PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2016 | 3(15) Review of Problems and Solutions | 135--143
Tytuł artykułu

Spatial Surrogate for Air Emissions from Small Residential Combustion - Analysis using Scarce Top-Down Estimates

Treść / Zawartość
Warianty tytułu
Surogat emisji do powietrza ze spalania paliw w gospodarstwach domowych - analiza z użyciem podejścia Top-Down
Języki publikacji
EN
Abstrakty
EN
This paper presents methodology for obtaining 'first step' spatial surrogate for disaggregation of air pollutants' emissions determined using top-down approach. Considered sector was small residential combustion due to its importance in emission budget, also potential health threatening. However our analysis is not flawless due to partial loss of information connected with locations, can be effectively used as specific method for determining of spatial outliers. Simplified approach shown in this paper uses values derived from gridded population density as downs calling factor for air pollutants' emissions. We determined three potential regions that should be treated separately to obtain independent - 'regional" emission surrogates. (original abstract)
Celem przedstawionej analizy było otrzymanie wstępnego surogatu emisji zanieczyszczeń do powietrza ze spalania paliw w źródłach komunalno-bytowych (gospodarstwa domowe). Opisana w artykule metoda, nie jest pozbawiona wad (częściowa utrata informacji nt. lokalizacji), ale może służyć do otrzymywania wstępnych informacji nt. zmienności przestrzennej gęstości zaludnienia, co pociąga za sobą również zmiany w rozkładzie przestrzennym emisji. Przedstawiona metoda może służyć również do pośredniej detekcji przestrzennych wartości odstających. (abstrakt oryginalny)
Rocznik
Strony
135--143
Opis fizyczny
Twórcy
  • IEP-NRI, KOBiZE
  • Warsaw University of Technology
Bibliografia
  • V. Aleksandropoulou, K. Torseth, M. Lazaridis. "Atmospheric Emission Inventory for Natural and Anthropogenic Sources and Spatial Emission Mapping for the Greater Athens Area." Water, Air, & Soil Pollution, Vol. 219, Issue 1, 2011, p. 507-526.
  • P. Boychuk, Kh. Boychuk, Z. Nahorski, J. Horabik. "Spatial inventory of greenhouse gas emissions from the road transport in Poland." Econtechmod an international quarterly journal, Vol. 1, No. 4, 2012, p. 9-15.
  • CEIP. "The new EMEP grid in geographic coordinate system", 2015. [Online]. Availa-ble: http://www. ceip.at/new_emep-grid [Accessed: Mar. 22, 2016].
  • O. Danylo, R. Bun, L. See, P. Topylko, X. Xianguang, N. Charkovska, P. Tymków. "Accounting uncertainty for spatial modeling of greenhouse gas emissions in the residential sector: fuel combustion and heat production." Proceedings of the 4th International Workshop on Uncertainty in Atmospheric Emissions, 7-9 October 2015, Krakow, Poland.
  • Data on the Polish district heating providers. [Online]. Available: http://www.cie-plosystemowe .pl/ [Accessed: Mar. 10, 2016].
  • B. Dębski. "Data for air emission disaggregations." Manuscript (unpublished). Warszawa: KOBiZE, IEP-NRI, 2016.
  • EEA. "EMEP/EEA air pollutant emission inventory guidebook - 2013". Copenhagen: European Environment Agency, 2013.
  • EEA. "European Union emission inventory report 1990-2013 under the UNECE Convention on Long-range Transboundary Air Pollution (LRTAP)". Copenhagen: European Environment Agency, 2015.
  • D. Fairley, M.L. Fischer. "Top-down methane emissions estimates for the San Fran-cisco Bay Area from 1990 to 2012." Atmospheric Environment, No 107, 2015, p. 9-15.
  • F.J. Gallego. "A population density grid of the European Union." Population and Environment, Vol. 31, No. 6, 2010, p. 460-473.
  • R.V. Hiller, D. Bretscher, T. DelSontro and another. "Anthropogenic and natural methane fluxes in Switzerland synthesized within a spatially explicit inventory." Biogeosciences, No 11, 2014, p. 1941-1960.
  • M. Hixson, A. Mahmud, J. Hu, M.J. Kleeman. "Resolving the interactions between population density and air pollution emissions controls in the San Joaquin Valley, USA". Journal Air Waste Managment Associated, No 5(62), 2012, p. 566-575.
  • G. Janssens-Maenhout, V. Pagliari, D. Guizzardi, M. Muntean. "Global emission inventories in the Emission Database for Global Atmospheric Research (EDGAR) - Manual (I)". Ispra (VA): European Commission, Joint Research Centre, Institute for Environment and Sustainability, 2013.
  • KOBiZE. "Poland's Informative Inventory Report 2016." National Centre for Emission Management (KOBiZE) at the Institute of Environmental Protection - National Research Institute, Warsaw, [Online]. Available: http://www.kobize.pl/uploads/materialy/materialy_do_pobrania/krajowa_inwentaryzacja_emisji/IIR_Poland_2016.pdf [Accessed 10.03.2016].
  • J. Lelieveld, J.S. Evans, M. Fnais, D. Giannadaki, A. Pozzer. "The contribution of outdoor air pollution sources to premature mortality on a global scale". Nature, Vol. 525, 2015, p. 367-371.
  • U. Leopold, G.B.M. Heuvelink, L. Drouet, D.S. Zachary. "Modelling Spatial Uncertainties associated with Emission Disaggregation in an integrated Energy Air Quality Assessment Model." R. Seppelt, A.A. Voinov, S. Lange, D. Bankamp (Eds.) International Environmental Modelling and Software Society (iEMSs), International Congress on Environmental Modelling and Software Managing Resources of a Limited Planet, Leipzig: Sixth Biennial Meeting, 2012.
  • Y. Makido, S. Dhakal, Y. Yamagata. "Relationship between urban form and CO2 emissions: Evidence from fifty Japanese cities". Urban Climate, No2, 2012, p. 55-67.
  • K. Markakis, A. Poupkou, D. Melas, Ch. Zerefos. "A GIS based anthropogenic PM10 emission inventory for Greece." Atmospheric Pollution Research, Vol. 1, Issue 2, 2010, p. 71-81.
  • A. Poupkou, P. Symeonidis, I. Ziomas, D. Melas, K. Markakis. "A Spatially and Tempo-rally Disaggregated Anthropogenic Emission Inventory in the Southern Balkan Region." Water, Air, and Soil Pollution, Vol. 185, Issue 1, 2007, p. 335-348.
  • Stack Exchange Inc, [Online]. Available: http://stackoverflow.com/questions/1313-3297/calculating-peaks-in-histograms-or-density-functions [Accessed 10.03.2016].
  • M. Trojanowska, T. Szul. "Determination of heat demand in rural communes." Teka Komisji Motoryzacji i Energetyki Rolnictwa, No 8a, O.L. PAN, 2008 p. 180-187.
  • D. Zasina, J. Zawadzki. "Disaggregation of SO2 and PM2.5 emissions from small domestic combustion sources located in southwestern Polish provinces - case study." Systems Supporting Production Engineering. Review of Problems and Solutions, No. 1(10), 2015, Chapt. 16, p. 160-168.
  • D. Zasina, J. Zawadzki. "Disaggregation problems using data derived from polish air pollutant emission management system." Systems Supporting Production Engineering. Review of Problems and Solutions, No 1(7), Chapt. 12, 2014, p. 128-137.
  • D. Zasina, J. Zawadzki. "Statistical Analysis of Data Set on National Reporting of Emission of air pollutants. Part I: Investigation of outliers." Environmental Protection and Natural Resources, 2013.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.ekon-element-000171444926

Zgłoszenie zostało wysłane

Zgłoszenie zostało wysłane

Musisz być zalogowany aby pisać komentarze.
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.