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1Aalto, T., Hatakka, J., Karstens, U., Aurela, M., Thum, T., Lohila, A. (2006). Modeling atmospheric CO2 concentration profiles and fluxes above sloping terrain at a boreal site. Atmospheric Chemistry and Physics, 6(2), 303-314. doi:10.5194/acp-6-303-2006.
2Aasen, H., Wittenberghe, S. V., Medina, N. S., Damm, A., Goulas, Y., Wieneke, S., Hueni, A., Malenovský, Z., Alonso, L., Pacheco-Labrador, J., Cendrero-Mateo, M. P., Tomelleri, E., Burkart, A., Cogliati, S., Rascher, U., Arthur, A. M. (2019). Sun-induced chlorophyll fluorescence II: Review of passive measurement setups, protocols, and their application at the leaf to canopy level. Remote Sensing, 11(8): 927. doi:10.3390/rs11080927.
3Abell, P. I., Hoelzmann, P. (2000). Holocene palaeoclimates in northwestern Sudan: stable isotope studies on molluscs. Global and Planetary Change, 26(1-3), 1-12.
4Achard, F., Eva, H. D., Mollicone, D., Beuchle, R. (2008). The effect of climate anomalies and human ignition factor on wildfires in Russian boreal forests. Philosophical Transactions of the Royal Society of London, Series B: Biological Sciences, 363(1501), 2331-2339. doi:10.1098/rstb.2007.2203.
5Achard, F., Mollicone, D., Stibig, H.-J., Aksenov, D., Laestadius, L., Li, Z. Y., Popatov, P., Yaroshenko, A. (2006). Areas of rapid forest-cover change in boreal Eurasia. Forest Ecology and Management, 237(1-3), 322-334.
6Adams, H. D., Zeppel, M. J. B., Anderegg, W. R. L., Hartmann, H., Landhäusser, S. M., Tissue, D. T., Huxman, T. E., Hudson, P. J., Franz, T. E., Allen, C. D., Anderegg, L. D. L., Barron-Gafford, G. A., Beerling, D. J., Breshears, D. D., Brodribb, T. J., Bugmann, H., Cobb, R. C., Collins, A. D., Dickman, L. T., Duan, H., Ewers, B. E., Galiano, L., Galvez, D. A., Garcia-Forner, N., Gaylord, M. L., Germino, M. J., Gessler, A., Hacke, U. G., Hakamada, R., Hector, A., Jenkins, M. W., Kane, J. M., Kolb, T. E., Law, D. J., Lewis, J. D., Limousin, J.-M., Love, D. M., Macalady, A. K., Martínez-Vilalta, J., Mencuccini, M., Mitchell, P. J., Muss, J. D., O’Brien, M. J., O’Grady, A. P., Pangle, R. E., Pinkard, E. A., Piper, F. I., Plaut, J. A., Pockman, W. T., Quirk, J., Reinhardt, K., Ripullone, F., Ryan, M. G., Sala, A., Sevanto, S., Sperry, J. S., Vargas, R., Vennetier, M., Way, D. A., Xu, C., Yepez, E. A., McDowell, N. G. (2017). A multi-species synthesis of physiological mechanisms in drought-induced tree mortality. Nature Ecology & Evolution, 1(9), 1285-1291. doi:10.1038/s41559-017-0248-x.
7Adams, J., Lewis, P., Disney, M. (2018). Decoupling canopy structure and leaf biochemistry: Testing the utility of Directional area scattering factor (DASF). Remote Sensing, 10(12): 1911. doi:10.3390/rs10121911.
8Adiku, S. G. K., Reichstein, M., Lohila, A., Dinh, N. Q., Aurela, M., Laurila, T., Lueers, J., Tenhunen, J. D. (2006). PIXGRO: A model for simulating the ecosystem CO2 exchange and growth of spring barley. Ecological Modelling, 190(3-4), 260-276. doi:10.1016/j.ecolmodel.2005.04.024.
9Agnelli, A., Bol, R., Trumbore, S. E., Dixon, L., Cocco, S., Corti, G. (2014). Carbon and nitrogen in soil and vine roots in harrowed and grass-covered vineyards. Agriculture, Ecosystems & Environment, 193, 70-82. doi:10.1016/j.agee.2014.04.023.
10Agnelli, A., Trumbore, S. E., Corti, G., Ugolini, F. C. (2002). The dynamics of organic matter in rock fragments in soil investigated by 14C dating and measurements of 13C. European Journal of Soil Science, 53(1), 147-159. doi:10.1046/j.1365-2389.2002.00432.x.
11Agora Energiewende, Agora Verkehrswende, Technical University of Denmark, Max-Planck-Institute for Biogeochemistry (2020). Making the most of offshore wind: Re-evaluating the potential of offshore wind in the German North Sea. Agora Energiewende, 1-81.
12Ågren, G. I., Kattge, J. (2017). Nitrogen productivity and allocation responses of 12 important tree species to increased CO2. Trees, 31(2), 617-621. doi:10.1007/s00468-016-1495-1.
13Ahlström, A., Raupach, M. R., Schurgers, G., Smith, B., Arneth, A., Jung, M., Reichstein, M., Canadell, J. G., Friedlingstein, P., Jain, A. K., Kato, E., Poulter, B., Sitch, S., Stocker, B. D., Viovy, N., Wang, Y. P., Wiltshire, A., Zaehle, S., Zeng, N. (2015). The dominant role of semi-arid ecosystems in the trend and variability of the land CO2 sink. Science, 348(6237), 895-899. doi:10.1126/science.aaa1668.
14Ahmadov, R., Gerbig, C., Kretschmer, R., Körner, S., Neininger, B., Dolman, A. J., Sarrat, C. (2007). Mesoscale covariance of transport and CO2 fluxes: Evidence from observations and simulations using the WRF-VPRM coupled atmosphere-biosphere model. Journal of Geophysical Research: Atmospheres, 112(22), D22107. doi:10.1029/2007JD008552.
15Ahmadov, R., Gerbig, C., Kretschmer, R., Körner, S., Rödenbeck, C., Bousquet, P., Ramonet, M. (2009). Comparing high resolution WRF-VPRM simulations and two global CO2 transport models with coastal tower measurements of CO2. Biogeosciences, 6(5), 807-817. doi:10.5194/bg-6-807-2009.
16Ahrends, H. E., Etzold, S., Kutsch, W. L., Stoeckli, R., Bruegger, R., Jeanneret, F., Wanner, H., Buchmann, N., Eugster, W. (2009). Tree phenology and carbon dioxide fluxes: use of digital photography at for process-based interpretation the ecosystem scale. Climate Research, 39(3), 261-274. doi:10.3354/cr00811.
17Ahrens, B., Braakhekke, M. C., Guggenberger, G., Schrumpf, M., Reichstein, M. (2015). Contribution of sorption, DOC transport and microbial interactions to the 14C age of a soil organic carbon profile: Insights from a calibrated process model. Soil Biology and Biochemistry, 88, 390-402. doi:10.1016/j.soilbio.2015.06.008.
18Ahrens, B., Hansson, K., Solly, E., Schrumpf, M. (2014). Reconcilable differences: a joint calibration of fine-root turnover times with radiocarbon and minirhizotrons. New Phytologist, 204(4), 932-942. doi:10.1111/nph.12979.
19Ahrens, B., Reichstein, M. (2014). Reconciling 14C and minirhizotron-based estimates of fine-root turnover with survival functions. Journal of Plant Nutrition and Soil Science, 177(2), 287-296. doi:10.1002/jpln.201300110.
20Ahrens, B., Reichstein, M. (2017). Soil carbon: Depth of understanding. Nature Climate Change, 7(11), 762-763. doi:10.1038/nclimate3426.
21Ahrens, B., Reichstein, M., Borken, W., Muhr, J., Trumbore, S. E., Wutzler, T. (2014). Bayesian calibration of a soil organic carbon model using ?14C measurements of soil organic carbon and heterotrophic respiration as joint constraints. Biogeosciences, 11(8), 2147-2168. doi:10.5194/bg-11-2147-2014.
22Akita, L. G., Frenzel, P., Haberzettl, T., Kasper, T., Wang, J., Reicherter, K. (2014). Ostracoda (Crustacea) as indicators of subaqueous mass movements: An example from the large brackish lake Tangra Yumco on the southern Tibetan Plateau, China. Palaeogeography, Palaeoclimatology, Palaeoecology, 419, 60-74. doi:10.1016/j.palaeo.2014.08.003.
23Alekseychik, P., Lappalainen, H. K., Petäjä, T., Zaitseva, N., Heimann, M., Laurila, T., Lihavainen, H., Asmi, E., Arshinov, M., Shevchenko, V., Makshtas, A., Dubtsov, S., Mikhailov, E., Lapshina, E., Kirpotin, S., Kurbatova, Y., Ding, A., Guo, H., Park, S.-B., Lavric, J. V., Reum, F., Panov, A., Prokushkin, A., Kulmala, M. (2016). Ground-based station network in arctic and subarctic Eurasia: An overview. Geography, environment, sustainability, 09(02), 55-88. doi:10.15356/2071-9388_02v09_2016_06.
24Alexander, M. R., Rollinson, C. R., Babst, F., Trouet, V., Moore, D. J. P. (2018). Relative influences of multiple sources of uncertainty on cumulative and incremental tree-ring-derived aboveground biomass estimates. Trees, 32(1), 265-276. doi:10.1007/s00468-017-1629-0.
Postprint available
25Allan, E., Bossdorf, O., Dormann, C. F., Prati, D., Gossnerd, M., Tscharntke, T., Blüthgen, N., Bellach, M., Birkhofer, K., Boch, S., Böhm, S., Börschig, C., Chatzinotas, A., Christ, S., Daniel, R., Diekötter, T., Fischerm, C., Friedl, T., Glaser, K., Hallmann, C., Hodac, L., Hölzel, N., Jung, K., Klein, A. M., Klaus, V. H., Kleinebecker, T., Krauss, J., Lange, M., Morriss, E. K., Müller, J., Nacke, H., Pašalic, E., Rilligt, M. C., Rothenwöhrer, C., Schall, P., Scherber, C., Schulze, W., Socher, S., Steckel, J., Steffan-Dewenter, I., Türcke, M., Weiner, C. N., Werner, M., Westphal, C., Wolters, V., Wubet, T., Gockel, S., Gorke, M., Hemp, A., Renner, S. C., Schöning, I., Pfeiffer, S., König-Ries, B., Buscot, F., Linsenmair, K.-E., Schulze, E. D., Weisser, W. W., Fischer, M. (2014). Interannual variation in land-use intensity enhances grassland multidiversity. Proc.Natl.Acad.Sci.USA, 111(1), 308-313. doi:10.1073/pnas.1312213111.
26Allan, E., Jenkins, T., Fergus, A. J. F., Roscher, C., Fischer, M., Petermann, J., Weisser, W. W., Schmid, B. (2013). Experimental plant communities develop phylogenetically overdispersed abundance distributions during assembly. Ecology, 94(2), 465-477. doi:10.1890/11-2279.1.
27Allan, E., Manning, P., Alt, F., Binkenstein, J., Blaser, S., Blüthgen, N., Böhm, S., Grassein, F., Hölzel, N., Klaus, V. H., Kleinebecker, T., Morris, E. K., Oelmann, Y., Prati, D., Renner, S. C., Rillig, M. C., Schaefer, M., Schloter, M., Schmitt, B., Schöning, I., Schrumpf, M., Solly, E., Sorkau, E., Steckel, J., Steffen-Dewenter, I., Stempfhuber, B., Tschapka, M., Weiner, C. N., Weisser, W. W., Werner, M., Westphal, C., Wilcke, W., Fischer, M. (2015). Land use intensification alters ecosystem multifunctionality via loss of biodiversity and changes to functional composition. Ecology Letters, 18(8), 834-843. doi:10.1111/ele.12469.
28Allan, E., Weisser, W. W., Fischer, M., Schulze, E.-D., Weigelt, A., Roscher, C., Baade, J., Barnard, R. L., Bessler, H., Buchmann, N., Ebeling, A., Eisenhauer, N., Engels, C., Fergus, A. J. F., Gleixner, G., Gubsch, M., Halle, S., Klein, A. M., Kertscher, I., Kuu, A., Lange, M., Le Roux, X., Meyer, S. T., Migunova, V. D., Milcu, A., Niklaus, P. A., Oelmann, Y., Pasalic, E., Petermann, J. S., Poly, F., Rottstock, T., Sabais, A. C. W., Scherber, C., Scherer-Lorenzen, M., Scheu, S., Steinbeiss, S., Schwichtenberg, G., Temperton, V., Tscharntke, T., Voigt, W., Wilcke, W., Wirth, C., Schmid, B. (2013). A comparison of the strength of biodiversity effects across multiple functions. Oecologia, 173, 223-237. doi:10.1007/s00442-012-2589-0.
29Alt, F., Oelmann, Y., Herold, N., Schrumpf, M., Wilcke, W. (2011). Phosphorus partitioning in grassland and forest soils of Germany as related to land-use type, management intensity, and land use-related pH. Journal of Plant Nutrition and Soil Science, 174(2), 195-209. doi:10.1002/jpln.201000142.
30Alt, F., Oelmann, Y., Schöning, I., Wilcke, W. (2013). Phosphate release kinetics in calcareous grassland and forest soils in response to H+ addition. Soil Science Society of America, 77(6), 2060-2070. doi:10.2136/sssaj2013.02.0072.
31Altenbach, A., Anderson, L., Baumann, M., Bieser, J., Bleil, U., Bohrmann, H., Bönisch, G., Botz, R., Buessler, K., Carstens, J., Gascard, J.-C., Haake, F., Heidland, K., Hirschberg, D., Horwege, S., Jones, E. P., Koerner, T., Koltermann, P., Krishfield, R., Kromer, B., Krysell, M., Kubisch, M., Liithje, H., Marian, P., Masten, D., Matthiessen, J., McKeown, P., Mudie, P., Miihlhan, N., Mumm, N., Muus,., Nowaczyk, N., Osborne, J., Pagels,., Pfirman, S., Richez, C., Richter, B., Rodriguez, J., Schlosser, P., Sobiesiak, M., Sonnabend, H., Spielhagen, R., Steen, E., Stute, U., Sundvor, E., Swift, J., Thiede, J., Thomsen, L., Torp, J.-E., Vassmyr, S., Wallace, D., Weber, W., Westerlund, S., Wollenburg, I., Zemlyak, F. (1988). Breakthrough in Arctic deep-sea research: The R/V Polarstern expedition 1987. EOS, 69(25), 676-678. doi:10.1029/EO069i025p00665.
32Amediek, A., Ehret, G., Fix, A., Wirth, M., Büdenbender, C., Quatrevalet, M., Kiemle, C., Gerbig, C. (2017). CHARM-F—a new airborne integrated-path differential-absorption lidar for carbon dioxide and methane observations: measurement performance and quantification of strong point source emissions. Applied Optics, 56(18), 5182-5197. doi:10.1364/AO.56.005182.
33Ammer, C., Schall, P., Gossner, M. M., Heinrichs, S., Boch, S., Prati, D., Jung, K., Baumgartner, V., Blaser, S., Böhm, S., Buscot, F., Daniel, R., Goldmann, K., Kaiser, K., Kahl, T., Lange, M., Müller, J., Overmann, J., Renner, S. C., Schulze, E. D., Sikorski, J., Tschapka, M., Türke, M., Weisser, W. W., Wemheuer, B., Wubet, T., Fischer, M. (2017). Waldbewirtschaftung und Biodiversität: Vielfalt ist gefragt. AFZ, der Wald, 72(17), 20-25.
34Amundson, R., Wang, Y., Chadwick, O., Trumbore, S. E., McFadden, L., McDonald, E., Wells, S., DeNiro, M. (1994). Factors and processes governing the 14C content of carbonate in desert soils. Earth and Planetary Science Letters, 125(1-4), 385-405. doi:10.1016/0012-821X(94)90228-3.
35Anav, A., Friedlingstein, P., Kidston, M., Bopp, L., Ciais, P., Cox, P., Jones, C., Jung, M., Myneni, R., Zhu, Z. (2013). Evaluating the land and ocean components of the global carbon cycle in the CMIP5 earth system models. Journal of Climate, 26(18), 6801-6843. doi:10.1175/JCLI-D-12-00417.1.
36Anderegg, W. R. L., Martinez-Vilalta, J., Cailleret, M., Camarero, J. J., Ewers, B. E., Galbraith, D., Gessler, A., Grote, R., Huang, C.-y., Levick, S. R., Powell, T. L., Rowland, L., Sánchez-Salguero, R., Trotsiuk, V. (2016). When a tree dies in the forest: Scaling climate-driven tree mortality to ecosystem water and carbon fluxes. Ecosystems, 19(6), 1133-1147. doi:10.1007/s10021-016-9982-1.
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39Andreae, M. O., Acevedo, O. C., Araùjo, A., Artaxo, P., Barbosa, C. G. G., Barbosa, H. M. J., Brito, J., Carbone, S., Chi, X., Cintra, B. B. L., da Silva, N. F., Dias, N. L., Dias-Júnior, C. Q., Ditas, F., Ditz, R., Godoi, A. F. L., Godoi, R. H. M., Heimann, M., Hoffmann, T., Kesselmeier, J., Könemann, T., Krüger, M. L., Lavric, J. V., Manzi, A. O., Moran-Zuloaga, D., Nölscher, A. C., Nogueira, D. S., Piedade, M. T. F., Pöhlker, C., Pöschl, U., Rizzo, L. V., Ro, C.-U., Ruckteschler, N., Sá, L. D. A., Sá, M. D. O., Sales, C. B., Santos, R. M. N. D., Saturno, J., Schöngart, J., Sörgel, M., de Souza, C. M., de Souza, R. A. F., Su, H., Targhetta, N., Tóta, J., Trebs, I., Trumbore, S. E., van Eijck, A., Walter, D., Wang, Z., Weber, B., Williams, J., Winderlich, J., Wittmann, F., Wolff, S., Yáñez-Serrano, A. M. (2015). The Amazon Tall Tower Observatory (ATTO): overview of pilot measurements on ecosystem ecology, meteorology, trace gases, and aerosols. Atmospheric Chemistry and Physics, 15(18), 10723-10776. doi:10.5194/acp-15-10723-2015.
40Andreae, M. O., Artaxo, P., Beck, V., Bela, M., Freitas, S., Gerbig, C., Longo, K., Munger, J. W., Wiedemann, K. T., Wofsy, S. C. (2012). Carbon monoxide and related trace gases and aerosols over the Amazon Basin during the wet and dry seasons. Atmospheric Chemistry and Physics, 12(13), 6041-6065. doi:10.5194/acp-12-6041-2012.
41Angerosa, F., Camera, L., Cumitini, S., Gleixner, G., Reniero, F. (1997). Carbon stable isotopes and olive oil adulteration with pomace oil. Journal of Agricultural and Food Chemistry, 45(8), 3044-3048.
42Angert, A., Muhr, J., Juarez, R. N., Alegria Munoz, W., Kraemer, G., Ramirez Santillan, J., Barkan, E., Mazeh, S., Chambers, J. Q., Trumbore, S. E. (2012). Internal respiration of Amazon tree stems greatly exceeds external CO2 efflux. Biogeosciences, 9, 4979-4991. doi:10.5194/bg-9-4979-2012.
43Angert, A., Muhr, J., Juarez, R., Munoz, W., Kraemer, G., Santillan, J., Chambers, J., Trumbore, S. E. (2012). The contribution of respiration in tree stems to the Dole effect. Biogeosciences, 9, 4037-4044. doi:10.5194/bg-9-4037-2012.
44Angst, G., Mueller, K. E., Eissenstat, D. M., Trumbore, S. E., Freeman, K. H., Hobbie, S. E., Chorover, J., Oleksyn, J., Reich, P. B., Mueller, C. W. (2019). Soil organic carbon stability in forests: Distinct effects of tree species identity and traits. Global Change Biology, 25(4), 1529-1546. doi:10.1111/gcb.14548.
45Anslan, S., Rad, M. A., Buckel, J., Galindo, P. E., Kai, J., Kang, W., Keys, L., Maurischat, P., Nieberding, F., Reinosch, E., Tang, H., Tran, T. V., Wang, Y., Schwalb, A. (2020). Reviews and syntheses: How do abiotic and biotic processes respond to climatic variations in the Nam Co catchment (Tibetan Plateau)? Biogeosciences, 17(5), 1261-1279. doi:10.5194/bg-17-1261-2020.
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47Anthoni, P. M., Knohl, A., Rebmann, C., Freibauer, A., Mund, M., Ziegler, W., Kolle, O., Schulze, E.-D. (2004). Forest and agricultural land-use-dependent CO2 exchange in Thuringia, Germany. Global Change Biology, 10(12), 2005-2019.
48Anthoni, P. M., Unsworth, M. H., Law, B. E., Irvine, J., Baldocchi, D. D., Van Tuyl, S., Moore, D. (2002). Seasonal differences in carbon and water vapor exchange in young and old-growth ponderosa pine ecosystems. Agricultural and Forest Meteorology, 111(3), 203-222.
49Aparecido, L. M. T., dos Santos, J., Higuchi, N., Kunert, N. (2015). Ecological applications of differences in the hydraulic efficiency of palms and broad leaved trees. Trees, 29, 1431-1445. doi:10.1007/s00468-015-1223-2.
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1144Hartmann, H., Beaudet, M., Mazerolle, M. J., Messier, C. (2009). Sugar maple (Acer saccharum Marsh.) growth is influenced by close conspecifics and skid trail proximity following selection harvest. Forest Ecology and Management, 258(5), 823-831. doi:10.1016/j.foreco.2009.05.028.
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1148Hartmann, H., Messier, C. (2008). The role of forest tent caterpillar defoliations and partial harvest in the decline and death of sugar maple. Annals of Botany, 102(3), 377-387. doi:10.1093/aob/mcn104.
1149Hartmann, H., Messier, C. (2011). Interannual variation in competitive interactions from natural and anthropogenic disturbances in a temperate forest tree species: Implications for ecological interpretation. Forest Ecology and Management, 261(11), 1936-1944. doi:10.1016/j.foreco.2011.02.018.
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1153Hartmann, H., Trumbore, S. E. (2016). Understanding the roles of nonstructural carbohydrates in forest trees – from what we can measure to what we want to know. New Phytologist, 211(2), 386-403. doi:10.1111/nph.13955.
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Postprint available
1454Jung, M., Schwalm, C., Migliavacca, M., Walther, S., Camps-Valls, G., Koirala, S., Anthoni, P., Besnard, S., Bodesheim, P., Carvalhais, N., Chevallier, F., Gans, F., Goll, D. S., Haverd, V., Koehler, P., Ichii, K., Jain, A. K., Liu, J., Lombardozzi, D., Nabel, J. E. M. S., Nelson, J. A., O’Sullivan, M., Pallandt, M., Papale, D., Peters, W., Pongratz, J., Rödenbeck, C., Sitch, S., Tramontana, G., Walker, A., Weber, U., Reichstein, M. (2020). Scaling carbon fluxes from eddy covariance sites to globe: synthesis and evaluation of the FLUXCOM approach. Biogeosciences, 17(5), 1343-1365. doi:10.5194/bg-17-1343-2020.
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