Kramer K, Mohren G M J. Sensitivity of FORGRO to climatic change scenarios: A case study on Betula pubescens, Fagus sylvatica and Quercus robur in The Netherlands. Climatic-Change,1996,34(2):231~237.
[4]
Arp P A, Oja T.Sulphate/nitrate loadings on forest soils: forest biomass and nutrient cycling modelling. Critical Loads for Nitrogen - A Workshop Report,1992,41:307~358.
Arp P A, Oja T. A forest soil vegetation atmosphere model (ForSVA). I. Concepts. Ecological Modelling, 1997, 95: 211~224.
[10]
Arp P A, Oja T. A forest soil vegetation atmosphere model (ForSVA). II: Application to northern tolerant hardwoods.1997, 95: 245~247.
[11]
Zhua Z X, Arp P A, Meng F R, et al. A forest nutrient cycling and biomass model (ForNBM) based onyear-round, monthly weather conditions, part II: assumption, structure and processing. Ecological Modelling, 2003, 170: 13~27.
[12]
Valentina Krysanova, et al. SWIM user manual,2000.
Bemier B, Brazeau M.Nutrient deficiency symptoms associated with sugar maple dieback and decline in the Quebec Appalachians. Can. J. For. Res. , 1988, 18: 762~767.
[21]
Mader D L, Thompson B W. Foliar and soil nutrients in relation to sugar maple decline. Soil Sci. Soc. Am. Proc. , 1969, 33: 794~800.
[22]
Driessche R V D. Prediction of mineral nutrient status of trees by foliar analysis. Bot. Rev. , 1974, 40: 347~394.
Onyekwelu J C, Mosandl R, Stimm B. Productivity, site evaluation and state of nutrition of Gmelina arborea plantations in Oluwa and Omo forest reserves, Nigeria. Forest Ecology and Management,2006,229: 214~227.
Zhua Z X, Arp P A, Meng F R, et al. A forest nutrient cycling and biomass model (ForNBM) based onyear-round, monthly weather conditions, part I: assumption, structure and processing. Ecological Modelling, 2003, 169: 347~360.