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Original Articles

An equilibrium model of the terrestrial carbon budget

Pages 310-319 | Received 16 Sep 1993, Accepted 05 Sep 1994, Published online: 18 Jan 2017

References

  • Amthor, J. S. 1986. Evolution and applicability of a whole plant respiration model. Journal of Theoretical Biology 122, 473–490.
  • Anderson, J. M. 1992. Responses of soils to climate change. Advances in Ecological Research 22, 163–210.
  • Atjay, G. L., Ketner, P. and Duvingneaud, P. 1979. Terrestrial primary production and phytomass. In: Bolin, B., Degens, E. T., Kempe, S. and Ketner, P. (eds.), The global carbon cycle, pp. 129–181. New York: Wiley.
  • Dyer, M. L., Meentemeyer, V. and Berg, B. 1990. Apparent controls of mass loss rate of leaf litter on a regional scale: litter quality versus climate. Scandinavian Journal of Forest Research 5,311–323.
  • Esser, G., Aselmann, I. and Lieth, H. 1982. Modelling the carbon reservoir in the system compartment “litter”. In: Mitteilungen aus dem Geologisch-Palantologischen Institut der Universitat Hamburg. Hamburg: Hamburg University.
  • Foley, J. A. 1994. Net primary productivity of the terrestrial biosphere: the application of a global model. Journal of Geophysical Research, in press.
  • Jenkinson, D. S. 1977. Studies on: the decomposition of plant material in soil. Journal of Soil Science 28, 424–434.
  • Jenkinson, D. S. 1990. The turnover of organic carbon and nitrogen in soil. Philosophical Transactions of the Royal Society of London 329, 361–368.
  • Kadeba, O. 1978. Organic soil matter status of some savanna soils of northern Nigeria. Soil Science 125, 122–127.
  • Leemans, R. and Cramer, W. P. 1990. The HASA database for mean monthly values of temperature, precipitation and cloudiness on a global terrestrial grid. (No. WP-90-41). IIASA Working Paper, Laxenburg, Austria.
  • Lieth, H. and Whittaker, R. H. (eds.). 1975. Primary productivity of the biosphere, New York: Springer-Verlag.
  • Linacre, E. T. 1986. Estimating the net radiation flux. Agricultural Meteorology 5,49–63.
  • Matthews, E. 1983. Global vegetation and land use: new high resolution data bases for climate studies. Journal of Climatology and Applied Meteorology 22,474–487.
  • McGuire, A. D., Melillo, J. M., Joyce, L. A., Kicklighter, D. W., Grace, A. L., III B. M. and Vörösmarty, C. J. 1992. Interactions between carbon and nitrogen dynamics in estimating net primary productivity for potential vegetation in North America. Global Biogeochemical Cycles 6, 101–124.
  • Meentemeyer, V. 1978. Macroclimate and lignin control of litter decomposition rates. Ecology 59, 465–472.
  • Meentemeyer, V. 1984. The geography of organic decom-position rates. Annals of the Association of American Geographers 74, 551–560.
  • Meentemeyer, V., Gardner, J. and Box, E. O. 1985. World patterns and amounts of detrital soil carbon. Earth Surface and Landforms 10, 557–567.
  • Meillo, J. M., McGuire, A. D., Kicklighter, D. W., Moore III, B., Vörösmarty, C. J. and Schloss, A. L. 1993. Global climate change and terrestrial net primary production. Nature 363, 234–240.
  • Olson, J. S., Watts, J. A. and Allison, L. J. 1983. Carbon in live vegetation of major world ecosystems. No. ORNL-5862. Oak Ridge National Laboratory.
  • Parton, W. J., Schimel, D. S., Cole, C. V. and Ojima, D. S. 1987. Analysis of factors controlling soil organic matter levels in Great Plains grasslands. Soil Science Society of America Journal 51, 1173–1179.
  • Parton, W. J., Running, S. and Walker, B. 1992. A toy terrestrial carbon flow model. In: Ojima, D. (ed.). Modeling the earth system boulder, OIES/UCAR.
  • Post, W. M., Emanuel, W. R., Zinke, P. J. and Stangen-berger, A. G. 1982. Soil carbon pools and world life zones. Nature 298, 156–159.
  • Potter, C. S., Randerson, J. T., Field, C. B., Matson, P. A., Vitousek, P. M., Mooney, H. A. and Klooster, S. A. 1993. Terrestrial ecosystem production: a process model based on global satellite and surface data. Global Biogeochemical Cycles 7, 811–841.
  • Prentice, I. C., Cramer, W., Harrison, S. P., Leemans, R., Monserud, R. A. and Solomon, A. M. 1992. A global biome model based on plant physiology and dominance, soil properties and climate. Journal of Biogeography 19, 117–134.
  • Raich, J. W. and Schlesinger, W. H. 1992. The global carbon dioxide flux in soil respiration and its rela-tionship to vegetation and climate. Tellus 44, 81–99.
  • Raich, J. M., Rastetter, E. B., Melillo, J. M., Kicklighter, D. W., Steudler, P. A., Peterson, B. J., Grace, A. L., HI, B. M. and Vörösmarty, C. J. 1991. Potential net primary productivity in South America: application of a global model. Ecological Applications 1, 399–429.
  • Ryan, M. G. 1991. Effects of climate on plant respiration. Ecological Applications 1, 157–167.
  • Sanchez, P. A., Girchuru, M. P. and Katz, L. B. 1982. Organic matter in major soils of the tropical and tem-perate regions. International Congress of Soil Science 12, 99–114.
  • Schlesinger, W. H. 1977. Carbon balance in terrestrial detritus. Annual Review of Ecology and Systematics 8, 51–81.
  • Sombroek, W. G., Nachtergaele, F. O. and Hebel, A. 1993. Amounts, Dynamics and Sequestering of Carbon in Tropical and Subtropical Soils. Ambio 22, 417–426.
  • Upadhyay, V. P., Singh, J. S. and Meentemeyer, V. 1989. Dynamics and weight loss of leaf litter in central Himalayan forests: abiotic versus litter quality influen-ces. Journal of Ecology 77, 147–161.
  • Vogt, K. A., Grier, C. C. and Vogt, D. J. 1986. Produc-tion, turnover, and nutrient dynamics of above- and belowground detritus in world forests. Advances in Ecological Research 15, 303–377.
  • Whittaker, R. H. and Likens, G. E. 1973. Carbon in the biota. In: Wordwell, G. M. and Pecan, E. V. (eds.). Carbon and the biosphere, pp. 281–302. Washington, DC: National Technical Service Information Service.
  • Zinke, P. J., Stangenberger, A. G., Post, W. M., Emanuel, W. R. and Olson, J. S. 1984. Worldwide organic soil carbon and nitrogen data, no. ORNL/TM-8857). Oak Ridge National Laboratory.