Use of an Integrated Soil-Vegetation Model to Assess Impacts of Atmospheric Deposition and Climate Change on Plant Species Diversity

Author:

Belyazid Salim,Sverdrup Harald U.,Kurz Daniel,Braun Sabine

Publisher

Springer Netherlands

Reference23 articles.

1. Belyazid, S. (2006). Dynamic modelling of biogeochemical processes in forest ecosystems. Doctoral Thesis. Reports in Ecology and Environmental Engineering 2006:1. Sweden: Department of chemical Engineering, Lund University.

2. Belyazid, S., & Braun, S. (2009). Estimating the effects of whole tree harvest and ash recycling at selected forest stands in Switzerland with the ForSAFE model. Report for the Swiss Institute for Applied Plant Physiology.

3. Belyazid, S., & Moldan, F. (2009). Use of integrated dynamic modelling to set critical loads for nitrogen deposition based on vegetation change—Pilot study at Gårdsjön. Report B1875. Swedish Environmental Research Institute IVL.

4. Belyazid, S., Westling, O., & Sverdrup, H. (2006). Modelling changes in forest soil chemistry at 16 Swedish coniferous forest sites following deposition reduction. Environmental Pollution, 144, 596–609.

5. Belyazid, S., Bailey, S., & Sverdrup, H. (2010). Past and future effects of atmospheric deposition on the forest ecosystem at the Hubbard Brook Experimental Forest: Simulations with the dynamic model ForSAFE. In G. Hanrahan (Ed.), Modelling of pollutants in complex environmental systems (pp. 357–377). Chicago: ILM Publications.

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