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Development of Emission to Air in Central Europe

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Języki publikacji
EN
Abstrakty
EN
The present state of air quality is determined according to emission and imission situation of basic pollutants. According to the obtained information about the state of air quality, the development of imission and emission presently exhibits a decreasing tendency caused especially by industrial production innovations in European countries, with slight rises in renewable energy sources for electricity production, but especially the effort to improve the condition relates to the use of mandatory quotas and pollution charges in the European Union. The aim of the this article is to review the emission development in the year 1998 up to 2013 for Central European countries – Slovakia, Czech Republic and Poland and their comparison to the European average value of the released emission. The NOx and particulate matter PM10, PM2,5 were evaluated as pollutants, which over the last few years have contaminated the air and in particular the main environment.
Słowa kluczowe
Rocznik
Strony
51--57
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
  • Department of Landscape Engineering, Horticulture and Landscape Engineering Faculty, Slovak University of Agriculture in Nitra, Hospodárska 7, Nitra 949 76, Slovakia
  • Department of Landscape Engineering, Horticulture and Landscape Engineering Faculty, Slovak University of Agriculture in Nitra, Hospodárska 7, Nitra 949 76, Slovakia
Bibliografia
  • 1. Air quality in Europe – 2012 report, European Environment Agency, Luxembourg: Office for Official Publications of the European Union, (2012), 104 pp. ISBN 978–92–9213–328–3, ISSN 1725–9177 © EEA, Copenhagen, 2012
  • 2. Air quality in Europe – 2013 report, European Environment Agency, Luxembourg: Office for Official Publications of the European Union, (2013), 107 pp. ISBN 978–92–9213–328–3, ISSN 1725–9177 © EEA, Copenhagen, 2013
  • 3. Flash Eurobarometer 360, 2013. Attitudes Of Europeans Towards Air Quality, January 2013, http://ec.europa.eu/public_opinion/flash/fl_360_sum_en.pdf
  • 4. Gozzil F., Della Ventura G., Marcelli A., Lucci F. 2017. Current Status of Particulate Matter Pollution in Europe and Future Perspectives: a Review JMES, 2017 Volume 8, Issue 6, Page 1901–1909, ISSN : 2028–2508
  • 5. Hemerka J., 2010. Ochrana ovzduší, České vysoké učení technické v Praze. Strojní fakulta ISBN 800104646X, 9788001046463
  • 6. Holland, M., Watkiss, P., Pye, S., Oliveira, A., Van Regemorter, D. 2005. Cost-benefit Analysis of Policy Option Scenarios for the Clean Air for Europe Programme (CAFE), European Commission, DG Environment, AEAT/ED48763001/CBA-CAFE, ABC scenarios, Brussels, Belgium.
  • 7. Homer – Dixon, T. F.1999. On the Threshold: Environmental Changes as Causes of Acute Conflict. In: International Security. Vol. 16, No. 2. Trudeau Centre for Peace and Conflict Studies, University of Toronto. <http://www.library.utoronto.ca/pcs/thresh/thresh1.htm>, 1999.
  • 8. Leitmanová, M., Muchová, Z., Streďanská, A., 2013. Concept of information system for land consolidation projects. In: Acta horticulturae et regiotecturae. Vol. 16, no. 2 (2013), s. 40–43. ISSN 1335–2563.
  • 9. Lenárt, R. et al. 2012. The monitoring of SO2 immissions in power plant Nováky area. In: Krajinné inžinierstvo-trendy a perspektívy. 1 CD-ROM (220p.). 978–80–552–0961–6 Krajinné inžinierstvo – trendy a perspektívy. Nitra. Slovenská poľnohospodárska univerzita, 2012.
  • 10. Monteiroa.F, Sá M. at all 2017. How healthy will be the air quality in 2050? Air Quality Atmosphere & Health February2017, DOI: 10.1007/ s11869–017–0466-z
  • 11. Nowicki, M., 1993. Environment in Poland. Issues and Solutions. Kluwer Academic Publishers, Dordrecht/Boston/London, Dordrecht, The Netherlands
  • 12. Pokrývková J. Lackoová L. at all 2016. The Impact of Air Pollution on Rainwater Quality, Ochrona Srodowiska, January 2016, 18(1) p.303–321, ISSN 1506–218X
  • 13. Ramanathan, V. Feng, Y. 2009. Air pollution, greenhouse gases and climate change: Global and regional perspectives. In: Atmospheric Environment, Vol. 43, 2009, p.37–50.
  • 14. Werner M., Kryza M. Dore A.J. Wałaszek K., 2014. The Impact of Transboundary Transport of Air Pollutants on Air Quality in the United Kingdom and Poland, Air Pollution Modelling and its Application XXIII, DOI: 10.1007/978–3-319–04379–1_53
  • 15. Zellner, R. 1999. Global Aspects of Atmospheric Chemistry. Springer, Germany. 334 p. ISBN 3–7985–1127–6.
Uwagi
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-1d148a1b-acb7-4210-bdca-22c9f44c0094
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