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Air Quality Planning and the Minimization of Negative Externalities

Author

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  • Marco Ravina

    (DIATI (Department of Engineering for Environment, Land and Infrastructures), Politecnico di Torino, 10129 Torino, Italy)

  • Deborah Panepinto

    (DIATI (Department of Engineering for Environment, Land and Infrastructures), Politecnico di Torino, 10129 Torino, Italy)

  • Mariachiara Zanetti

    (DIATI (Department of Engineering for Environment, Land and Infrastructures), Politecnico di Torino, 10129 Torino, Italy)

Abstract

The minimization of negative externalities is a key aspect in the development of a circular and sustainable economic model. At the local scale, especially in urban areas, externalities are generated by the adverse impacts of air pollution on human health. Local air quality policies and plans often lack of considerations and instruments for the quantification and evaluation of external health costs. Support for decision-makers is needed, in particular during the implementation stage of air quality plans. Modelling tools based on the impact pathway approach can provide such support. In this paper, the implementation of health impacts and externalities analysis in air quality planning is evaluated. The state of the art in European member states is reported, considering whether and how health effects have been included in the planning schemes. The air quality plan of the Piemonte region in Italy is then considered. A case study is analyzed to evaluate a plan action, i.e., the development of the district heating system in the city of Turin. The DIATI (Dipartimento di Ingegneria dell’Ambiente, del Territorio e delle Infrastrutture) Dispersion and Externalities Model (DIDEM model) is applied to detect the scenario with the highest external cost reduction. This methodology results are extensible and adaptable to other actions and measures, as well as other local policies in Europe. The use of health externalities should be encouraged and integrated into the present methodology supporting air quality planning. Efforts should be addressed to quantify and minimize the overall uncertainty of the process.

Suggested Citation

  • Marco Ravina & Deborah Panepinto & Mariachiara Zanetti, 2019. "Air Quality Planning and the Minimization of Negative Externalities," Resources, MDPI, vol. 8(1), pages 1-18, January.
  • Handle: RePEc:gam:jresou:v:8:y:2019:i:1:p:15-:d:196531
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    References listed on IDEAS

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    1. Cropper, Maureen & Khanna, Shefali, 2014. "How Should the World Bank Estimate Air Pollution Damages?," RFF Working Paper Series dp-14-30, Resources for the Future.
    2. Susan C. Anenberg & Anna Belova & Jørgen Brandt & Neal Fann & Sue Greco & Sarath Guttikunda & Marie‐Eve Heroux & Fintan Hurley & Michal Krzyzanowski & Sylvia Medina & Brian Miller & Kiran Pandey & Joa, 2016. "Survey of Ambient Air Pollution Health Risk Assessment Tools," Risk Analysis, John Wiley & Sons, vol. 36(9), pages 1718-1736, September.
    3. Bachmann, Till M. & van der Kamp, Jonathan, 2014. "Environmental cost-benefit analysis and the EU (European Union) Industrial Emissions Directive: Exploring the societal efficiency of a DeNOx retrofit at a coal-fired power plant," Energy, Elsevier, vol. 68(C), pages 125-139.
    4. Lund, Rasmus & Mathiesen, Brian Vad, 2015. "Large combined heat and power plants in sustainable energy systems," Applied Energy, Elsevier, vol. 142(C), pages 389-395.
    5. P. Thunis & Ana Isabel A A. Miranda & Jose J.M. Baldasano & Nadège N.M. Blond & John Douros & Arno Graff & Stijn Janssen & Katarzyna Juda-Rezler & Niko Karvosenoja & Giuseppe Maffeis & Alberto Martill, 2016. "Overview of current regional and local scale air quality modelling practices: Assessment and planning tools in the EU," ULB Institutional Repository 2013/284485, ULB -- Universite Libre de Bruxelles.
    6. Hammitt, James K. & Haninger, Kevin, 2017. "Valuing nonfatal health risk as a function of illness severity and duration: Benefit transfer using QALYs," Journal of Environmental Economics and Management, Elsevier, vol. 82(C), pages 17-38.
    7. Thunis, P. & Miranda, A. & Baldasano, J.M. & Blond, N. & Douros, J. & Graff, A. & Janssen, S. & Juda-Rezler, K. & Karvosenoja, N. & Maffeis, G. & Martilli, A. & Rasoloharimahefa, M. & Real, E. & Viaen, 2016. "Overview of current regional and local scale air quality modelling practices: Assessment and planning tools in the EU," Environmental Science & Policy, Elsevier, vol. 65(C), pages 13-21.
    8. Werner, Sven, 2017. "International review of district heating and cooling," Energy, Elsevier, vol. 137(C), pages 617-631.
    9. James Hammitt, 2013. "Admissible utility functions for health, longevity, and wealth: integrating monetary and life-year measures," Journal of Risk and Uncertainty, Springer, vol. 47(3), pages 311-325, December.
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    Cited by:

    1. Marco Ravina & Costanza Gamberini & Alessandro Casasso & Deborah Panepinto, 2020. "Environmental and Health Impacts of Domestic Hot Water (DHW) Boilers in Urban Areas: A Case Study from Turin, NW Italy," IJERPH, MDPI, vol. 17(2), pages 1-18, January.

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