2021 - heute

2025 - 2026

Peer-reviewed publications:

Journal articles:

Zhao, Q. u. a. (2026) «Temperature thresholds of extreme heat-induced yield loss in maize and soybean reveal geographic heterogeneity across the Northern Hemisphere», Nature Food, S. 1–16. Verfügbar unter: 10.1038/s43016-026-01298-0.   

Schmidt, A. u. a. (2026) «Reflections on linking economic equilibrium models with agent-based models in the context of land use», Socio-Environmental Systems Modelling, S. 8. Verfügbar unter: 10.18174/sesmo.18872.   

Zantout, K. u. a. (2025) «Shifting dominant periods in extreme climate impacts under global warming», Nature Communications, 16(1), S. 9746. Verfügbar unter: 10.1038/s41467-025-65600-7.   

Ganzenmüller, R. u. a. (2025) «Humans have depleted global terrestrial carbon stocks by a quarter», One Earth, 8(8), S. 101392. Verfügbar unter: 10.1016/j.oneear.2025.101392.   

Zabel, F., Knüttel, M., Poschlod, B. (2025) «CropSuite v1.0 – a comprehensive open-source crop suitability model considering climate variability for climate impact assessment», Geoscientific Model Development, 18(4), S. 1067–1087. Verfügbar unter: 10.5194/gmd-18-1067-2025.   

Argueyrolles, R., Heimann, T., Delzeit, R. (2025) «Impact of Gasoline and Diesel Subsidy Reforms on Global Biofuel Mandates», GCB Bioenergy, 17(2), S. e70019. Verfügbar unter: 10.1111/gcbb.70019.   

Heimann, T. u. a. (2025) «Expert projections on the development and application of bioenergy with carbon capture and storage technologies», Environmental Research Letters, 20(2), S. 024059. Verfügbar unter: 10.1088/1748-9326/ada16f.   

Robin, A. (2025) «Market power and fossil fuel subsidy reforms: Who should lead the call for change?», Journal of Policy Modeling, 47(6), S. 1113–1130. Verfügbar unter: doi.org/10.1016/j.jpolmod.2025.07.007.   

 

Non-peer-reviewed publications:

Journal articles:

Auer, C. u. a. (2026) «Global gridded crop models underestimate yield losses from climatic extremes». Springer Science and Business Media LLC (Research Square). Verfügbar unter: 10.21203/rs.3.rs-7181139/v1.   

Knüttel, M. u. a. (2026) «Crop Shifting in Africa: Opportunities for Climate Change Adaptation». Springer Science and Business Media LLC. Verfügbar unter: 10.21203/rs.3.rs-8581306/v1.   

Liu, X. u. a. (2025) «A food crop yield emulator for integration in the compact Earth system model OSCAR (OSCAR-crop v1.0)». Copernicus GmbH. Verfügbar unter: 10.5194/egusphere-2025-4805.   

Oberleitner, T. u. a. (2025) «Explaining climatic drivers of yield anomalies in global crop models through metamodel-based attribution». Wiley. Verfügbar unter: 10.22541/essoar.176071967.73925210/v1.   

Mohammed, A., Zabel, F., Delzeit, R. (2025) «Improving Water Policy Analysis in CGE Models: Deriving Substitution Elasticities from Biophysical Crop Data in a Case Study for Egypt». WWZ (WWZ Working Paper, 04).   

Li, F. u. a. (2025) «Weather and Climate Extremes Drive Grain Yield Reductions and Economic Losses in China». Springer Science and Business Media LLC. Verfügbar unter: 10.21203/rs.3.rs-5629484/v1.   

 

Model & data

Florian, Z. (2026) «A global 1km solar photovoltaic raster dataset». Verfügbar unter: 10.5281/zenodo.18631092.   

Dezhen, Y. u. a. (2026) «Code and data for study ‹Weather and Climate Extremes Drive Grain Yield Reductions and Economic Losses in China›». Verfügbar unter: 10.5281/zenodo.18160719.   

Benjamin, P. und Florian, Z. (2025) «Annual number of hours with a dangerous heat index: A global dataset based on hourly CMIP6-based ISIMIP3b climate model data». Verfügbar unter: 10.5281/zenodo.17939399.   

Benjamin, P. und Florian, Z. (2025) «Fraction of wet hours: A global dataset based on hourly CMIP6-based ISIMIP3b climate model data». Verfügbar unter: 10.5281/zenodo.17939523.   

Andrés, A.A. u. a. (2025) «AdaptationAtlas/CropSuiteLite: CropSuiteLite». Verfügbar unter: 10.5281/zenodo.17896784.   

Florian, Z., Benjamin, P. (2025) «Teddy-Tool v1.3: Temporal Disaggregation of Daily Climate Model Data». Verfügbar unter: 10.5281/zenodo.7679148.   

Matthias, K., Florian, Z. (2025) «CropSuite (v1.5.6)». Verfügbar unter: 10.5281/zenodo.17462531.   

Karim, Z. u. a. (2025) «Extreme event exposure data for crop failure, heatwave and wildfire». Verfügbar unter: 10.48364/isimip.920810.   

Matthias, K., Florian, Z. (2025) «CropSuite User Manual». Verfügbar unter: 10.5281/zenodo.14196314.   

Matthias, K., Florian, Z. (2025) «CropSuite (v1.4.5)». Verfügbar unter: 10.5281/zenodo.15868835.   

Matthias, K., Florian, Z. (2025) «CropSuite (v1.3.4)». Verfügbar unter: 10.5281/zenodo.15372966.   

Argueyrolles, R. (2025) «MEMP model - Two regions static Computational General Equilibrium (CGE) model with Cournot-Walras competition». Verfügbar unter: 10.5281/zenodo.14869419.   

Peer-reviewed publications:

Journal articles:

Schneider, J.M. u. a. (2024) «Effects of profit-driven cropland expansion and conservation policies», Nature Sustainability, 7(10), S. 1335–1347. Verfügbar unter: 10.1038/s41893-024-01410-x.   

Nelson, G.C. u. a. (2024) «Adaptation to climate change and limits in food production systems: Physics, the chemistry of biology, and human behavior», Global Change Biology, 30(9), S. e17489. Verfügbar unter: 10.1111/gcb.17489.   

Orlov, A. u. a. (2024) «Human heat stress could offset potential economic benefits of CO2 fertilization in crop production under a high-emissions scenario», One Earth, 7(7), S. 1250–1265. Verfügbar unter: 10.1016/j.oneear.2024.06.012.   

Heimann, T., Delzeit, R. (2024) «Land for fish: Quantifying the connection between the aquaculture sector and agricultural markets», Ecological Economics, 217, S. 108090. Verfügbar unter: 10.1016/j.ecolecon.2023.108090.   

Müller, C. u. a. (2024) «Substantial Differences in Crop Yield Sensitivities Between Models Call for Functionality-Based Model Evaluation», Earth’s Future, 12(3), S. e2023EF003773. Verfügbar unter: 10.1029/2023ef003773.   

Heimann, T. u. a. (2024) «Phasing out palm and soy oil biodiesel in the EU: What is the benefit?», GCB Bioenergy, 16(1), S. e13115. Verfügbar unter: 10.1111/gcbb.13115.   

Zabel, F., Poschlod, B. (2023) «The Teddy tool v1.1: temporal disaggregation of daily climate model data for climate impact analysis», Geoscientific Model Development, 16(18), S. 5383–5399. Verfügbar unter: 10.5194/gmd-16-5383-2023.   

Molina Bacca, E.J. u. a. (2023) «Uncertainty in land-use adaptation persists despite crop model projections showing lower impacts under high warming», Communications Earth & Environment, (1), S. 284. Verfügbar unter: 10.1038/s43247-023-00941-z.   

 

Non-peer-reviewed publications:

Journal articles:

Zantout, K. u. a. (2024) «Shifting (ir)regularity regimes in extreme climate impacts under global warming». Research Square (United States) (Research Square (Research Square). Verfügbar unter: 10.21203/rs.3.rs-5563216/v1.   

Zabel, F., Knüttel, M., Poschlod, B. (2024) «CropSuite – A comprehensive open-source crop suitability model considering climate variability for climate impact assessment». Copernicus GmbH (EGUsphere). Verfügbar unter: 10.5194/egusphere-2024-2526.   

Piipponen, J. u. a. (2023) «Protein and energy from grazing or crops - does livestock have a chance?». Research Square (United States) (Research Square (Research Square). Verfügbar unter: 10.21203/rs.3.rs-3392089/v1.   

Book chapters, presentations, reports:

Zantout, K. u. a. (2024) «The regularity of climate-related extreme events under global warming», in EGU General Assembly 2024. Vienna: Copernicus GmbH. Verfügbar unter: 10.5194/egusphere-egu24-18197.   

Florian, Z. (2024) BioSDG: Die "Sustainable Development Goals" - Welchen Beitrag leistet die Bioökonomie : Abschlussbericht Teilprojekt LMU München : Berichtszeitraum: 01.04.2020 bis 31.12.2023. Verfügbar unter: 10.2314/kxp:1927894077.   

 

Model & data

Matthias, K., Florian, Z. (2024) «CropSuite (v0.9)». Verfügbar unter: 10.5281/zenodo.13285636.   

Jonas, J. u. a. (2024) «Pre-processed and bias-adjusted yield data from ISIMIP3b simulations of the Agriculture Sector». Verfügbar unter: 10.48364/isimip.910253.   

Matthias, K., Florian, Z. (2024) «CropSuite (v1.3.3)». Verfügbar unter: 10.5281/zenodo.15264906.   

Jonas, J. u. a. (2024) «ISIMIP3a Simulation Data from the Agriculture Sector». Verfügbar unter: 10.48364/isimip.370868.1.   

Argueyrolles, R., Heimann, T., Delzeit, R. (2024) «The Impact of Gasoline and Diesel Subsidy Reforms on Global Biofuel Mandates - Supporting document», Zenodo. Verfügbar unter: 10.5281/zenodo.14524748.   

Zabel, F. (2024) «Global distribution of primary and secondary vegetation at 1km spatial resolution». Herausgegeben von F. Zabel. Verfügbar unter: 10.5281/zenodo.13304557.   

Knüttel, M., Zabel, F. (2024) «CropSuite User Manual». Herausgegeben von M. Knüttel. Verfügbar unter: 10.5281/zenodo.14196315.   

Schneider, J. u. a. (2024) «Global dataset of areas under cropland expansion pressure». Herausgegeben von J. Schneider. Verfügbar unter: 10.5281/zenodo.12505548.   

Zabel, F., Poschlod, B. (2024) «Teddy-Tool v1.2: Temporal Disaggregation of Daily Climate Model Data». Herausgegeben von F. Zabel. Verfügbar unter: 10.5281/zenodo.14216643.   

Zabel, F., Knüttel, M., Poschlod, B. (2024) «CropSuite – Crop suitability assessment for 48 crops under rainfed and irrigated conditions for Africa». Herausgegeben von F. Zabel. Verfügbar unter: 10.5281/zenodo.14514729.   

Zabel, F. (2024) «Global expansion and intensification potentials». Herausgegeben von F. Zabel. Verfügbar unter: 10.5281/zenodo.14512930.   

Knüttel, M., Zabel, F. (2024) «CropSuite (v1.0)». Herausgegeben von M. Knüttel und F. Zabel. Verfügbar unter: 10.5281/zenodo.14259375.   

Florian, Z., Benjamin, P. (2023) «Teddy-Tool v1.1: Temporal Disaggregation of Daily Climate Model Data». Verfügbar unter: 10.5281/zenodo.8124111.   

Jonas, J. u. a. (2023) «Projected changes in global maize production under ssp585». Verfügbar unter: 10.48490/3nza-ab60.   

Jonas, J. u. a. (2023) «AR6 SYR Data for Figure SPM.3(c1): Projected changes in global maize production». Verfügbar unter: 10.48490/qxxy-rn67.   

Peer-reviewed publications:

Journal articles:

Schneider, J.M., Zabel, F. und Mauser, W. (2022) «Global inventory of suitable, cultivable and available cropland under different scenarios and policies», Scientific Data, 9(1), S. 527. Verfügbar unter: 10.1038/s41597-022-01632-8.   

Ganzenmüller, R. u. a. (2022) «Land-use change emissions based on high-resolution activity data substantially lower than previously estimated», Environmental Research Letters, 17(6), S. 064050. Verfügbar unter: 10.1088/1748-9326/ac70d8.   

Schneider, J.M. u. a. (2022) «Global cropland could be almost halved: Assessment of land saving potentials under different strategies and implications for agricultural markets», PLoS ONE, 17(2), S. e0263063. Verfügbar unter: 10.1371/journal.pone.0263063.   edoc | Open Access

Schuenemann, F., Delzeit, R. (2022) «Potentials, subsidies and tradeoffs of cellulosic ethanol in the European Union», Ecological economics, 195, S. 107384. Verfügbar unter: 10.1016/j.ecolecon.2022.107384.   edoc

Mehrabi, Z. u. a. (2022) «Research priorities for global food security under extreme events», One Earth, 5(7), S. 756–766. Verfügbar unter: 10.1016/j.oneear.2022.06.008.   edoc | Open Access

Nyathi, N.A. u. a. (2022) «Ecosystem Services in Southern Africa: Current and Emerging Trends-A Bibliometric Review», Diversity, 14(5), S. 359. Verfügbar unter: 10.3390/d14050359.   edoc

Franke, J.A. u. a. (2022) «Agricultural breadbaskets shift poleward given adaptive farmer behavior under climate change», Global Change Biology, 28(1), S. 167–181. Verfügbar unter: 10.1111/gcb.15868.   

Schmidt, A. u. a. (2021) «A food tax only minimally reduces the N surplus of Swiss agriculture», Agricultural Systems, 194, S. 103271. Verfügbar unter: 10.1016/j.agsy.2021.103271.   

Jägermeyr, J. u. a. (2021) «Climate impacts on global agriculture emerge earlier in new generation of climate and crop models», Nature Food, 2(11), S. 873–885. Verfügbar unter: 10.1038/s43016-021-00400-y.   

Zabel, F. u. a. (2021) «Large potential for crop production adaptation depends on available future varieties», Global Change Biology, 27(16), S. 3870–3882. Verfügbar unter: 10.1111/gcb.15649.   

Degife, A.W., Zabel, F., Mauser, W. (2021) «Climate change impacts on potential maize yields in Gambella Region, Ethiopia», Regional Environmental Change, 21(2), S. 60. Verfügbar unter: 10.1007/s10113-021-01773-3.   

Müller, C. u. a. (2021) «Exploring uncertainties in global crop yield projections in a large ensemble of crop models and CMIP5 and CMIP6 climate scenarios», Environmental Research Letters, 16(3), S. 034040. Verfügbar unter: 10.1088/1748-9326/abd8fc.   

Delzeit, R. u. a. (2021) «Scenarios for an impact assessment of global bioeconomy strategies: Results from a co-design process», Research in Globalization, 3, S. 100060. Verfügbar unter: 10.1016/j.resglo.2021.100060.   edoc | Open Access

Dantas, I.R.M., Delzeit, R., Klepper, G. (2021) «Economic Research on the Global Allocation of Scarce Water Resources Needs Better Data», Water Economics and Policy, 07(03), S. 2150013. Verfügbar unter: 10.1142/s2382624x21500132.   edoc | Open Access

Thuebe, S.D., Delzeit, R., Henning, C.H.C.A. (2021) «Economic gains from global cooperation in fulfilling climate pledges», Energy Policy, 160, S. 112673. Verfügbar unter: 10.1016/j.enpol.2021.112673.   edoc | Open Access

Schmidt, A. u. a. (2021) «Reduction of nitrogen pollution in agriculture through nitrogen surplus quotas: an analysis of individual marginal abatement cost and different quota allocation schemes using an agent-based model», Journal of Environmental Planning and Management, 64(8), S. 1375–1391. Verfügbar unter: 10.1080/09640568.2020.1823344.   edoc

 

Non-peer-reviewed publications:

Journal articles:

Delzeit, R., Schmidt, A. (2022) «Wie wirkt sich der globale Wandel auf die Landnutzung aus? - Die neue Forschungsgruppe ‹Globale und Regionale Landnutzungsänderungen› stellt sich vor»., Regio Basiliensis, 63(1), S. 27–33. Verfügbar unter: https://www.gegbasel.ch/regio-basiliensis-archiv.   

Book, presentation:

Leclere, D. u. a. (2022) «Effects of crop growing season length adaptation on economic climate change impacts in the agricultural sector», in EGU General Assembly 2022. Vienna: Copernicus GmbH, S. EGU22–11129. Verfügbar unter: 10.5194/egusphere-egu22-11129.   

Florian, Z., Julia, S. (2021) BioNex: die Zukunft des Biomasse-Nexus : Laufzeit des Vorhabens: 01.04.2017 bis 31.03.2020, KNV bis 31.01.2021 : Berichtszeitraum: 01.04.2017 bis 31.01.2021. Verfügbar unter: 10.2314/kxp:1821102991.   

 

Model & data:

Florian, Z. (2022) «Global Agricultural Land Resources – A High Resolution Suitability Evaluation and Its Perspectives until 2100 under Climate Change Conditions (v3.0)». Verfügbar unter: 10.5281/zenodo.5982577.   

Delzeit, R. u. a. (2021) DART-BIO : A technical description. Kiel: ifw Kiel Institute for the World Economy (Kiel working paper , 2195).   

Peer-reviewed publications:

Journal articles:

Delzeit, R., Beach, R., Bibas, R., Britz, W., Chateau, J., Freund, F., Lefevre, J., Schuenemann, F., Sulser, T., Valin, H., van Ruijven, B., Weitzel, M., Willenbockel, D., Wojtowicz, K. (2020): Linking global CGE models with sectoral models to generate baseline scenarios: Approaches, challenges, and opportunities. In: Journal of Global Economic Analysis 5 (1), 162-195.

Ho, M., Britz, W., Delzeit, R., Leblanc, F., Roson, R., Schuenemann, F., Weitzel, M. (2020): Modelling Consumption and Constructing Long-term Baselines in Final Demand. In: Journal of Global Economic Analysis, 5 (1), 63-108.

Ziv G., Beckmann M., Bullock J., Cord A., Delzeit R., Domingo C., Dreßler G., Hagemann N, Masó J, Müller B, Neteler M, Sapundzhieva A, Stoev P, Stenning J, Trajković M., Václavík T. (2020): BESTMAP: behavioural, Ecological and Socio-economic Tools for Modelling Agricultural Policy. In: Research Ideas and Outcomes 6: e52052. H

Delzeit, R., Pongratz, J., Schneider, J. M., Schuenemann, F., Mauser, W. and Zabel, F. (2019): Forest restoration: Expanding agriculture. In: Science, 366(6463), pp. 316–317.

Zabel, F., Delzeit, R., Schneider, J.M., Seppelt, R., Mauser, W., T. Václavík (2019): Global impacts of future cropland expansion and intensification on agricultural markets and biodiversity. In: Nature Communications, 10, p.2844.

Schmidt, Alena, Mack, Gabriele,  Möhring, Anke, Mann, Stefan & El Benni, Nadja. 2019. Stricter cross-compliance standards in Switzerland: Economic and environmental impacts at farm- and sector-level. Agricultural Systems. https://doi.org/10.1016/j.agsy.2019.102664

Book chapters and series:

Delzeit, R., Klepper, G., S. Söder (2019): Rising energy prices due to inefficient support for renewables? An economic assessment of the status quo and alternatives in Germany. In: Gawel, E., Strunz, S., Lehmann, P., A. Purkus (Eds): The European Dimension of Germany’s Energy Transition – Opportunities and Conflicts. Springer, Berlin.

Schünemann, F., R. Delzeit (forthcoming): Higher income and higher prices: the role of demand specifications and elasticities of livestock products for global land use. Schriften der Gesellschaft für Wirtschafts- und Sozialwissenschaften des Landbaus e.V., Vol 64, pp.185-207. 

Peer-reviewed publications:

Journal articles:

Delzeit, R., Klepper, G., Zabel, F., W. Mauser (2018): Global economic-biophysical assessment of midterm scenarios for agricultural markets - biofuel policies, dietary patterns, cropland expansion, and productivity growth. In: Environmental Research Letters, 13 (2).

Delzeit, R., Winkler, M., M. Söder (2018): Land-use change under biofuel policies and a tax on meat and dairy products: considering complexity in agricultural production chains matters. In: Sustainability, 10(2), 419.

Delzeit, R., Zabel, F., Meyer, C, T. Václavík (2017): Addressing future trade-offs between biodiversity and cropland expansion to improve food security. In: Regional Environmental Change, 17, 1429–1441.

Schmidt, Alena, Necpalova, Magdalena, Zimmermann, Albert, Mann, Stefan, Six, Johan, & Mack, Gabriele. 2017. Direct and indirect economic incentives to mitigate nitrogen surpluses- a sensitivity analysis. Journal of Artificial Societies and Social Simulation.  20(4)7. https://doi.org/10.18564/jasss.3477

 

 

Peer-reviewed publications:

Journal articles:

Mauser, W., Klepper, G., Zabel, F., Delzeit, R., Hank, T., Putzenlechner, B., A. Calzadilla (2015): Global biomass production potentials exceed expected future demand without the need for cropland expansion. In: Nature Communications, 6, 8946.

Book chapters and series:

Calzadilla, A., Delzeit, R., G. Klepper (2016): Assessing the Effects of Biofuel Quotas on Agricultural Markets. In: Dinar, A. (Eds.): The WSPC Reference Set on Natural Resources and Environmental Policy in the era of Global Change, Vol. 3 “Computable General Equilibrium Models”, pp. 399-442.

 

Peer-reviewed publications:

Journal articles:

Britz, W., R. Delzeit (2013): The Impact of German Biogas Production on European and Global Agricultural Markets, Land Use and the Environment. In: Energy Policy, 64, 1268–1275.

Delzeit, R., U. Kellner (2013): The impact of plant size and location on profitability of biogas plants in Germany under consideration of processing digestates. In: Biomass and Bioenergy, 52, 43-53.

Peer-reviewed publications:

Journal articles:

Delzeit, R., Britz, W., K. Holm-Müller (2012): Modelling regional input markets with numerous processing plants: The case of green maize for biogas production in Germany. In: Environmental Modelling and Software 32, 74-84.

Delzeit, R., Holm-Müller, K., W. Britz (2012): Ökonomische Bewertung des Erneuerbare-Energien-Gesetzes zur Förderung von Biogas. In: German Economic Review, Wiley, 13(3), 251-265.

Delzeit, R., M. Lange (2011): Economic Impact of Bioenergy Production on African Countries. In: Climate Change and Green Growth, Greenhouse Gas Inventory & Research Center of Korea, 2, 37-54.

Peterson, S., Delzeit, R., H. Gömann (2011): Landnutzungsrestriktionen beeinflussen Effekte von Bioenergie erheblich - Land use restrictions significantly influence effects of bioenergy. In: GAIA - Ecological Perspectives for Science and Society, 3, 23

Chapters in books and series:

Gömann, H., P. Kreins., J. Münch., R. Delzeit (2011): Auswirkungen der Novellierung des Erneuerbare-Energien-Gesetzes auf die Landwirtschaft in Deutschland (Impacts of the amendment of the renewable energy source act on the agricultural sector in Germany). In: Schriften der Gesellschaft für Wirtschafts- und Sozialwissenschaften des Landbaus e.V., Vol. 46 "Möglichkeiten und Grenzen der wissenschaftlichen Politikanalyse", pp. 189-201.

Kellner, U., R. Delzeit, J. Thiering (2011): Der Einfluss des Standorts und der Anlagengröße auf die Kosten der Verbringung und Aufbereitung von Gärresten (The impact of location and plant size on disposal and transport costs of residues). In: Schriftenreihe „Berichte über Landwirtschaft“, 89, pp.38-55.

Peer-reviewed publications:

Journal articles:

Delzeit, R., K. Holm-Mueller (2009): Steps to discern sustainability criteria for a certification scheme of bioethanol in Brazil: Approach and difficulties. In: Energy (34), 662-668.

Breuer, T., R. Delzeit, A. Becker (2008): Biofuels: Die globale Renaissance der „Kraftstoffe vom Acker“. In: Geographische Rundschau, 1, 58-65.

Chapters in books and series:

Delzeit, R., W. Britz, K. Holm-Müller (2010): Modelling regional maize market and transport distances for biogas production in Germany. In: Schriften der Gesellschaft für Wirtschafts- und Sozialwissenschaften des Landbaus e.V. , Vol. 45 "Agrar- und Ernährungsmärkte nach dem Boom", pp.141-152.

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