Schwab, V. F.; Nowak, M.; Elder, C. D.; Trumbore, S. E.; Xu, X.; Gleixner, G.; Lehmann, R.; Pohnert, G.; Muhr, J.; Kuesel, K.et al.; Totsche, K. U.: 14C-free carbon is a major contributor to cellular biomass in geochemically distinct groundwater of shallow sedimentary bedrock aquifers. Water Resources Research 55 (3), pp. 2104 - 2121 (2019)
Schwab, V. F.; Nowak, M.; Trumbore, S. E.; Xu, X.; Gleixner, G.; Muhr, J.; Kuesel, K.; Totsche, K. U.: Isolation of individual saturated fatty acid methyl esters derived from groundwater phospholipids by preparative high-pressure liquid chromatography for compound-specific radiocarbon analyses. Water Resources Research 55 (3), pp. 2521 - 2531 (2019)
Nowak, M.; Schwab, V. F.; Lazar, C. S.; Behrendt, T.; Kohlhepp, B.; Totsche, K. U.; Küsel, K.; Trumbore, S. E.: Carbon isotopes of dissolved inorganic carbon reflect utilization of different carbon sources by microbial communities in two limestone aquifer assemblages. Hydrology and Earth System Sciences 21 (9), pp. 4283 - 4300 (2017)
Barth, J. A. C.; Nowak, M.; Zimmer, M.; Norden, B.; van Geldern, R.: Monitoring of cap-rock integrity during CCS from field data at the Ketzin pilot site (Germany): Evidence from gas composition and stable carbon isotopes. International Journal of Greenhouse Gas Control 43, pp. 133 - 140 (2015)
Nowak, M.; Beulig, F.; von Fischer, J.; Muhr, J.; Küsel, K.; Trumbore, S. E.: Autotrophic fixation of geogenic CO2 by microorganisms contributes to soil organic matter formation and alters isotope signatures in a wetland mofette. Biogeosciences 12 (3), pp. 7169 - 7183 (2015)
van Geldern, R.; Nowak, M.; Zimmer, M.; Szizybalski, A.; Myrttinen, A.; Barth, J. A. C.; Jost, H.-J.: Field-based stable isotope analysis of carbon dioxide by mid-infrared laser spectroscopy for carbon capture and storage monitoring. Analytical Chemistry 86 (24), pp. 12191 - 12198 (2015)
Nowak, M.: The role of microbial CO2 fixation for belowground carbon cycling and ist influence on carbon isotopic signatures. Dissertation, XI, 149 pp., Friedrich Schiller University Jena, Jena (2017)
The BIOMASS satellite was successfully launched into orbit on 29 April 2025. The BIOMASS mission is designed to map and monitor global forests. It will map the structure of different forest types and provide data on above-ground biomass.
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.
Recently, representatives of the Brazilian Ministry of Research and foreign ambassadors visited the German-Brazilian research station ATTO. On site, Research Minister Pontes promised multi-million investments in Amazon research and also in ATTO. This is intended to further expand the infrastructure and strengthen research in Brazil.
For the German-Brazilian joint project ATTO (Amazon Tall Tower Observatory), the Max Planck Society on the German side will continue to ensure the continued operation of the research station in the Brazilian rainforest and research. In addition, the German Federal Ministry of Education and Research (BMBF) will fund the project with ATTO+ for another three years with around 5 million euros.