Max Planck Society
Max Planck Institut for Biogeochemistry

Scientific publications 2003-2005

 
1Anthoni, P. M., Freibauer, A., Kolle, O., Schulze, E.-D. (2004). Winter wheat carbon exchange in Thuringia, Germany. Agricultural and Forest Meteorology, 121(1-2), 55-67.
2Anthoni, 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.
3Arndt, S. K., Kahmen, A., Arampatsis, C., Popp, M., Adams, M. (2004). Nitrogen fixation and metabolism by groundwater-dependent perennial plants in a hyperarid desert. Oecologia, 141(3), 385-394. doi:10.1007/s00442-004-1655-7.
4Aubinet, M., Clement, R., Elbers, J. A., Foken, T., Grelle, A., Ibrom, A., Moncrieff, J., Pilegaard, K., Rannik, U., Rebmann, C. (2003). Methodology for data acquisition, storage, and treatment. In R. Valentini (Ed.), Fluxes of Carbon, Water and Energy of European Forests (pp. 9-35). Heidelberg: Springer.
5Baker, T. R., Phillips, O. L., Malhi, Y., Almeida, S., Arroyo, L., Di Fiore, A., Erwin, T., Higuchi, N., Killeen, T. J., Laurance, S. G., Laurance, W. F., Lewis, S. L., Monteagudo, A., Neill, D. A., Vargas, P. N., Pitman, N. C. A., Silva, J. N. M., Martínez, R. V. (2004). Increasing biomass in Amazonian forest plots. Philosophical Transactions of the Royal Society of London, Series B: Biological Sciences, 359(1443), 353-365. doi:10.1098/rstb.2003.1422.
6Baker, T. R., Phillips, O. L., Malhi, Y., Almeida, S., Arroyo, L., Di Fiore, A., Erwin, T., Killeen, T. J., Laurance, S. G., Laurance, W. F., Lewis, S. L., Lloyd, J., Monteagudo, A., Neill, D. A., Patiño, S., Pitman, N. C. A., Silva, J. N. M., Martínez, R. V. (2004). Variation in wood density determines spatial patterns in Amazonian forest biomass. Global Change Biology, 10(5), 545-562.
7Baker, T. R., Swaine, M. D., Burslem, D. F. R. P. (2003). Variation in tropical forest growth rates: combined effects of functional group composition and resource availability. Perspectives in Plant Ecology, Evolution and Systematics, 6(1-2), 21-36. doi:10.1078/1433-8319-00040.
8Baldocchi, D. D., Black, T. A., Curtis, P. S., Falge, E., Fuentes, J. D., Granier, A., Gu, L., Knohl, A., Pilegaard, K., Schmid, H. P., Valentini, R., Wilson, K., Wofsy, S., Xu, L., Yamamoto, S. (2005). Predicting the onset of net carbon uptake by deciduous forests with soil temperature and climate data: a synthesis of FLUXNET data. International Journal of Biometeorology, 49(6), 377-387.
9Barboni, D., Harrison, S. P., Bartlein, P. J., Jalut, G., New, M., Prentice, I. C., Sanchez-Goñi, M. F., Spessa, A., Davis, B., Stevenson, A. C. (2004). Relationships between plant traits and climate in the Mediterranean region: A pollen data analysis. Journal of Vegetation Science, 15(5), 635-646.
10Benn, D. I., Owen, L. A., Osmaston, H. A., Seltzer, G. O., Porter, S. C., Mark, B. G. (2005). Reconstruction of equilibrium-line altitudes for tropical and sub-tropical glaciers. Quaternary International, 138-139, 8-21.
11Bernhofer, C., Aubinet, M., Clement, R., Grelle, A., Grünwald, T., Ibrom, A., Jarvis, P., Rebmann, C., Schulze, E. D., Tenhunen, J. (2003). Spruce Forests (Norway and Sitka Spruce, including Douglas Fir): Carbon and water fluxes, balances, ecological and ecophysiological determinants. In R. Valentini (Ed.), Fluxes of Carbon, Water and Energy of European Forests (pp. 99-123). Heidelberg: Springer.
12Bigelow, N. H., Brubaker, L. B., Edwards, M. E., Harrison, S. P., Prentice, I. C., Anderson, P. M., Andreev, A. A., Bartlein, P. J., Christensen, T. R., Cramer, W., Kaplan, J. O., Lozhkin, A. V., Matveyeva, N. V., Murray, D. F., Mcguire, A. D., Razzhivin, V. Y., Ritchie, J. C., Smith, B., Walker, D. A., Gajewski, K., Wolf, V., Holmqvist, B. H., Igarashi, Y., Kremenetskii, K., Paus, A., Pisaric, M. F. J., Volkova, V. S. (2003). Climate change and Arctic ecosystems: I. Vegetation changes north of 55 degrees N between the last glacial maximum, mid-Holocene, and present. Journal of Geophysical Research: Atmospheres, 108(D19), 8170. doi:10.1029/2002JD002558.
13Bird, M. I., Veenendaal, E. M., Lloyd, J. (2004). Soil carbon inventories and d13C along a moisture gradient in Botswana. Global Change Biology, 10(3), 342-349.
14Bird, M., Kracht, O., Derrien, D., Zhou, Y. (2003). The effect of soil texture and roots on the stable carbon isotope composition of soil organic carbon. Australian Journal of Soil Research, 41(1), 77-94.
15Bisutti, I., Hilke, I., Raessler, M. (2004). Determination of total organic carbon - an overview of current methods. TRAC - Trends in Analytical Chemistry, 23(10-11), 716-726.
16Bol, R., Ostle, N. J., Chenu, C. C., Petzke, K.-J., Werner, R. A., Balesdent, J. (2004). Long term changes in the distribution and d 15N values of individual soil amino acids in the absence of plant and fertiliser inputs. Isotopes in Environmental and Health Studies, 40(4), 243-256.
17Bopp, L., Kohfeld, K. E., Le Quéré, C., Aumont, O. (2003). Dust impact on marine biota and atmospheric CO2 during glacial periods. Paleoceanography, 18(2), 1046. doi:10.1029/2002PA000810.
18Braconnot, P., Harrison, S. P., Joussaume, S., Hewitt, C. D., Kitoh, A., Kutzbach, J., Liu, Z., Otto-Bleisner, B., Syktus, J., Weber, S. L. (2004). Evaluation of PMIP coupled ocean-atmosphere simulations of the mid-Holocene. In R. W. Battarbee, F. Gasse, C. E. Stickley (Eds.), Past climate variability through Europe and Africa (pp. 515-550). Kluwer.
19Brand, W. A. (2004). Mass spectrometer hardware for analyzing stable isotope ratios. In P. De Groot (Ed.), Handbook of stable isotope analytical techniques (pp. 835-856). Amsterdam: Elsevier.
20Brand, W. A. (2005). O2/N2 Storage Aspects and Open Split Mass Spectrometric Determination. In D. Worthy, L. Huang (Eds.), Proceedings of the 12th IAEA/WMO meeting of CO2 experts, Toronto, Sept. 2003 (pp. 146-151).
21Brooks, P. D., Geilmann, H., Werner, R. A., Brand, W. A. (2003). Improved precision of coupled d13C and d15N measurements from single samples using an elemental analyzer/isotope ratio mass spectrometer combination with a post-column sixport valve and selective CO2 trapping; improved halide robustness of the combustion reactor using CeO2. Rapid Communications in Mass Spectrometry, 17(16), 1924-1926.
22Buchmann, N., Bonal, D., Barigah, T. S., Guehl, J. M., Ehleringer, J. R. (2004). Insights into the carbon dynamics of tropical primary rainforests using stable carbon isotope analyses. In S. Gourlet-Fleury, J. M. Guehl, O. Laroussinie (Eds.), Ecology and management of a neotropical rainforest: lessons drawn from Paracou, a long-term exeperimental research site in French Guiana (pp. 95-113). Paris: Elsevier.
23Buchmann, N., Knohl, A., Hahn, V., Søe, A. R. B., Kahmen, A., Temperton, V. M. (2003). Stoffkreisläufe und Biodiversität in terrestrische Ökosysteme. In Jahrbuch 2003 der Max-Planck-Gesellschaft zur Förderung der Wissenschaften (pp. 149-158). München: K. G. Saur Verlag.
24Buchwitz, M., De Beek, R., Burrows, J. P., Bovensmann, H., Warneke, T., Notholt, J., Meirink, J. F., Goede, A. P. H., Bergamaschi, P., Körner, S., Heimann, M., Muller, J.-F., Schulz, A. (2005). Atmospheric methane and carbon dioxide from SCIAMACHY satellite data: initial comparison with chemistry and transport models. Atmospheric Chemistry and Physics, 5, 941-962. doi:10.5194/acp-5-941-2005.
25Buchwitz, M., De Beek, R., Noël, S., Burrows, J. P., Bovensmann, H., Bremer, H., Bergamaschi, P., Körner, S., Heimann, M. (2005). Carbon monoxide, methane and carbon dioxide columns retrieved from SCIAMACHY by WFM-DOAS: year 2003 initial data set. Atmospheric Chemistry and Physics, 5(12), 3313-3329. doi:10.5194/acp-5-3313-2005.
26Buitenhuis, E. T., Timmermans, K. R., De Baar, H. J. W. (2003). Zinc-bicarbonate colimitation of Emiliania huxleyi. Limnology and Oceanography, 48(4), 1575-1582. doi:10.4319/lo.2003.48.4.1575.
27Bürger, G., Chen, Y. (2005). Regression-based downscaling of spatial variability for hydrologic applications. Journal of Hydrology, 311(1-4), 299-317.
28Byrne, K. A., Chojnicki, B., Christensen, T. R., Drösler, M., Freibauer, A., Friborg, T., Frolking, S., Lindroth, A., Mailhammer, J., Malmer, N., Selin, P., Turunen, J., Valentini, R., Zetterberg, L. (2004). EU peatlands: Current carbon stocks and trace gas fluxes. In CarboEurope-GHG Concerted Action - Synthesis of the European Greenhouse Gas Budget, Report 4/2004, Specific Study, Tipo-Lito Recchioni, Viterbo, October 2004.
29Canadell, J. G., Ciais, P., Cox, P., Heimann, M. (2004). Quantifying, understanding and managing the carbon cycle in the next decades. Climatic Change, 67(2-3), 147-160.
30Canadell, J., Ciais, P., Cox, P., Heimann, M. (2004). Quantifying terrestrial carbon sinks - Preface. Climatic Change, 67(2-3), 145-146. doi:10.1007/s10584-004-3764-z.
31Cardinale, M., Doering-Arjes, P., Kastowsky, M., Mosegaard, H. (2004). Effects of sex, stock, and environment on the shape of known-age Atlantic cod (Gadus morhua) otoliths. Canadian Journal of Fisheries and Aquatic Sciences, 61(2), 158-167.
32Churkina, G., Schimel, D., Braswell, B. H., Xiao, X. M. (2005). Spatial analysis of growing season length control over net ecosystem exchange. Global Change Biology, 11(10), 1777-1787.
33Churkina, G., Tenhunen, J., Thornton, P., Falge, E. M., Elbers, J. A., Erhard, M., Grünwald, T., Kowalski, A. S., Rannik, Ü., Sprinz, D. (2003). Analyzing the ecosystem carbon dynamics of four European coniferous forests using a biogeochemistry model. Ecosystems, 6(2), 168-184.
34Ciais, P., Janssens, I., Shvidenko, A., Wirth, C., Malhi, Y., Grace, J., Schulze, E. D., Heimann, M., Phillips, O. L., Dolman, H. (2005). The potential for rising CO2 to account for the observed uptake of carbon by tropical, temperate, and boreal forest biomes. In H. Griffiths, P. Jarvis (Eds.), The carbon balance of forest biomes. Annual Meeting of the Society of Experimental Biology, April 2003 (pp. 109-150). London: Garland Science/BIOS Scientific Publishers.
35Ciais, P., Reichstein, M., Viovy, N., Granier, A., Ogée, J., Allard, V., Aubinet, M., Buchmann, N., Bernhofer, C., Carrara, A., Chevallier, F., De Noblet, N., Friend, A. D., Friedlingstein, P., Grünwald, T., Heinesch, B., Keronen, P., Knohl, A., Krinner, G., Loustau, D., Manca, G., Matteucci, G., Miglietta, F., Ourcival, J. M., Papale, D., Pilegaard, K., Rambal, S., Seufert, G., Soussana, J. F., Sanz, M. J., Schulze, E. D., Vesala, T., Valentini, R. (2005). Europe-wide reduction in primary productivity caused by the heat and drought in 2003. Nature, 437(7058), 529-533. doi:10.1038/nature03972.
36Claquin, T., Roelandt, C., Kohfeld, K. E., Harrison, S. P., Tegen, I., Prentice, I. C., Balkanski, Y., Bergametti, G., Hansson, M., Mahowald, N., Rodhe, H., Schulz, M. (2003). Radiative forcing of climate by ice-age atmospheric dust. Climate Dynamics, 20(2-3), 193-202.
37Cornelissen, J. H. C., Lavorel, S., Garnier, E., Diaz, S., Buchmann, N., Gurvich, D. E., Reich, P. B., Ter Steege, H., Morgan, H. D., Van Der Heijden, M. G. A., Pausas, J. G., Poorter, H. (2003). A handbook of protocols for standardised and easy measurement of plant functional traits worldwide. Australian Journal of Botany, 51(4), 335-380.
38Corradi, C., Kolle, O., Walter, K., Zimov, S. A., Schulze, E.-D. (2005). Carbon dioxide and methane exchange of a north-east Siberian tussock tundra. Global Change Biology, 11(11), 1910-1925.
39Cuntz, M., Ciais, P., Hoffmann, G., Allison, C. E., Francey, R. J., Knorr, W., Tans, P. P., White, J. W. C., Levin, I. (2003). A comprehensive global three-dimensional model of d18O in atmospheric CO2: 2. Mapping the atmospheric signal. Journal of Geophysical Research: Atmospheres, 108(D17), 4528. doi:10.1029/2002JD003154.
40Cuntz, M., Ciais, P., Hoffmann, G., Knorr, W. (2003). A comprehensive global three-dimensional model of d18O in atmospheric CO2: 1. Validation of surface processes. Journal of Geophysical Research: Atmospheres, 108(D17), 4527. doi:10.1029/2002JD003153.
41Czimczik, C. I., Mund, M., Schulze, E.-D., Wirth, C. (2005). Effects of reforestation, deforestation, and afforestation on carbon storage in soils. In H. Griffith, P. Jarvis (Eds.), The potential for rising CO2 to account for the observed uptake of carbon by tropical, temperate, and boreal forest biomes (pp. 319-330). London: Garland Science/BIOS Scientific Publishers.
42Czimczik, C. I., Preston, C. M., Schmidt, M. W. I., Schulze, E.-D. (2003). How surface fire in Siberian Scots pine forests affects soil organic carbon in the forest floor: Stocks, molecular structure, and conversion to black carbon (charcoal). Global Biogeochemical Cycles, 17(1), 1020. doi:10.1029/2002GB001956.
43Czimczik, C. I., Schmidt, M. W. I., Schulze, E.-D. (2004). Effects of increasing fire frequency on black carbon and organic matter in Podzols of Siberian Scots pine forests. European Journal of Soil Science, 56(3), 417-428.
44Dawson, D., Grice, K., Wang, S. X., Alexander, R., Radke, J. (2004). Stable hydrogen isotopic composition of hydrocarbons in torbanites (Late Carboniferous to Late Permian) deposited under various climatic conditions. Organic Geochemistry, 35(2), 189-197.
45Dentener, F., Van Weele, M., Krol, M., Houweling, S., Van Velthoven, P. (2003). Trends and inter-annual variability of methane emissions derived from 1979-1993 global CTM simulations. Atmospheric Chemistry and Physics, 3, 73-88. doi:10.5194/acp-3-73-2003.
46Dertinger, U., Schaz, U., Schulze, E.-D. (2003). Age-dependence of the antioxidative system in tobacco with enhanced glutathione reductase activity or senescence-induced production of cytokinins. Physiologia Plantarum, 119(1), 19-29.
47Diffenbaugh, N. S., Sloan, L. C., Snyder, M. A., Bell, J. L., Kaplan, J. O., Shafer, S. L., Bartlein, P. J. (2003). Vegetation sensitivity to global anthropogenic carbon dioxide emissions in a topographically complex region. Global Biogeochemical Cycles, 17(2), 1067. doi:10.1029/2002GB001974.
48Dolman, A. J., Schulze, E.-D., Valentini, R. (2003). Analyzing carbon flux measurements. Science, 301(5635), 916.
49Don, A., Kalbitz, K. (2005). Amounts and degradability of dissolved organic carbon from foliar litter at different decomposition stages. Soil Biology and Biochemistry, 37(12), 2171-2179.
50Dörr, M., Käßbohrer, J., Grunert, R., Kreisel, G., Brand, W. A., Werner, R. A., Geilmann, H., Apfel, C., Robl, C., Weigand, W. (2003). A possible prebiotic formation of ammonia from dinitrogen on iron sulfide surfaces. Angewandte Chemie International Edition, 42(13), 1540-1543. doi:10.1002/anie.200250371.
51Engelstädter, S., Kohfeld, K. E., Tegen, I., Harrison, S. P. (2003). Controls of dust emissions by vegetation and topographic depressions: An evaluation using dust storm frequency data. Geophysical Research Letters, 30(6), 1294. doi:10.1029/2002GL016471.
52Ensminger, I., Sveshnikov, D., Campbell, D. A., Funk, C., Jansson, S., Lloyd, J., Shibistova, O., Öquist, G. (2004). Intermittent low temperatures constrain spring recovery of photosynthesis in boreal Scots pine forests. Global Change Biology, 10(6), 995-1008.
53Falge, E., Tenhunen, J., Aubinet, M., Bernhofer, C., Clement, R., Granier, A., Kowalski, A., Moors, E., Pilegaard, K., Rannik, U., Rebmann, C. (2003). A Model-Based Study of Carbon Fluxes at Ten European Forest Sites. In R. Valentini (Ed.), Fluxes of Carbon, Water and Energy of European Forests (pp. 151-177). Heidelberg: Springer.
54Fiedler, S., Höll, B. S., Jungkunst, H. F. (2005). Methane budget of a Black Forest spruce ecosystem considering soil pattern. Biogeochemistry, 76(1), 1-20.
55Fletcher, S. E. M., Tans, P. P., Bruhwiler, L. M., Miller, J. B., Heimann, M. (2004). CH4 sources estimated from atmospheric observations of CH4 and its 13C/12C isotopic ratios: 1. Inverse modeling of source processes. Global Biogeochemical Cycles, 18(4): GB4004. doi:10.1029/2004GB002223.
56Fletcher, S. E. M., Tans, P. P., Bruhwiler, L. M., Miller, J. B., Heimann, M. (2004). CH4 sources estimated from atmospheric observations of CH4 and its 13C/12C isotopic ratios: 2. Inverse modeling of CH4 fluxes from geographical regions. Global Biogeochemical Cycles, 18(4), GB4005. doi:10.1029/2004GB002224.
57Frechen, M., Oches, E. A., Kohfeld, K. E. (2003). Loess in Europe - mass accumulation rates during the Last Glacial Period. Quaternary Science Reviews, 22(18-19), 1835-1857.
58Freibauer, A. (2003). Regionalised inventory of biogenic greenhouse gas emissions from European agriculture. European Journal of Agronomy, 19(2), 135-160.
59Freibauer, A., Kaltschmitt, M. (2003). Controls and models for estimating direct nitrous oxide emissions from temperate and sub-boreal agricultural mineral soils in Europe. Biogeochemistry, 63(1), 93-115.
60Freibauer, A., Mulligan, D., Smith, P. (2004). Importance of agricultural soils for the European GHG budget.
61Freibauer, A., Rounsevell, M. D. A., Smith, P., Verhagen, J. (2004). Carbon sequestration in the agricultural soils of Europe. Geoderma, 122(1), 1-23.
62Freibauer, A., Schrumpf, M. (2005). Ergebnisse aus dem EU-Projekt CarboEurope zu Fragen der standortgerechten Bodennutzung und des Klimaschutzes.
63Freibauer, A., Schulze, E. D. (2004). Effizienz von Kohlenstoffsenken unter dem Aspekt des Klimaschutzes.
64Friedrich, R., Freibauer, A., Gallmann, M., Gianouli, M., Koch, D., Peylin, P., Pye, S., Riviere, E., San Jose, R., Winiwarter, W., Blank, P., Kühlwein, J., Pregger, T., Reis, S., Scholz, Y., Theloke, J., Vabitsch, A. (2003). Temporal and Spatial Resolution of Greenhouse Gas Emissions in Europe.
65Gastine, A., Scherer-Lorenzen, M., Leadley, P. W. (2003). No consistent effects of plant diversity on root biomass, soil biota and soil abiotic conditions in temperate grassland communities. Applied Soil Ecology, 24(1), 101-111.
66Gehre, M., Geilmann, H., Richter, J., Werner, R. A., Brand, W. A. (2004). Continuous flow 2H/2H and 18O/16O analysis of water samples with dual inlet precision. Rapid Communications in Mass Spectrometry, 18(22), 2650-2660.
67Gerber, S., Joos, F., Prentice, I. C. (2004). Sensitivity of a dynamic global vegetation model to climate and atmospheric CO2. Global Change Biology, 10(8), 1223-1239.
68Ghosh, P., Bhattacharya, S. K. (2003). Sudden warming epochs during 42 to 28 ky BP in the Himalayan region from stable isotope record of sediment column from a relict lake in Goting, Garhwal, North India. Current Science, 85(1), 60-67.
69Ghosh, P., Bhattacharya, S. K., Sahni, A., Kar, R. K., Mohabey, D. M., Ambwani, K. (2003). Dinosaur coprolites from the Late Cretaceous (Maastrichtian) Lameta Formation of India: isotopic and other markers suggesting a C3 plant diet. Cretaceous Research, 24(6), 743-750.
70Ghosh, P., Brand, W. A. (2003). Stable isotope ratio mass spectrometry in global climate change research. International Journal of Mass Spectrometry, 228(1), 1-33.
71Ghosh, P., Brand, W. A. (2004). The effect of N2O on the isotopic composition of air-CO2 samples. Rapid Communications in Mass Spectrometry, 18(16), 1830-1838.
72Ghosh, P., Brand, W. A. (2005). Isotopic analysis of CO2 in air samples: Requirements for a new CO2 in-air standard and preparation of an air-CO2 reference mixture from calcite material. In D. Worthy, L. Huang (Eds.), Proceedings of the 12th IAEA/WMO meeting of CO2 experts, Toronto, Sept. 2003 (pp. 50-57).
73Ghosh, P., Patecki, M., Rothe, M., Brand, W. A. (2005). Calcite-CO2 mixed into CO2-free air: a new CO2-in-air stable isotope reference material for the VPDB scale. Rapid Communications in Mass Spectrometry, 19(8), 1097-1119.
74Gioli, B., Miglietta, F., De Martino, B., Hutjes, R. W. A., Dolman, H. A. J., Lindroth, A., Schumacher, M., Sanz, M. J., Manca, G., Peressotti, A., Dumas, E. J. (2004). Comparison between tower and aircraft-based eddy covariance fluxes in five European regions. Agricultural and Forest Meteorology, 127(1-2), 1-16.
75Giraud, X., Bertrand, P., Garcon, V., Dadou, I. (2003). Interpretation of the nitrogen isotopic signal variations in the Mauritanian upwelling with a 2D physical-biogeochemical model. Global Biogeochemical Cycles, 17(2), 1059. doi:10.1029/2002GB001951.
76Gleixner, G. (2005). Stable isotope composition of soil organic matter. In L. B. Flanagan, B. Ehleringer, D. E. Pataki (Eds.), Stable isotopes and biosphere-atmosphere interactions - Processes and biological (pp. 29-46). San Diego, USA: Elsevier.
77Gleixner, G., Kramer, C., Hahn, V., Sachse, D. (2005). The effect of biodiversity on carbon storage in soils. In M. Scherer-Lorenzen, C. Körner, E. D. Schulze (Eds.), Forest diversity and function: temperate and boreal systems (pp. 165-183). Berlin: Springer.
78Gloor, M., Gruber, N., Sarmiento, J., Sabine, C. L., Feely, R. A., Rödenbeck, C. (2003). A first estimate of present and preindustrial air-sea CO2 flux patterns based on ocean interior carbon measurements and models. Geophysical Research Letters, 30(1), 1010. doi:10.1029/2002GL015594.
79Göckede, M., Rebmann, C., Foken, T. (2004). A combination of quality assessment tools for eddy covariance measurements with footprint modelling for the characterisation of coplex sites. Agricultural and Forest Meteorology, 127(3-4), 175-188.
80Grace, J., Kruijt, B., Freibauer, A., Benndorf, R., Carr, R., Dutschke, M., Federici, S., Mollicone, D., Sanz, M. J., Schlamadinger, B., Sezzi, E., Waterloo, M., Valentini, R., Verhagen, A., Van Putten, B. (2003). Scientific and Technical Issues in the Clean Development Mechanism. In CarboEurope-GHG Concerted Action - Synthesis of the European Greenhouse Gas Budget, Report 1/2003, Specific Study 10, Tipo-Lito Recchioni, Viterbo, May 2003.
81Graßl, H., Kokott, J., Kulessa, M., Luther, J., Nuscheler, F., Sauerborn, R., Schellnhuber, H.-J., Schubert, R., Schulze, E. D. (2003). Über Kioto hinaus denken - Klimaschutz für das 21. Jahrhundert. Berlin: WBGU.
82Gruber, N., Friedlingstein, P., Field, C., Valentini, R., Heimann, M., Richey, J., Lankao, P. R., Schulze, E. D., Chen, C. T. A. (2004). The vulnerability of the carbon cycle in the 21st century: an assessment of carbon-climate-human interactions. In C. B. Field, M. R. Raupach (Eds.), The global carbon cycle (pp. 45-76). Washington: Island Press.
83Gurney, K. R., Law, R. M., Denning, A. S., Rayner, P. J., Baker, D., Bousquet, P., Bruhwiler, L., Chen, Y.-H., Ciais, P., Fan, S. M., Fung, I. Y., Gloor, M., Heimann, M., Higuchi, K., John, J., Kowalczyk, E., Maki, T., Maksyutov, S., Peylin, P., Prather, M., Pak, B. C., Sarmiento, J., Taguchi, S., Takahashi, T., Yuen, C.-W. (2003). TransCom 3 CO2 inversion intercomparison: 1. Annual mean control results and sensitivity to transport and prior flux information. Tellus, Series B - Chemical and Physical Meteorology, 55(2), 555-579. doi:10.1034/j.1600-0889.2003.00049.x.
84Gurney, K. R., Law, R. M., Denning, A. S., Rayner, P. J., Pak, B. C., Baker, D., Bousquet, P., Bruhwiler, L., Chen, Y.-H., Ciais, P., Fung, I. Y., Heimann, M., John, J., Maki, T., Maksyutov, S., Peylin, P., Prather, M., Taguchi, S. (2004). Transcom 3 inversion intercomparison: Model mean results for the estimation of seasonal carbon sources and sinks. Global Biogeochemical Cycles, 18(1), GB1010. doi:10.1029/2003GB002111.
85Guyon, P., Frank, G. P., Welling, M., Chand, D., Artaxo, P., Rizzo, L., Nishioka, G., Kolle, O., Fritsch, H., Silva Dias, M. A. F., Gatti, L. V., Cordova, A. M., Andreae, M. O. (2005). Airborne measurements of trace gas and aerosol particle emissions from biomass burning in Amazonia. Atmospheric Chemistry and Physics, 5, 2989-3002. doi:10.5194/acp-5-2989-2005.
86Hahn, V., Buchmann, N. (2004). A new model for soil organic carbon turnover using bomb carbon. Global Biogeochemical Cycles, 18(1), GB1019. doi:10.1029/2003GB002115.
87Harden, J. W., Neff, J. C., Sandberg, D. V., Turetsky, M. R., Ottmar, R., Gleixner, G., Fries, T. L., Manies, K. L. (2004). Chemistry of burning the forest floor during the FROSTFIRE experimental burn, interior Alaska, 1999. Global Biogeochemical Cycles, 18(3), GB3014. doi:10.1029/2003GB002194.
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