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Sustainability indicators and environmental safety management as illustrated with an example of the Polish Energy Sector

Treść / Zawartość
Identyfikatory
Warianty tytułu
Konferencja
7th International Conference System Safety: Human - Technical Facility - Environment, CzOTO 2018 (7 ; 12-14.12.2018 ; Zakopane, Poland)
Języki publikacji
EN
Abstrakty
EN
Power engineering is one of the key areas of sustainable development. Many countries create new concepts of environmental safety management and modify their energy systems to be in line with the goals of sustainable development in the EU. Sustainable development indicators can be a tool for monitoring the set goals of environmental safety management. The aim of the article is to assess the environmental safety management of the energy sector in Poland in relation to EU as well as presenting the concept of sustainable energy development and indicators used to assess the development of energy in the following dimensions: social, economic and ecological. The indicators used to assess the sustainable development of energy in the following dimensions were compared: sustainable consumption and production, marking the production and consumption of energy; organizations and sites with eco-management and audit scheme (EMAS); registration climate change, marking GHG emissions and the share of renewable energy in gross final energy consumption; sustainable transport, marking the energy consumption of transport relative to GDP. The article will test the hypothesis that the structure of obtaining energy in Poland and the tempo of change in this respect differ from the EU average.
Wydawca
Rocznik
Strony
398--405
Opis fizyczny
Bibliogr. 15 poz., tab.
Twórcy
  • Czestochowa University of Technology, Poland
  • Omsk State Transport University
Bibliografia
  • [1] Garces-Averbe, C., Canon-de-Francia, J., 2017, The relevance of complementarities in the study of the economic consequences of environmental proactivity: analysis of the moderating effect of innovation efforts. Ecol. Econ. 142, 21–30.
  • [2] Hammond G.P., Jones C. I., 2011, Sustainability criteria for energy resources and technologies, In Handbook of Sustainable Energy, I. Galarraga, M. Gonzales-Eguino, and A. Marakandya, Eds. Cheltenham: Edward Elgar.
  • [3] Iddrisu I., Bhattacharyya S., 2015, Sustainable Energy Development Index: A multidimensional indicator for measuring sustainable energy development, Renewable and Sustainable Energy Reviews, Vol. 50, 513-530.
  • [4] Kajikawa, Y., Tacoa, F., Yamaguchi, K., 2014. Sustainability science: the changing landscape of sustainability research. Sustain. Sci. 9 (4), 431–438.
  • [5] Kapustka, K., Ziegmann G. and Dorota Klimecka-Tatar, D., 2018, Problems in waste management in the aspect of the secondary use of plastics from WEEE. MATEC Web of Conferences 183, 01011, DOI: https://doi.org/10.1051/matecconf/201818301011
  • [6] Lemaire X., 2004,Glossary of Terms in Sustainable Energy Regulation, Renewable Energy and Efficiency Partnership, Centre for Management under Regulation, Warwick Business School, University of Warwick.,
  • [7] Malina A., 2004, Multidimensional analysis of the spatial diversification of the Polish structure of the economy by voivodeships. Wydawnictwo Akademii Ekonomicznej w Krakowie, Kraków.
  • [8] Mitchel C., 2010,The Political Economy of Sustainable Energy, Palgrave Macmillan UK, Basingstoke, p. 9.
  • [9] Patterson W., 2009, Keeping the Lights On. Towards Sustainable Electricity, Earthscan, London, p. 14.
  • [10] Rogall H., 2009, Nachhaltige Ökonomie. Ökonomische Theorie und Praxis einer Nachhaltigen Entwicklung. Metropolis Verlag.
  • [11] Rutkowski J., 1981 Similarity of structures and structural changes - questions of quantification. Wiadomości Statystyczne, vol. 8.
  • [12] Sauve, S., Bernard, S., Sloan, P., 2016. Environmental sciences, sustainable development and circular economy: Alternative concepts for trans-disciplinary research. Environ. Dev. 17, 48–56.
  • [13] Singh R. K.,Murty H. R.,Gupta S. K., Dikshit A. K., 2012, An overview of sustainability assessment methodologies. Ecol Indic;15; 281–99.
  • [14] Skrodzka W., 2016, Analysis of the Structure of Primary Energy Production in Poland against the European Union In3rd International Conference on European Integration, Ostrava: VŠB-TU Ostrava, Faculty of Economics, 867-874.
  • [15] Tester J.W., Drake E.M., Golay M.W., Discoll M.J., Peters W.A., 2005, Sustainable Energy, Choosing Among Options, The MIT Press, London.
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-86b1d59f-0f9d-4526-8bb7-1c8e8c38b38d
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