Max Planck Society
Max Planck Institut for Biogeochemistry

Scientific publications 2014

1Agnelli, 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.
2Ahrens, 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.
3Ahrens, 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.
4Ahrens, 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.
5Akita, 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.
6Allan, 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.
7Arnold, S., Kailichova, Y., Knauer, J., Ruthsatz, A. D., Baumgartl, T. (2014). Effects of soil water potential on germination of co-dominant Brigalow species: Implications for rehabilitation of water-limited ecosystems in the Brigalow Belt bioregion. Ecological Engineering, 70, 35-42. doi:10.1016/j.ecoleng.2014.04.015.
8Bahn, M., Reichstein, M., Dukes, J. S., Smith, M. D., McDowell, N. G. (2014). Climate-biosphere interactions in a more extreme world. New Phytologist, 202(2), 356-359. doi:10.1111/nph.12662.
9Baldeck, C. A., Colgan, M. S., Féret, J.-B., Levick, S. R., Martin, R. E., Asner, G. P. (2014). Landscape-scale variation in plant community composition of an African savanna from airborne species mapping. Ecological Applications, 24(1), 84-93. doi:10.1890/13-0307.1.
10Bamminger, C., Marschner, B., Jüschke, E. (2014). An incubation study on the stability and biological effects of pyrogenic and hydrothermal biochar in two soils. European Journal of Soil Science, 65, 72-82. doi:10.1111/ejss.12074.
11Bantle, A., Borken, W., Ellerbrock, R., Schulze, E. D., Weisser, W., Matzner, E. (2014). Quantity and quality of dissolved organic carbon released from coarse woody debris of different tree species in the early phase of decomposition. Forest Ecology and Management, 329, 287-294. doi:10.1016/j.foreco.2014.06.035.
12Battipaglia, G., Micco, V. D., Brand, W. A., Saurer, M., Aronne, G., Linke, P., Cherubini, P. (2014). Drought impact on water use efficiency and intra-annual density fluctuations in Erica arborea on Elba (Italy). Plant, Cell and Environment, 37(2), 382-391. doi:10.1111/pce.12160.
13Bechmann, M., Schneider, C., Carminati, A., Vetterlein, D., Attinger, S., Hildebrandt, A. (2014). Effect of parameter choice in root water uptake models – the arrangement of root hydraulic properties within the root architecture affects dynamics and efficiency of root water uptake. Hydrology and Earth System Sciences, 18(10), 4189-4206. doi:10.5194/hess-18-4189-2014.
14Beer, C., Weber, U., Tomelleri, E., Carvalhais, N., Mahecha, M. D., Reichstein, M. (2014). Harmonized European long-term climate data for assessing the effect of changing temporal variability on land-atmosphere CO2 fluxes. Journal of Climate, 27(13), 4815-4834. doi:10.1175/JCLI-D-13-00543.1.
15Boeckler, A., Towns, M., Unsicker, S., Mellway, R., Yip, L., Hilke, I., Gershenzon, J., Constabel, C. P. (2014). Transgenic upregulation of the condensed tannin pathway in poplar leads to a dramatic shift in leaf palatability for two tree-feeding Lepidoptera. Journal of Chemical Ecology, 40(2), 150-158. doi:10.1007/s10886-014-0383-7.
16Bohn, K., Pavlick, R., Reu, B., Kleidon, A. (2014). The strengths of r- and K-selection shape diversity-disturbance relationships. PLoS One, 9(4): e95659. doi:10.1371/journal.pone.0095659.
17Bowring, S. P. K., Miller, L., Ganzeveld, L., Kleidon, A. (2014). Applying the concept of “energy return on investment” to desert greening of the Sahara/Sahel using a global climate model. Earth System Dynamics, 5(1), 43-53. doi:10.5194/esd-5-43-2014.
18Braakhekke, M. C., Beer, C., Schrumpf, M., Ekici, A., Ahrens, B., Hoosbeek, M. R., Kruijt, B., Kabat, P., Reichstein, M. (2014). The use of radiocarbon to constrain current and future soil organic matter turnover and transport in a temperate forest. Journal of Geophysical Research-Biogeosciences, 119(3), 372-391. doi:10.1002/2013JG002420.
19Brand, W. A., Coplen, T. B., Vogl, J., Rosner, M., Prohaska, T. (2014). Assessment of international reference materials for isotope-ratio analysis (IUPAC Technical Report). Pure and Applied Chemistry, 86(3), 425-467. doi:10.1515/pac-2013-1023.
20Brunbjerg, A. K., Cavender-Bares, J., Eiserhardt, W. L., Ejrnæs, R., Aarssen, L. W., Buckley, H. L., Forey, E., Jansen, F., Kattge, J., Lane, C., Lubke, R. A., Moles, A. T., Monserrat, A. L., Peet, R. K., Roncal, J., Wootton, L., Svenning, a.-J.-C. (2014). Multi-scale phylogenetic structure in coastal dune plant communities across the globe. Journal of Plant Ecology, 7(2), 101-114. doi:10.1093/jpe/rtt069.
21Buendía, C., Arens, S., Hickler, T., Higgins, S. I., Porada, P., Kleidon, A. (2014). On the potential vegetation feedbacks that enhance phosphorus availability – insights from a process-based model linking geological and ecological timescales. Biogeosciences, 11, 3661-3683. doi:10.5194/bg-11-3661-2014.
22Buermann, W., Parida, B., Jung, M., MacDonald, G. M., Tucker, C. J., Reichstein, M. (2014). Recent shift in Eurasian boreal forest greening response may be associated with warmer and drier summers. Geophysical Research Letters, 41(6), 1995-2002. doi:10.1002/2014GL059450.
23Camino-Serrano, M., Gielen, B., Luyssaert, S., Guenet, B., Vicca, S., De Vos, B., Cools, N., Borken, W., Ahrens, B., Clarke, N., Pannatier, E. G., Nieminen, T. M., Schwendenmann, L., Moore, T., Clarkson, B., Nilsson, M. B., Laudon, H., Don, A., Siemens, J., Peichl, M., Arain, A., Cummins, T., Ciais, P., Janssens, I. (2014). Linking variability in soil solution dissolved organic carbon to climate, soil type, and vegetation type. Global Biogeochemical Cycles, 28(5), 497-509. doi:10.1002/2013GB004726.
24Canadell, J. G., Schulze, E. D. (2014). Global potential of biospheric carbon management for climate mitigation. Nature Communications, 5: 5282. doi:10.1038/ncomms6282.
25Carvalhais, N., Forkel, M., Khomik, M., Bellarby, J., Jung, M., Migliavacca, M., Mu, M., Saatchi, S., Santoro, M., Thurner, M., Weber, U., Ahrens, B., Beer, C., Cescatti, A., Randerson, J. T., Reichstein, M. (2014). Global covariation of carbon turnover times with climate in terrestrial ecosystems. Nature, 514, 213-217. doi:10.1038/nature13731.
26Ceccherini, G., Gobron, N., Migliavacca, M. (2014). On the response of the European vegetation phenology to hydroclimatic anomalies. Remote Sensing, 6(4), 3143-3169. doi:10.3390/rs6043143.
27Ciais, P., Dolman, A. J., Bombelli, A., Duren, R., Peregon, A., Rayner, P. J., Miller, C., Gobron, N., Kinderman, G., Marland, G., Gruber, N., Chevallier, F., Andres, R. J., Balsamo, G., Bopp, L., Br´eon, F.-M., Broquet, G., Dargaville, R., Battin, T. J., Borges, A., Bovensmann, H., Buchwitz, M., Butler, J., Canadell, J. G., Cook, R. B., DeFries, R., Engelen, R., Gurney, K. R., Heinze, C., Heimann, M., Held, A., Henry, M., Law, B., Luyssaert, S., Miller, J., Moriyama, T., Moulin, C., Myneni, R. B., Nussli, C., Obersteiner, M., Ojima, D., Pan, Y., Paris, J.-D., Piao, S. L., Poulter, B., Plummer, S., Quegan, S., Raymond, P., Reichstein, M., Rivier, L., Sabine, C., Schimel, D., Tarasova, O., Valentini, R., Wang, R., van der Werf, G., Wickland, D., Williams, M., Zehner, C. (2014). Current systematic carbon-cycle observations and the need for implementing a policy-relevant carbon observing system. Biogeosciences, 11, 3547-3602. doi:10.5194/bg-11-3547-2014.
28Davies, A. B., Robertson, M. P., Levick, S. R., Asner, G. P., van Rensburg, B. J., Parr, C. L. (2014). Variable effects of termite mounds on African savanna grass communities across a rainfall gradient. Journal of Vegetation Science, 25(6), 1405-1416. doi:10.1111/jvs.12200.
29Davies, A., Levick, S., Asner, G., Robertson, M., van Rensburg, B., Parr, C. (2014). Spatial variability and abiotic determinants of termite mounds throughout a savanna catchment. Ecography, 37, 001-011. doi:10.1111/ecog.00532.
30De Kauwe, M. G., Medlyn, B. E., Zaehle, S., Walker, A. P., Dietze, M. C., Wang, Y.-P., Luo, Y., Jain, A. K., El-Masri, B., Hickler, T., Warlind, D., Weng, E., Parton, W. J., Thornton, P. E., Wang, S., Prentice, I. C., Asao, S., Smith, B., McCarthy, H. R., Iversen, C. M., Hanson, P. J., Warren, J. M., Oren, R., Norby, R. J. (2014). Where does the carbon go? A model–data intercomparison of vegetation carbon allocation and turnover processes at two temperate forest free-air CO2 enrichment sites. New Phytologist, 203(3), 883-899. doi:10.1111/nph.12847.
31del Valle, J. I., Guarín, J. R., Sierra, C. (2014). Unambiguous and low-cost determination of growth rates and ages of tropical trees and palms. Radiocarbon, 56(1), 39-52. doi:10.2458/56.16486.
32Dhara, C., de la Torre, G., Acin, A. (2014). Can observed randomness be certified to be fully intrinsic? Physical Review Letters, 112, 100402-1-100402-5. doi:10.1103/PhysRevLett.112.100402.
33Dibbern, D., Schmalwasser, A., Lueders, T., Totsche, K. (2014). Selective transport of plant root-associated bacterial populations in agricultural soils upon snowmelt. Soil Biology and Biochemistry, 69, 187-196. doi:10.1016/j.soilbio.2013.10.040.
34Dietze, E., Maussion, F., Ahlborn, M., Diekmann, B., Hartmann, K., Henkel, K., Kasper, T., Lockot, G., Opitz, S., Haberzettl, a. T. (2014). Sediment transport processes across the Tibetan Plateau inferred from robust grain size end-members in lake sediments. Climate of the Past, 10, 91-106. doi:10.5194/cp-10-91-2014.
35Dippold, M. A., Boesel, S., Gunina, A., Kuzyakov, Y., Glaser, a. B. (2014). Improved d13C analysis of amino sugars in soil by ion chromatography–oxidation–isotope ratio mass spectrometry. Rapid Communications in Mass Spectrometry, 28(6), 569-576. doi:10.1002/rcm.6814.
36Doktor, D., Lausch, A., Spengler, D., Thurner, M. (2014). Extraction of plant physiological status from hyperspectral signatures using machine learning methods. Remote Sensing, 6(12), 12247-12274. doi:10.3390/rs61212247.
37Ebeling, A., Meyer, S., Abbas, M., Eisenhauer, N., Hillebrand, H., Lange, M., Scherber, C., Vogel, A., Weigelt, A., Weisser, W. (2014). Plant diversity impacts decomposition and herbivory via changes in aboveground arthropods. PLoS One, 9(3): e106529. doi:10.1371/journal.pone.0106529.
38Ebeling, A., Pompe, S., Baade, J., Eisenhauer, N., Hillebrand, H., Proulx, R., Roscher, C., Schmid, B., Wirth, C., Weisser, W. W. (2014). A trait-based experimental approach to understand the mechanisms underlying biodiversity ecosystem. Basic and Applied Ecology, 15(3), 229-240. doi:10.1016/j.baae.2014.02.003.
39Ehret, U., Gupta, H. V., Sivapalan, M., Weijs, S. V., Schymanski, S. J., Blöschl, G., Gelfan, A. N., Harman, C., Kleidon, A., Bogaard, T. A., Wang, D., Wagener, T., Scherer, U., Zehe, E., Bierkens, M. F. P., Baldassarre, G. D., Parajka, J., van Beek, L. P. H., van Griensven, A., Westhoff, M. C., Winsemius, H. C. (2014). Advancing catchment hydrology to deal with predictions under change. Hydrology and Earth System Sciences, 18(2), 649-671. doi:10.5194/hess-18-649-2014.
40Ekici, A., Beer, C., Hagemann, S., Hauck, C. (2014). Simulating high-latitude permafrost regions by the JSBACH terrestrial ecosystem model. Geoscientific Model Development, 7, 631-647. doi:10.5194/gmd-7-631-2014.
41Fazayeli, F., Banerjee, A., Kattge, J., Schrodt, F., Reich, P. B. (2014). Uncertainty quantified matrix completion using Bayesian Hierarchical Matrix factorization. 13th International Conference on Machine Learning and Applications (ICMLA), 312-317. doi:10.1109/ICMLA.2014.56.
42Fernandez-Martinez, M., Vicca, S., Janssens, I. A., Sardans, J., Luyssaert, S., Campioli, M., Chapin III, F. S., Ciais, P., Malhi, Y., Obersteiner, M., Papale, D., Piao, S. L., Reichstein, M., Roda, F., Penuelas, J. (2014). Nutrient availability as the key regulator of global forest carbon balance. Nature Climate Change, 4(6), 471-476. doi:10.1038/NCLIMATE2177.
43Fischer, C., Roscher, C., Jensen, B., Eisenhauer, N., Baade, J., Attinger, S., Scheu, S., Weisser, W. W., Schumacher, J., Hildebrandt, A. (2014). How do earthworms, soil texture and plant composition affect infiltration along an experimental plant diversity gradient in grassland? PLoS One, 9(6): e98987. doi:10.1371/journal.pone.0098987.
44Fisher, J. B., Sikka, M., Oechel, W. C., Huntzinger, D. N., Melton, J. R., Koven, C. D., Ahlström, A., Arain, A. M., Baker, I., Chen, J. M., Ciais, P., Davidson, C., Dietze, M., El-Masri, B., Hayes, D., Huntingford, C., Jain, A., Levy, P. E., Lomas, M. R., Poulter, B., Price, D., Sahoo, A. K., Schaefer, K., Tian, H., Tomelleri, E., Verbeeck, H., Viovy, N., Wania, R., Zeng, N., Miller, C. E. (2014). Carbon cycle uncertainty in the Alaskan Arctic. Biogeosciences, 11, 4271-4288. doi:10.5194/bg-11-4271-2014.
45Forkel, M., Carvalhais, N., Schaphoff, S., Bloh, W. v., Migliavacca, M., Thurner, M., Thonicke, K. (2014). Identifying environmental controls on vegetation greenness phenology through model-data integration. Biogeosciences, 11(23), 7025-7050. doi:10.5194/bg-11-7025-2014.
46Friend, A. D., Lucht, W., Rademacher, T. T., Keribin, R. M., Betts, R., Cadule, P., Ciais, P., Clark, D. B., Dankers, R., Falloon, P., Ito, A., Kahana, R., Kleidon, A., Lomas, M. R., Nishina, K., Ostberg, S., Pavlick, R., Peylin, P., Schaphoff, S., Vuichard, N., Warszawski, L., Wiltshire, A., Woodward, F. I. (2014). Carbon residence time dominates uncertainty in terrestrial vegetation responses to future climate and atmospheric CO2. Proc.Natl.Acad.Sci.USA, 111(9), 3280-3285. doi:10.1073/pnas.1222477110.
47Garcin, Y., Schefuß, E., Schwab, V. F., Garreta, V., Gleixner, G., Vincens, A., Todou, G., Sené, O., Onana, J.-M., Achoundong, G., Sachse, D. (2014). Reconstructing C3 and C4 vegetation cover using n-alkane carbon isotope ratios in recent lake sediments from Cameroon, Western Central Africa. Geochimica et Cosmochimica Acta, 142, 482-500. doi:10.1016/j.gca.2014.07.004.
48Gencarelli, C. N., Hedgecock, I. M., Sprovieri, F., Schürmann, G., Pirrone, N. (2014). Importance of ship emissions to local summertime ozone production in the mediterranean marine boundary layer: a modeling study. Atmosphere, 5, 937-958. doi:10.3390/atmos5040937.
49Gossner, M. M., Fonseca, C. R., Pašalic, E., Türke, M., Lange, M., Weisser, W. W. (2014). Limitations to the use of arthropods as temperate forests indicators. Biodiversity and Conservation, 23(4), 945-962. doi:10.1007/s10531-014-0644-3.
50Gossner, M. M., Pašalic, E., Lange, M., Boch, S., Hessenmöller, D., Müller, J., Socher, S. A., Fischer, M., Schulze, E. D., Weisser, W. W. (2014). Differential responses of herbivores and herbivory to management in temperate European beech. PLoS One, 9(8): e104876. doi:10.1371/journal.pone.0104876.
51Greve, P., Orlowsky, B., Mueller, B., Sheffield, J., Reichstein, M., Seneviratne, S. I. (2014). Global assessment of trends in wetting and drying over land. Nature geoscience, 7(10), 716-721. doi:10.1038/ngeo2247.
52Guanter, L., Zhang, Y., Jung, M., Joiner, J., Voigt, M., Berry, J. A., Frankenberg, C., Huete, A. R., Zarco-Tejada, P., Lee, J.-E., Moran, M. S., Ponce-Campos, G., Beer, C., Camps-Valls, G., Buchmann, N., Gianelle, D., Klumpp, K., Cescatti, A., Baker, J. M., Griffis, a. T. J. (2014). Reply to Magnani et al.: Linking large-scale chlorophyll fluorescence observations with cropland gross primary production. Proc.Natl.Acad.Sci.USA, 111(25): E2511. doi:10.1073/pnas.1406996111.
53Guanter, L., Zhang, Y., Jung, M., Joiner, J., Voigt, M., Berry, J. A., Frankenberg, C., Huete, A. R., Zarco-Tejada, P., Lee, J.-E., Moran, M. S., Ponce-Campos, G., Beer, C., Camps-Valls, G., Buchmann, N., Gianelle, D., Klumpp, K., Cescatti, A., Baker, J. M., Griffis, T. J. (2014). Global and time-resolved monitoring of crop photosynthesis with chlorophyll fluorescence. Proc.Natl.Acad.Sci.USA, 111(14), E1327-E1333. doi:10.1073/pnas.1320008111.
54Guarín, J. R., Valle, J. I. d., Sierra, C. (2014). Establishment phase, spatial pattern, age, and demography of Oenocarpus bataua var. bataua can be a legacy of past loggings in the Colombian Andes. Forest Ecology and Management, 328, 282-291. doi:10.1016/j.foreco.2014.05.043.
55Gunina, A., Kuzyakov, Y. (2014). Pathways of litter C by formation of aggregates and SOM density fractions: Implications from 13C natural abundance. Soil Biology and Biochemistry, 71, 95-104. doi:10.1016/j.soilbio.2014.01.011.
56Günther, F., Thiele, A., Gleixner, G., Xu, B., Yao, T., Schouten, S. (2014). Distribution of bacterial and archaeal ether lipids in soils and surface sediments of Tibetan lakes: Implications for GDGT-based proxies in saline high mountain lakes. Organic Geochemistry, 67, 19-30. doi:10.1016/j.orggeochem.2013.11.014.
57Hallmann, C., Summons, R. E. (2014). Paleobiological clues to early atmospheric evolution. In D. Canfield, J. Kasting, J. Farquhar (Eds.), Treatise on geochemistry, 2nd Ed (pp. 139-155). Elsevier. doi:10.1016/B978-0-08-095975-7.01305-X.
58Heimann, M. (2014). Comment on “Carbon farming in hot, dry coastal areas: an option for climate change mitigation” by Becker et al. (2013). Earth System Dynamics, 5, 41-42. doi:10.5194/esd-5-41-2014.
59Heimann, M., Schulze, E. D., Winderlich, J., Andreae, M. O., Chi, X., Gerbig, C., Kolle, O., Kübler, K., Lavric, J. V., Mikhailov, E., Panov, A., Park, S., Rödenbeck, C., Skorochod, A. (2014). The Zotino Tall Tower Observatory (Zotto): Quantifying large scale biogeochemical changes in Central Siberia. Nova Acta Leopoldina NF, 117(399), 51-64.
60Herold, N., Schöning, I., Berner, D., Haslwimmer, H., Kandeler, E., Michalzik, B., Schrumpf, M. (2014). Vertical gradients of potential enzyme activities in soil profiles of European beech, Norway spruce and Scots pine dominated forest sites. Pedobiologia, 57(3), 181-189. doi:10.1016/j.pedobi.2014.03.003.
61Herold, N., Schöning, I., Gutknecht, J., Alt, F., Boch, S., Mueller, J., Oelmann, Y., Socher, S. A., Wilcke, W., Wubet, T., Schrumpf, M. (2014). Soil property and management effects on grassland microbial communities across a latitudinal gradient in Germany. Applied Soil Ecology, 73, 41-50. doi:10.1016/j.apsoil.2013.07.009.
62Herold, N., Schöning, I., Michalzik, B., Trumbore, S. E., Schrumpf, M. (2014). Controls on soil carbon storage and turnover in German landscapes. Biogeochemistry, 119(1-3), 435-451. doi:10.1007/s10533-014-9978-x.
63Hiller, R. V., Neininger, B., Brunner, D., Gerbig, C., Bretscher, D., Kuenzle, T., Buchmann, N., Eugster, W. (2014). Aircraft-based CH4 flux estimates for validation of emissions from an agriculturally dominated area in Switzerland. Journal of Geophysical Research-Atmospheres, 119(8), 4874-4887. doi:10.1002/2013JD020918.
64Hopkins, F., Filley, T. R., Gleixner, G., Lange, M., Top, S. M., Trumbore, S. E. (2014). Increased belowground carbon inputs and warming promote loss of soil organic carbon through complementary microbial responses. Soil Biology and Biochemistry, 76, 57-69. doi:10.1016/j.soilbio.2014.04.028.
65Houweling, S., Krol, M., Bergamaschi, P., Frankenberg, C., Dlugokencky, E. J., Morino, I., Notholt, J., Sherlock, V., Wunch, D., Beck, V., Gerbig, C., Chen, H., Kort, E. A., Röckmann, T., Aben, I. (2014). A multi-year methane inversion using SCIAMACHY, accounting for systematic errors using TCCON measurements. Atmospheric Chemistry and Physics, 14, 3991-4012. doi:10.5194/acp-14-3991-2014.
66Illing, C. J., Hallmann, C., Miller, K. E., Summons, R. E., Strauss, H. (2014). Air-borne hydrocarbon contamination from laboratory atmospheres. Organic Geochemistry, 76, 26-38. doi:10.1016/j.orggeochem.2014.07.006.
67Jägermeyr, J., Gerten, D., Lucht, W., Hostert, P., Migliavacca, M., Nemani, R. (2014). A high-resolution approach to estimating ecosystem respiration at continental scales using operational satellite data. Global Change Biology, 20(4), 1191-1210. doi:10.1111/gcb.12443.
68Jimenez, E. M., Peñuela-Mora, M. C., Sierra, C., Lloyd, J., Phillips, O. L., Moreno, F. H., Navarrete, D., Prieto, A., Rudas, A., Álvarez, E., Quesada, C. A., Grande-Ortíz, M. A., García-Abril, A., Patiño, S. (2014). Edaphic controls on ecosystem-level carbon allocation in two contrasting Amazon forests. Journal of Geophysical Research: Biogeosciences, 119(9), 1820-1830. doi:10.1002/2014JG002653.
69Joiner, J., Yoshida, Y., Vasilkov, A., Schaefer, K., Jung, M., Guanter, L., Zhang, Y., Garrity, S., Middleton, E. M., Huemmrich, K. F., Gu, L., Marchesini, L. B. (2014). The seasonal cycle of satellite chlorophyll fluorescence observations and its relationship to vegetation phenology and ecosystem atmosphere carbon exchange. Remote Sensing of Environment, 152, 375-391. doi:10.1016/j.rse.2014.06.022.
70Joyce, K. E., Samsonov, S. V., Levick, S. R., Engelbrecht, J., Belliss, S. (2014). Mapping and monitoring geological hazards using optical, LiDAR, and synthetic aperture RADAR image data. Natural Hazards, 73(2), 137-163. doi:10.1007/s11069-014-1122-7.
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