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An evaluation of the ecosystem services provided by urban trees: The role of Krasiński Gardens in air quality and human health in Warsaw (Poland)

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  • Szkop Zbigniew

    (Department of Economic Sciences, University of Warsaw, Długa Str. 44/50, 00-241 Warsaw, Poland)

Abstract

Trees remove air pollution by the interception of particulate matter on plant surfaces and the absorption of gaseous pollutants through leaf stomata. However, to date, we have rather few empirical studies on the magnitude and value of the effects of trees on air quality and human health, especially especially within the climatic conditions of Central Europe. To investigate the significance of urban trees from the point of view of air pollution removal, an i-Tree Eco model was implemented. The results indicate that the 932 trees in Krasiński Gardens (Warsaw, Poland) absorb 267.12 kg of pollutants per year: 149.9 kg of O3, 94.4 kg of NO2, 11.8 kg of SO2 and 10.9 kg of PM2.5. That makes an average removal per tree (calculated by summarizing the values of all of the pollutants) of 0.287 kg/year. Furthermore, health values were used to estimate their pollution removal services in monetary terms. The total benefit of air purification by trees in Krasiński Gardens is estimated at 26250 PLN/year with an average value per tree of: 28 PLN. Although PM2.5 removal is the lowest among the four air pollutants analysed, accounting for only 4% of the total mass reduction, it provides 69% of the total economic value. The benefit associated with absorption of O3 provided 28% of the value, with the absorption of NO2 and SO2 at just 3%. The results also show that large tree species (with a crown diameter of 14-15m) can provide around 10 times higher benefits, than small ones (5-6m).

Suggested Citation

  • Szkop Zbigniew, 2016. "An evaluation of the ecosystem services provided by urban trees: The role of Krasiński Gardens in air quality and human health in Warsaw (Poland)," Environmental & Socio-economic Studies, Sciendo, vol. 4(4), pages 41-50, December.
  • Handle: RePEc:vrs:enviro:v:4:y:2016:i:4:p:41-50:n:5
    DOI: 10.1515/environ-2016-0023
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    References listed on IDEAS

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    1. Neal Fann & Amy D. Lamson & Susan C. Anenberg & Karen Wesson & David Risley & Bryan J. Hubbell, 2012. "Estimating the National Public Health Burden Associated with Exposure to Ambient PM2.5 and Ozone," Risk Analysis, John Wiley & Sons, vol. 32(1), pages 81-95, January.
    2. Luis Bettencourt & Geoffrey West, 2010. "A unified theory of urban living," Nature, Nature, vol. 467(7318), pages 912-913, October.
    3. Gómez-Baggethun, Erik & Barton, David N., 2013. "Classifying and valuing ecosystem services for urban planning," Ecological Economics, Elsevier, vol. 86(C), pages 235-245.
    4. Bolund, Per & Hunhammar, Sven, 1999. "Ecosystem services in urban areas," Ecological Economics, Elsevier, vol. 29(2), pages 293-301, May.
    5. Marek Giergiczny, 2008. "Value of a Statistical Life—the Case of Poland," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 41(2), pages 209-221, October.
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    Cited by:

    1. Szkop Zbigniew, 2022. "The value of air purification and carbon storage ecosystem services of park trees in Warsaw, Poland," Environmental & Socio-economic Studies, Sciendo, vol. 10(3), pages 1-11, September.

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