properties of Waste from Renovation and Construction Selected from Municipal Wastes. Rocznik Ochrona Środowiska, 15, 1426-1440.
  • [6] Kowalski, Z., Generowicz, A., Makara, A. (2012). Evaluation of municipal waste disposal technologies by BATNEEC. Przemysł Chemiczny, 91(5), 811-815.
  • [7] Palang, H., Printsmann, A., Konkoly Gyuró, E., Urbanc, M., Skowronek, E., Woloszyn, W. (2006). The Forgotten Rural Landscapes of Central and Eastern Europe. Landscape Ekology, 21(3), 347-357.
  • [8] Ministry of Agrarian Policy and Food of Ukraine. Retrieved from: http://minagro.gov.ua.
  • [9] Bublyk, M.I., Koval, V.V. (2018). Development of investigation and capitalization governing in the sphere of management and disposal of the household waste, Economic innovations, 66, 24-31.
  • [10] Balcerzak, W., Generowicz, A., Mucha, Z. (2014). Application of Multi-Criteria Analysis for Selection of a Reclamation Method for a Hazardous Waste Landfill. Polish Journal of Environmental Studies, 23(3), 983-987.
  • [11] Skrypnyk, A.V., Mikhno, I.S. (2014). Optimization of waste utilization in Ukraine. Bulletin of the East European University of Economics and Management, 2(17), 14-25.
  • [12] Dokuchaev, V.V. (1948). The study of nature zones. State Publishing House for Geographical Literature.
  • [13] Gaska, K., Generowicz, A., Zimoch, I., Ciula, J., Iwanicka, Z. (2017). A high-performance computing (HPC) based integrated multithreaded model predictive control (MPC) for water supply networks, Architecture Civil Engineering Environment, 10(4), 141-151.
  • [14] Gaska, K; Generowicz, A. (2017). Advanced computational methods in component-oriented modeling of municipal solid waste incineration processes, Architecture Civil Engineering Environment, 10(1), 117-130.
  • [15] Gaska, K., Generowicz A., Zimoch I., Ciuła J., Siedlarz D. (2018). A GIS based graph oriented algorithmic model for poly-optimization of waste management system. Architecture Civil Engineering Environment, 11(4), 151-159.
  • [16] State Statistics Committee of Ukraine (2017). Yearbook “Environment of Ukraine”. Retrieved from: http://www.ukrstat.gov.ua.
  • [17] Popova, O.L. (2012).Ecodiagnostics of the nature economic organization of the territory of Ukraine: the agro-landscape aspect. Economics and forecasting, 10(3), 92-102.
  • [18] Interactive map. (2018). Ministry of Ecology and Natural Resources of Ukraine. Retrieved from https://ecomapa.gov.ua.
  • [19] Garbage dump (2017). Retrieved from http://wikimapia.org.
  • [20] Koval, V., Prymush, Y., Popova, V. (2017). The Influence of The Enterprise Life Cycle On The Efficiency Of Investment. Baltic Journal of Economic Studies, 3(5), 183-187. doi:10.30525/2256-0742/2017- 3-5-183-187.
  • [21] Kalantaridis, Ch., Labrianidis, L. (2004). Rural Entrepreneurs in Russia and the Ukraine: Origins, Motivations, and Institutional Change. Journal of Economics Issues, XXXVIII, 3, 659-682.
  • [22] Generowicz, A., Kowalski, Z., Banach, M., Makara, A. (2012). A glance at the world. Waste Management, 32(2), 349-350.
  • [23] Żeliński, J., Mucha, W., Kliś, C. (2015). Application of spectral analysis to assess the impact of car traffic on nitrogen dioxide concentration. Architecture Civil Engineering Environment, 8(1), 91-96.
  • [24] Rogula-Kozłowska, W., Kozielska, B., Majewski, G., Rogula-Kopiec, P., Mucha, W., Kociszewska, K. (2017). Submicron particle-bound polycyclic aromatic hydrocarbons in the Polish teaching rooms: concentrations, origin and health hazard. Journal of Environmental Sciences, 64, 235-244.
  • [25] Majewski, G., Kociszewska, K., Rogula-Kozłowska, W., Pyta, H., Rogula-Kopiec, P., Mucha, W., Pastuszka, J. (2016). Submicron particle-bound mercury in university teaching rooms: a summer study from two Polish cities. Atmosphere, 7(9), 1-12.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-031c3acd-af9e-4a51-ab39-43a2e19c717d
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