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26 p, 3.9 MB DO₃SE modelling of soil moisture to determine ozone flux to forest trees / Büker, P. (University of York. Stockholm Environment Institute at York) ; Morrissey, T. (University of York. Stockholm Environment Institute at York) ; Briolat, A. (University of York. Stockholm Environment Institute at York) ; Falk, R. (University of York. Stockholm Environment Institute at York) ; Simpson, D. (Norwegian Meteorological Institute) ; Tuovinen, J.-P. (Finnish Meteorological Institute) ; Alonso, R. (Ecotoxicology of Air Pollution. CIEMAT) ; Barth, S. (University of Gothenburg. Department of Plant and Environmental Sciences) ; Baumgarten, M. (Technische Universität München. Life Science Center Weihenstephan) ; Grulke, N. (Western Wildlands Environmental Threats Assessment Center. Prineville, Oregon, USA) ; Karlsson, P. E. (Swedish Environmental Research Institute) ; King, J. (North Carolina State University. Department of Forestry and Environmental Resources) ; Lagergren, F. (Lund University. Department of Physical Geography) ; Matyssek, R. (Technische Universität München. Life Science Center Weihenstephan) ; Nunn, A. (Technische Universität München. Life Science Center Weihenstephan) ; Ogaya Inurrigarro, Romà (Centre de Recerca Ecològica i Aplicacions Forestals) ; Peñuelas, Josep (Centre de Recerca Ecològica i Aplicacions Forestals) ; Rhea, L. (North Carolina State University. Department of Forestry and Environmental Resources) ; Schaub, M. (Swiss Federal Research Institute WSL) ; Uddling, J. (University of Gothenburg. Department of Plant and Environmental Sciences) ; Werner, W. (University Trier. Department of Geobotany) ; Emberson, L. D. (University of York. Stockholm Environment Institute at York)
The DO₃SE (Deposition of O₃ for Stomatal Exchange) model is an established tool for estimating ozone(O₃) deposition, stomatal flux and impacts to a variety of vegetation types across Europe. It has been embedded within the EMEP (European Monitoring and Evaluation Programme) photochemical model to provide a policy tool capable of relating the flux-based risk of vegetation damage to O₃ precursor emission scenarios for use in policy formulation. [...]
2012 - 10.5194/acp-12-5537-2012
Atmospheric chemistry and physics, Vol. 12 Núm. 12 (june 2012) , p. 5537-5562  

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