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1Feng, X., Posmentier, E. S., Sonder, L. J., Fan, N. (2019). Rethinking Craig and Gordon’s approach to modeling isotopic compositions of marine boundary layer vapor. Atmospheric Chemistry and Physics, 19, 4005-4024. doi:10.5194/acp-19-4005-2019.
2Göckede, M., Kittler, F., Schaller, C. (2019). Quantifying the impact of emission outbursts and non-stationary flow on eddy covariance CH4 flux measurements using wavelet techniques. Biogeosciences Discussions. doi:10.5194/bg-2019-92.
3Huang, J., Hammerbacher, A., Weinhold, A., Reichelt, M., Gleixner, G., Behrendt, T., van Dam, N. M., Sala, A., Gershenzon, J., Trumbore, S. E., Hartmann, H. (2019). Eyes on the future – evidence for trade-offs between growth, storage and defense in Norway spruce. New Phytologist, 222(1), 144-158. doi:10.1111/nph.15522.
4Kwon, 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., Göckede, M. (2019). Drainage enhances modern soil carbon contribution but reduces old soil carbon contribution to ecosystem respiration in tundra ecosystems. Global Change Biology, 25(4), 1315-1325. doi:10.1111/gcb.14578.
5Mäkelä, J., Knauer, J., Aurela, M., Black, A., Heimann, M., Kobayashi, H., Lohila, A., Mammarella, I., Margolis, H., Markkanen, T., Susiluoto, J., Thum, T., Viskari, T., Zaehle, S., Aalto, T. (2019). Land surface model photosynthesis and parameter calibration for boreal sites with adaptive population importance sampler. Geoscientific Model Development Discussions. doi:10.5194/gmd-2018-313.
6Mellado-Vázquez, P. G., Lange, M., Gleixner, G. (2019). Soil microbial communities and their carbon assimilation are affected by soil properties and season but not by plants differing in their photosynthetic pathways (C3 vs. C4). Biogeochemistry, 142(2), 175-187. doi:10.1007/s10533-018-0528-9.
7Reum, F., Gerbig, C., Lavric, J. V., Rella, C. W., Göckede, M. (2019). Correcting atmospheric CO2 and CH4 mole fractions obtained with Picarro analyzers for sensitivity of cavity pressure to water vapor. Atmospheric Measurement Techniques, 12(2), 1013-1027. doi:10.5194/amt-12-1013-2019.
8Roscher, C., Karlowsky, S., Milcu, A., Gessler, A., Bachmann, D., Jesch, A., Lange, M., Mellado-Vázquez, P. G., Strecker, T., Landais, D., Ravel, O., Buchmann, N., Roy, J., Gleixner, G. (2019). Functional composition has stronger impact than species richness on carbon gain and allocation in experimental grasslands. PLoS One, 14(1): e0204715. doi:10.1371/journal.pone.0204715.
9Schaller, C., Kittler, F., Foken, T., Göckede, M. (2019). Characterisation of short-term extreme methane fluxes related to non-turbulent mixing above an Arctic permafrost ecosystem. Atmospheric Chemistry and Physics, 19(6), 4041-4059. doi:10.5194/acp-19-4041-2019.
10Shan, N., Jua, W., Migliavacca, M., Martini, D., Guanter, L., Chen, J., Goulas, Y., Zhan, Y. (2019). Modeling canopy conductance and transpiration from solar-induced chlorophyll fluorescence. Agricultural and Forest Meteorology, 268, 189-201. doi:10.1016/j.agrformet.2019.01.031.
11Simon, C., Osterholz, H., Koschinsky, A., Dittmar, T. (2019). Riverine mixing at the molecular scale - An ultrahigh-resolution mass spectrometry study on dissolved organic matter and selected metals in the Amazon confluence zone (Manaus, Brazil). Organic Geochemistry, 129, 45-62. doi:10.1016/j.orggeochem.2019.01.013.
12Thum, T., Caldararu, S., Engel, J., Kern, M., Pallandt, M., Schnur, R., Yu, L., Zaehle, S. (2019). A new terrestrial biosphere model with coupled carbon, nitrogen, and phosphorus cycles (QUINCY v1.0; revision 1772). Geoscientific Model Development Discussions. doi:10.5194/gmd-2019-49.
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