Testing the Feasibility of Using the ForSAFE-VEG Model to Map the Critical Load of Nitrogen to Protect Plant Biodiversity in the Rocky Mountains Region, USA

被引:0
|
作者
Harald Sverdrup
Todd C. McDonnell
Timothy J. Sullivan
Bengt Nihlgård
Salim Belyazid
Beat Rihm
Ellen Porter
William D. Bowman
Linda Geiser
机构
[1] Lund University,Biogeochemistry and Systems Analysis, Chemical Engineering
[2] E&S Environmental Chemistry,Department of Ecology and Evolutionary Biology
[3] Inc.,undefined
[4] Meteotest AG,undefined
[5] National Park Service,undefined
[6] Air Resources Division,undefined
[7] University of Colorado,undefined
[8] U.S. Forest Service,undefined
[9] Pacific Northwest Region Air Resources Management Program,undefined
来源
Water, Air, & Soil Pollution | 2012年 / 223卷
关键词
Nitrogen; Climate; Eutrophication; Alpine; Vegetation;
D O I
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中图分类号
学科分类号
摘要
The ForSAFE-VEG model was used to estimate atmospheric nitrogen deposition and climate effects on soil chemistry and ground vegetation in alpine and subalpine zones of the northern and central Rocky Mountains region in the USA from 1750 to 2500. Model simulations for a generalized site illustrated how the critical load of atmospheric nitrogen deposition could be estimated to protect plant biodiversity. The results appear reasonable compared with past model applications in northern Europe. Atmospheric N deposition critical loads estimated to protect plant biodiversity were 1 to 2 kg N/ha/year. This range could be greater, depending on the values selected for critical site-specific parameters (precipitation, temperature, soil chemistry, plant nutrient uptake, and any eventual harvest of biomass) and the amount of biodiversity change allowed.
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页码:371 / 387
页数:16
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    McDonnell, Todd C.
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