Ozone risk assessment for an Alpine larch forest in two vegetative seasons with different approaches: comparison of POD1 and AOT40

Author:

Finco Angelo,Marzuoli Riccardo,Chiesa Maria,Gerosa Giacomo

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine

Reference56 articles.

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2. CLRTAP (2014) Mapping critical levels for vegetation, Chapter III of Manual on methodologies and criteria for modelling and mapping critical loads and levels and air pollution effects, risks and trends. UNECE Convention on Long-range Transboundary Air Pollution. http://www.icpmapping.org/

3. Darba JNT, Kubiske ME, Nelson N, Kets K, Riikonen J, Sober A, Rouse L, Karnosky DF (2010) Will photosynthetic capacity of aspen trees acclimate after long-term exposure to elevated CO2 and O3? Environ Pollut 158:983–991

4. Dizengremel P, Jolivet Y, Tuzet A, Ranieri A, Le Thiec D (2013) Chapter 13—integrative leaf-level phytotoxic ozone dose assessment for forest risk modelling. In: Matyssek R, Clarke N, Cudlin P, Mikkelsen TN, Tuovinen J-P, Wieser G, Paoletti E (eds) Developments in environmental science, vol 13. Elsevier, Amsterdam, pp 267–288 ISSN 1474–8177, ISBN 9780080983493

5. Ferretti M et al (2006) Measuring, modelling and testing ozone exposure, flux and effects on vegetation in southern European conditions—what does not work. Environ Pollut 146–3:648–658

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