Abstract
Abstract. Feedbacks between vegetation and other components of the climate system are discussed with respect to their influence on climate dynamics during the late Quaternary, i.e., the last glacial-interglacial cycles. When weighting current understanding based on interpretation of palaeobotanic and palaeoclimatic evidence by numerical climate system models, a number of arguments speak in favour of vegetation dynamics being an amplifier of orbital forcing. (a) The vegetation-snow albedo feedback in synergy with the sea-ice albedo feedback tends to amplify Northern Hemisphere and global mean temperature changes. (b) Variations in the extent of the largest desert on Earth, the Sahara, appear to be amplified by biogeophysical feedback. (c) Biogeochemical feedbacks in the climate system in relation to vegetation migration are supposed to be negative on time scales of glacial cycles. However, with respect to changes in global mean temperature, they are presumably weaker than the positive biogeophysical feedbacks.
Subject
Paleontology,Stratigraphy,Global and Planetary Change
Reference110 articles.
1. Anhuf, D., Frankenberg, P., and Lauer, W.: Die postglaziale Warmphase vor 8000 Jahren, Geol. Rundsch. 51, 454–461, 1999.
2. Archer, D., Winguth, A., Lea, D., and Mahowald, N.: What caused the glacial/interglacial atmospheric pCO2 cycles? Rev. Geophys., 38, 159–189, 2000.
3. Bala, G., Caldeira, K., Wickett, M., Phillips, T. J., Lobell, D. B., Delire, C., and Mirin, A.: Combined climate and carbon-cycle effects of large-scale deforestation, 17 April, PNAS, 104, 6550–6555, 2007.
4. Berger, A.: Long-term variations of daily insolation and quaternary climatic change, Journal of Atmospheric and Oceanic Science, 35, 2362–2367, 1978.
5. Berger, A.: The role of CO2, sea-level and vegetation during the Milankovitch-forced glacial-interglacial cycles, in: Geosphere-Biosphere Interactions and Climate, edited by: Bengtsson, L. O. and Hammer, C. U., Vatican City, Cambridge University Press, New York, 119–146, 2001.
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