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Estimating pollutant emission from motor vehicles in the years 2000–2015

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
National annual emission from motor vehicles were estimated with the use, for the first time in Poland, of the COPERT software programme developed in support of official reporting under the EU cooperation framework. The quantification of vehicular emission covered the period 2000–2015. The results were analysed for the following cumulated vehicle categories: passenger cars, light commercial vehicles, heavy duty vehicles, urban buses, coaches, motorcycles and mopeds. The national annual emission from motor vehicles in Poland was found to be markedly declining. The relative national annual emission of individual pollutants was balanced against the situation in the year 2000. Starting from 2006, a distinct decreasing trend was observed for the relative national annual emission of pollutants from a representative motor vehicle; this was valid for all the substances except for nitrous oxide alone.
Czasopismo
Rocznik
Strony
62--67
Opis fizyczny
Bibliogr. 11 poz., wykr.
Twórcy
  • Institute of Environmental Protection – National Research Institute in Warsaw
autor
  • Institute of Environmental Protection – National Research Institute in Warsaw
  • Institute of Environmental Protection – National Research Institute in Warsaw
  • Institute of Environmental Protection – National Research Institute in Warsaw
Bibliografia
  • [1] BEBKIEWICZ, K., CHŁOPEK, Z., SZCZEPAŃSKI, K., ZIMAKOWSKA-LASKOWSKA, M. Results of air emission inventory from road transport in Poland in 2014. Proceedings of the Institute of Vehicles. 2017, 1(110), 77-88.
  • [2] BEBKIEWICZ, K., CHŁOPEK, Z., SZCZEPAŃSKI, K., ZIMAKOWSKA-LASKOWSKA, M. The influence of the properties of vehicles traffic on the total pollutant emission. Proceedings of the Institute of Vehicles. 2017, 1(110), 89-102.
  • [3] BEBKIEWICZ, K., CHŁOPEK, Z., SZCZEPAŃSKI, K., ZIMAKOWSKA-LASKOWSKA, M. Issues of modeling the total pollutant emission from vehicles. Proceedings of the Institute of Vehicles. 2017, 1(110), 103-118.
  • [4] BUWAL (Bundesamt für Umwelt, Wald und Landschaft), INFRAS AG (Infrastruktur-, Umwelt- und Wirtschaftsberatung). Luftschadstoffemissionen des Strassenverkehrs 1950–2010. BUWAL-Bericht Nr. 255, 1995.
  • [5] CHŁOPEK, Z., WAŚKIEWICZ, J. The forecast of the pollutant emission from automotive internal combustion engines in Poland by 2030. VI International Congress of Internal Engines. Combustion Engines 2015.
  • [6] CHŁOPEK, Z. Zasady modelowania zużycia paliwa i energii oraz emisji zanieczyszczeń związanych z użytkowaniem pojazdów drogowych. Technika Transportu Szynowego. 2015, 12, 262-267.
  • [7] COPERT Training 5. COPERT 5 vs COPERT 4. European Environment Agency. 2016. emisia.com/sites/default/files/COPERT_5_features.pdf (accessed 2016.12.06).
  • [8] EMEP/EEA air pollutant emission inventory guidebook – 2016. European Environment Agency. www.eea.europa.eu/publications/emep-eea-guidebook-2016 (accessed 2016. 12.06).
  • [9] GKATZOFLIAS, D., KOURIDIS, CH., NTZIACHRISTOS, L., SAMARAS, Z. COPERT 4 Computer programme to calculate emissons from road transport User manual (version 9.0). European Environment Agency. Emisia SA. 2012. (accessed 2016.12.06).
  • [10] INFRAS AG. Handbook emission factors for road transport 3.2. Quick reference. Version 3.2. Bern, 2014.
  • [11] 2006 IPCC Guidelines for National Greenhouse Gas Inventories. www.ipcc-nggip.iges.or.jp/public/2006gl /vol2.html. (accessed 2016.12.06).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1e6c2be3-cb56-41f5-a360-5c16487eb91a
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