Forkel, M.; Drüke, M.; Thurner, M.; Dorigo, W.; Schaphoff, S.; Thonicke, K.; von Bloh, W.; Carvalhais, N.: Constraining modelled global vegetation dynamics and carbon turnover using multiple satellite observations. Scientific Reports 9, 18757 (2019)
Jenny, J.-P.; Koirala, S.; Gregory-Eaves, I.; Francus, P.; Niemann, C.; Ahrens, B.; Brovkin, V.; Baud, A.; Ojala, A. E. K.; Normandeau, A.et al.; Zolitschka, B.; Carvalhais, N.: Human and climate global-scale imprint on sediment transfer during the Holocene. Proceedings of the National Academy of Sciences of the United States of America 116 (46), pp. 22972 - 22976 (2019)
Exbrayat, J.-F.; Bloom, A. A.; Carvalhais, N.; Fischer, R.; Huth, A.; MacBean, N.; Williams, M.: Understanding the land carbon cycle with space data: Current status and prospects. Surveys in Geophysics 40 (4), pp. 735 - 755 (2019)
Reichstein, M.; Carvalhais, N.: Aspects of forest biomass in the earth system: Its role and major unknowns. Surveys in Geophysics 40 (4), pp. 693 - 707 (2019)
Reichstein, M.; Camps-Valls, G.; Stevens, B.; Jung, M.; Denzler, J.; Carvalhais, N.; Prabhat: Deep learning and process understanding for data-driven Earth system science. Nature 566 (7743), pp. 195 - 204 (2019)
Besnard, S.; Carvalhais, N.; Arain, M. A.; Black, A.; Brede, B.; Buchmann, N.; Chen, J.; Clevers, J. G. P. W.; Dutrieux, L. P.; Gans, F.et al.; Herold, M.; Jung, M.; Kosugi, Y.; Knohl, A.; Law, B. E.; Paul-Limoges, E.; Lohila, A.; Merbold, L.; Roupsard, O.; Valentini, R.; Wolf, S.; Zhang, X.; Reichstein, M.: Memory effects of climate and vegetation affecting net ecosystem CO2 fluxes in global forests. PLoS One 14 (2), e0211510 (2019)
Besnard, S.; Carvalhais, N.; Arain, A.; Black, A.; de Bruin, S.; Buchmann, N.; Cescatti, A.; Chen, J.; Clevers, J. G. P. W.; Desai, A. R.et al.; Gough, C. M.; Havrankova, K.; Herold, M.; Hörtnagl, L.; Jung, M.; Knohl, A.; Kruijt, B.; Krupkova, L.; Law, B. E.; Lindroth, A.; Noormets, A.; Roupsard, O.; Steinbrecher, R.; Varlagin, A.; Vincke, C.; Reichstein, M.: Quantifying the effect of forest age in annual net forest carbon balance. Environmental Research Letters 13 (12), 124018 (2018)
Thurner, M.; Beer, C.; Ciais, P.; Friend, A. D.; Ito, A.; Kleidon, A.; Lomas, M. R.; Quegan, S.; Rademacher, T. T.; Schaphoff, S.et al.; Tum, M.; Wiltshire, A.; Carvalhais, N.: Evaluation of climate-related carbon turnover processes in global vegetation models for boreal and temperate forests. Global Change Biology 23 (8), pp. 3076 - 3091 (2017)
Koirala, S.; Jung, M.; Reichstein, M.; de Graaf, I. E. M.; Camps-Valls, G.; Ichii, K.; Papale, D.; Raduly, B.; Schwalm, C. R.; Tramontana, G.et al.; Carvalhais, N.: Global distribution of groundwater-vegetation spatial covariation. Geophysical Research Letters 44 (9), pp. 4134 - 4142 (2017)
Carreiras, J. M.B.; Quegan, S.; Le Toan, T.; Minh, D. H. T.; Saatchi, S. S.; Carvalhais, N.; Reichstein, M.; Scipal, K.: Coverage of high biomass forests by the ESA BIOMASS mission under defense restrictions. Remote Sensing of Environment 196, pp. 154 - 162 (2017)
Extreme precipitation should increase with warmer temperatures. Data from tropical regions show that this correlation is obscured by the cooling effect of clouds. When cloud effects are corrected, the increase in extreme precipitation with rising temperatures becomes apparent.
More frequent strong storms are destroying ever larger areas of the Amazon rainforest. Storm damage was mapped between 1985 and 2020. The total area of affected forests roughly quadrupled in the period studied.
The Global Carbon Project shows that fossil CO2 emissions will continue to rise in 2024. There is no sign of the rapid and substantial decline in emissions that would be needed to limit the impact of climate change
The Chinese Academy of Sciences (CAS) and the German National Academy of Sciences Leopoldina will hold a joint conference on the challenges of achieving carbon neutrality in Berlin on October 29-30, 2024.
Experts from science, journalism, local authorities and non-governmental organizations consider a change of course in communication on climate issues to be urgently needed. The appeal was published on the occasion of the K3 Congress on Climate Communication with around 400 participants in Graz.
Since the first measurement flight in 1994, the European research infrastructure IAGOS has developed a measurement technique that is used in commercial airplanes and regularly provide extensive climate data from the atmosphere.
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.
Thuringia is severely affected by climate change, which is already reflected in extreme weather events and rising temperatures. The Climate Council is calling for the consistent implementation and tightening of climate policy targets in order to achieve climate neutrality by 2045. The coming legislative period is crucial for the future of Thuringia.
When it comes to studying climate change, we generally assume that the total amount of carbon emissions determines how much the planet will warm. A new study suggests that not only the amount, but also the timing of those emissions controls the amount of surface warming that occurs on human time-scale.
Nitrogen fertilizers and nitrogen oxides from fossil fuels pollute the air and drinking water, lead to the over-fertilization of water bodies and terrestrial ecosystems, reduce biodiversity and damage the ozone layer. On balance, however, they have a cooling effect on the climate.