Ganesan, A. L.; Manizza, M.; Morgan, E.; Harth, C. M.; Kozlova, E.; Lueker, T.; Manning, A. J.; Lunt, M. F.; Mühle, J.; Lavrič, J. V.et al.; Heimann, M.; Weiss, R. F.; Rigby, M.: Marine nitrous oxide emissions from three Eastern boundary upwelling systems inferred from atmospheric observations. Geophysical Research Letters 47 (14), e2020GL087822 (2020)
Göckede, M.; Kwon, M. J.; Kittler, F.; Heimann, M.; Zimov, N.; Zimov, S.: Negative feedback processes following drainage slow down permafrost degradation. Global Change Biology 25 (10), pp. 3254 - 3266 (2019)
Morgan, E.; Lavrič, J. V.; Arévalo-Martínez, D. L.; Bange, H. W.; Steinhoff, T.; Seifert, T.; Heimann, M.: Air–sea fluxes of greenhouse gases and oxygen in the Northern Benguela current region during upwelling events. Biogeosciences 16 (20), pp. 4065 - 4084 (2019)
Reum, F.; Göckede, M.; Lavrič, J. V.; Kolle, O.; Zimov, S.; Zimov, N.; Pallandt, M.; Heimann, M.: Accurate measurements of atmospheric carbon dioxide and methane mole fractions at the Siberian coastal site Ambarchik. Atmospheric Measurement Techniques 12 (11), pp. 5717 - 5740 (2019)
Zhu, P.; Zhuang, Q.; Welp, L.; Ciais, P.; Heimann, M.; Peng, B.; Li, W.; Bernacchi, C.; Rödenbeck, C.; Keenan, T. F.: Recent warming has resulted in smaller gains in net carbon uptake in northern high latitudes. Journal of Climate 32 (18), pp. 5849 - 5863 (2019)
Urban, A. V.; Prokushkin, A. S.; Korets, M. A.; Panov, A. V.; Gerbig, C.; Heimann, M.: Influence of the underlying surface on greenhouse gas concentrations in the atmosphere over Central Siberia. Geography and natural resources 40 (3), pp. 221 - 229 (2019)
Kwon, M. J.; Natali, S. M.; Pries, C. E. H.; Schuur, E. A. G.; Steinhof, A.; Crummer, K. G.; Zimov, N.; Zimov, S. A.; Heimann, M.; Kolle, O.et al.; Göckede, M.: Drainage enhances modern soil carbon contribution but reduces old soil carbon contribution to ecosystem respiration in tundra ecosystems. Global Change Biology 25 (4), pp. 1315 - 1325 (2019)
Tsuruta, A.; Aalto, T.; Backman, L.; Krol, M. C.; Peters, W.; Lienert, S.; Joos, F.; Miller, P. A.; Zhang, W.; Laurila, T.et al.; Hatakka, J.; Leskinen, A.; Lehtinen, K. E. J.; Peltola, O.; Vesala, T.; Levula, J.; Dlugokencky, E.; Heimann, M.; Kozlova, E.; Aurela, M.; Lohila, A.; Kauhaniemi, M.; Gomez-Pelaez, A. J.: Methane budget estimates in Finland from the CarbonTracker Europe-CH4 data assimilation system. Tellus, Series B - Chemical and Physical Meteorology 71 (1), 1445379 (2019)
Mäkelä, J.; Knauer, J.; Aurela, M.; Black, A.; Heimann, M.; Kobayashi, H.; Lohila, A.; Mammarella, I.; Margolis, H.; Markkanen, T.et al.; Susiluoto, J.; Thum, T.; Viskari, T.; Zaehle, S.; Aalto, T.: Parameter calibration and stomatal conductance formulation comparison for boreal forests with adaptive population importance sampler in the land surface model JSBACH. Geoscientific Model Development 12 (9), pp. 4075 - 4098 (2019)
Rödenbeck, C.; Zaehle, S.; Keeling, R.; Heimann, M.: History of El Niño impacts on the global carbon cycle 1957–2017: a quantification from atmospheric CO2 data. Philosophical Transactions of the Royal Society of London, Series B: Biological Sciences 373 (1760), 20170303 (2018)
Timokhina, A. V.; Prokushkin, A. S.; Panov, A. V.; Kolosov, R. A.; Sidenko, N. V.; Lavrič, J. V.; Heimann, M.: Interannual variability of atmospheric CO2 concentrations over central Siberia from ZOTTO data for 2009–2015. Russian Meteorology and Hydrology 43 (5), pp. 288 - 294 (2018)
Rödenbeck, C.; Zaehle, S.; Keeling, R.; Heimann, M.: How does the terrestrial carbon exchange respond to inter-annual climatic variations? A quantification based on atmospheric CO2 data. Biogeosciences 15 (8), pp. 2481 - 2498 (2018)
Park, S.-B.; Knohl, A.; Lucas-Moffat, A.; Migliavacca, M.; Gerbig, C.; Vesala, T.; Peltola, O.; Mammarella, I.; Kolle, O.; Lavrič, J. V.et al.; Prokushkin, A.; Heimann, M.: Strong radiative effect induced by clouds and smoke on forest net ecosystem productivity in central Siberia. Agricultural and Forest Meteorology 250-251, pp. 376 - 387 (2018)
Ezhova, E.; Ylivinkka, I.; Kuusk, J.; Komsaare, K.; Vana, M.; Krasnova, A.; Noe, S.; Arshinov, M.; Belan, B.; Park, S.-B.et al.; Lavrič, J. V.; Heimann, M.; Petäjä, T.; Vesala, T.; Mammarella, I.; Kolari, P.; Bäck, J.; Rannik, U.; Kerminen, V.-M.; Kulmala, M.: Direct effect of aerosols on solar radiation and gross primary production in boreal and hemiboreal forests. Atmospheric Chemistry and Physics 18, pp. 17863 - 17881 (2018)
Kountouris, P.; Gerbig, C.; Rödenbeck, C.; Karstens, U.; Koch, T. F.; Heimann, M.: Technical Note: Atmospheric CO2 inversions on the mesoscale using data-driven prior uncertainties: methodology and system evaluation. Atmospheric Chemistry and Physics 18 (4), pp. 3027 - 3045 (2018)
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.
Land surface temperatures are shaped mostly by the heating by sunlight, but also by evaporation and convective heat transfer in the vertical. A new study determined the role of these two processes by employing a physical limit.
Axel Kleidon discusses contemporary issues relating to the Earth system, thermodynamics, energy conversion, and the water cycle, and explains the current state of scientific knowledge in these areas.