Minz, J.; Kleidon, A.; Mbungu, N. T.: Estimating the technical wind energy potential of Kansas that incorporates the effect of regional wind resource depletion by wind turbines. Wind Energy Science 9 (11), pp. 2147 - 2169 (2024)
Kleidon, A.; Lesch, H.: Zukünftige Energieversorgung in Deutschland: Kann Kernenergie zur Energiewende beitragen? Physik in unserer Zeit 55 (6), pp. 286 - 293 (2024)
Kleidon, A.; Gozzi, C.; Buccianti, A.; Sauro Graziano, R.: Type of probability distribution reflects how close mixing dynamics in river chemistry are to thermodynamic equilibrium. Science of the Total Environment 941, 173409 (2024)
Notholt, J.; Schmithüsen, H.; Buschmann, M.; Kleidon, A.: Infrared radiative effects of increasing CO2 and CH4 on the atmosphere in Antarctica compared to the Arctic. Geophysical Research Letters 51 (2), e2023GL105600 (2024)
Ghausi, S. A.; Tian , Y.; Zehe, E.; Kleidon, A.: Radiative controls by clouds and thermodynamics shape surface temperatures and turbulent fluxes over land. Proceedings of the National Academy of Sciences of the United States of America 120 (29), e2220400120 (2023)
Tian, Y.; Ghausi, S. A.; Zhang, Y.; Zhang, M.; Xie, D.; Cao, Y.; Mei, Y.; Wang, G.; Zhong, D.; Kleidon, A.: Radiation as the dominant cause of high-temperature extremes on the eastern Tibetan Plateau. Environmental Research Letters 18 (7), 074007 (2023)
Kleidon, A.: Windenergiepotenzial von Deutschland: Grenzen und Konsequenzen großräumiger Onshore-Windenergienutzung. Physik in unserer Zeit 54 (3), pp. 142 - 148 (2023)
Kleidon, A.; Messori, G.; Roy, S. B.; Didenkulova, I.; Zeng, N.: Editorial: Global warming is due to an enhanced greenhouse effect, and anthropogenic heat emissions currently play a negligible role at the global scale. Earth System Dynamics 14 (1), pp. 241 - 242 (2023)
Kleidon, A.: Sustaining the terrestrial biosphere in the Anthropocene: A thermodynamic earth system perspective. Ecology, Economy and Society – the INSEE Journal 6 (1), pp. 53 - 80 (2023)
Panwar, A.; Kleidon, A.: Evaluating the response of diurnal variations in surface and air temperature to evaporative conditions across vegetation types in FLUXNET and ERA5. Journal of Climate 35 (19), pp. 2701 - 2728 (2022)
Ghausi, S. A.; Ghosh, S.; Kleidon, A.: Breakdown in precipitation–temperature scaling over India predominantly explained by cloud-driven cooling. Hydrology and Earth System Sciences 26 (16), pp. 4431 - 4446 (2022)
Thanks to FLUXCOM-X, the next generation of data driven, AI-based earth system models, scientists can now see the Earth’s metabolism at unprecedented detail – assessed everywhere on land and every hour of the day.
In the annual ranking of the world's most cited and thus most influential scientists, five authors from our institute are once again represented in 2024.
David Hafezi Rachti was awarded twice: for his EGU poster with this year’s “Outstanding Student and PhD candidate Presentation” (OSPP) and for his Bachelor thesis, he received the 1st prize of the “Young Climate Scientist Award 2024”.
A recent study by scientists from the Max Planck Institute for Biogeochemistry and the University of Leipzig suggests that increasing droughts in the tropics and changing carbon cycle responses due to climate change are not primarily responsible for the strong tropical response to rising temperatures. Instead, a few particularly strong El Niño events could be the cause.
EU funds the international research project AI4PEX to further improve Earth system models and thus scientific predictions of climate change. Participating scientists from 9 countries met at the end of May 2024 to launch the project at the MPI for Biogeochemistry in Jena, which is leading the project.
From the Greek philosopher Aristotle to Charles Darwin to the present day, scientists have dealt with this fundamental question of biology. Contrary to public perception, however, it is still largely unresolved. Scientists have now presented a new approach for the identification and delimitation of species using artificial intelligence (AI).
The 73rd Lindau Nobel Laureate Meeting was dedicated to physics and was held from June 30 to July 5, 2024. It brought together around 40 Nobel Laureates and 635 young scientists from more than 90 nations.
A research team led by the German Centre for Integrative Biodiversity Research (iDiv) and Leipzig University has developed an algorithm that analyses observational data from the Flora Incognita app. The novel can be used to derive ecological patterns that could provide valuable information about the effects of climate change on plants.
Tropical forests are continuously being fragmented and damaged by human influences. Using remote sensing data and cutting-edge data analysis methods, researchers can now show for the first time that the impact of this damage is greater than previously estimated.
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!