Kleidon, A.: A basic introduction to the thermodynamics of the Earth system far from equilibrium and maximum entropy production. Philosophical Transactions of the Royal Society of London, Series B: Biological Sciences 365 (1545), pp. 1303 - 1315 (2010)
Kleidon, A.: Life as the major driver of planetary geochemical disequilibrium: Reply to comments on "Life, hierarchy, and the thermodynamic machinery of planet Earth". Physics of Life Reviews 7 (4), pp. 473 - 476 (2010)
Kleidon, A.; Malhi, Y.; Cox, P. M.: Maximum entropy production in environmental and ecological systems Introduction. Philosophical Transactions of the Royal Society of London, Series B: Biological Sciences 365 (1545), pp. 1297 - 1302 (2010)
Schymanski, S. J.; Kleidon, A.; Stieglitz, M.; Narula, J.: Maximum entropy production allows a simple representation of heterogeneity in semiarid ecosystems. Philosophical Transactions of the Royal Society of London, Series B: Biological Sciences 365 (1545), pp. 1449 - 1455 (2010)
Simoncini, E.; Kleidon, A.; Gallori, E.: The emergence of life: Thermodynamics of chemical free energy generation in off-axis hydrothermal vent systems and its consequences for compartmentalization and life's origins. Journal of Cosmology 10, pp. 3325 - 3344 (2010)
Xu, X. K.; Kleidon, A.; Miller, L.; Wang, S. Q.; Wang, L. Q.; Dong, G. C.: Late Quaternary glaciation in the Tianshan and implications for palaeoclimatic change: a review. Boreas 39 (2), pp. 215 - 232 (2010)
Kleidon, A.: Climatic constraints on maximum levels of human metabolic activity and their relation to human evolution and global change. Climatic Change 95 (3-4), pp. 405 - 431 (2009)
Kleidon, A.; Adams, J.; Pavlick, R.; Reu, B.: Simulated geographic variations of plant species richness, evenness and abundance using climatic constraints on plant functional diversity. Environmental Research Letters 4 (1), p. 014007 (2009)
Arens, S.; Kleidon, A.: Global sensitivity of weathering rates to atmospheric CO2 under the assumption of saturated river discharge. Mineralogical Magazine 72 (1), pp. 301 - 304 (2008)
Kleidon, A.; Schymanski, S.: Thermodynamics and optimality of the water budget on land: A review. Geophysical Research Letters 35 (20), p. L20404 (2008)
Kleidon, A.: Thermodynamics and environmental constraints make the biosphere predictable - a response to Volk. Climatic Change 85 (3-4), pp. 259 - 266 (2007)
Kleidon, A.; Fraedrich, K.; Low, C.: Multiple steady-states in the terrestrial atmosphere-biosphere system: a result of a discrete vegetation classification? Biogeosciences 4 (5), pp. 707 - 714 (2007)
Kleidon, A.: Quantifying the biologically possible range of steady-state soil and surface climates with climate model simulations. Biologia (Bratislava) 61 (19), pp. S234 - S239 (2006)
Kleidon, A.: The climate sensitivity to human appropriation of vegetation productivity and its thermodynamic characterization. Global and Planetary Change 54 (1-2), pp. 109 - 127 (2006)
On June 24, Prof. Dr. Henrik Hartmann, head of the Julius Kühn Institute for Forest Protection and former group leader at the Max Planck Institute for Biogeochemistry, received an important award for his scientific achievements in the field of forestry. Our warmest congratulations!
We have gained a new external member: Prof. Dr. Christian Wirth has been appointed by the Senate of the Max Planck Society as External Scientific Member. As a former group leader and later fellow at the institute, Prof. Wirth initiated and supported the development of the TRY database, the world's largest collection on plant traits.
Information gaps in global maps of plant characteristics can be filled with data from nature identification apps. Users of the iNaturalist app are playing a key role in helping researchers create global maps of plant traits. Among other things, the new maps provide an improved basis for understanding plant-environment interactions and for Earth system modeling.
An international research team has succeeded in identifying globally acting factors that cause the diversity of forms and functions of plants. Researchers compiled plant data from around the world and were able to show for the first time how strongly these are determined by climate and soil properties for characteristics such as the size, structure and life span of plants.