Assessing agricultural risks of climate change in the 21st century in a global gridded crop model intercomparison

Оценка сельскохозяйственных рисков изменения климата в XXI веке в рамках межсравнительного анализа глобальных сеточных моделей сельскохозяйственных культур
Christian Folberth, Nikolay Khabarov, Elke Stehfest, Christoph Müller, Almut Arneth, Cynthia Rosenzweig, Thomas A. M. Pugh, Alex C. Ruane, Joshua Elliott, Delphine Deryng, Kenneth J. Boote, Michael Glotter, Kathleen Neumann, Franziska Piontek, Erwin Schmid, Hong Yang, James W. Jones
2013-12-16

climate change impactscrop yield changesglobal gridded crop modelsmodel intercomparisonnitrogen stress
Here we present the results from an intercomparison of multiple global gridded crop models (GGCMs) within the framework of the Agricultural Model Intercomparison and Improvement Project and the Inter-Sectoral Impacts Model Intercomparison Project. Results indicate strong negative effects of climate change, especially at higher levels of warming and at low latitudes; models that include explicit nitrogen stress project more severe impacts. Across seven GGCMs, five global climate models, and four representative concentration pathways, model agreement on direction of yield changes is found in many major agricultural regions at both low and high latitudes; however, reducing uncertainty in sign of response in mid-latitude regions remains a challenge. Uncertainties related to the representation of carbon dioxide, nitrogen, and high temperature effects demonstrated here show that further research is urgently needed to better understand effects of climate change on agricultural production and to devise targeted adaptation strategies.
1
Across seven crop models, five global climate models, and four representative concentration pathways, yield-change direction agrees in many major agricultural regions at low and high latitudes.
2
Model agreement on the sign of yield responses remains limited in mid-latitude regions, making uncertainty reduction there a continuing challenge.
3
Models explicitly representing nitrogen stress generally project more severe climate-change impacts on crop production.
4
The intercomparison of seven global gridded crop models projects strong negative climate-change effects on agricultural yields, particularly under greater warming and at low latitudes.
5
Uncertainties in representing carbon dioxide, nitrogen, and high-temperature effects demonstrate the need for further research and targeted agricultural adaptation strategies.

global agricultural production and crop yields under 21st-century climate change

climate-change impacts on crop yields, including the roles of warming level, latitude, carbon dioxide, nitrogen stress, and high-temperature effects, and the associated model uncertainty

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2013-12-16
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Authors
Christian Folberth
Nikolay Khabarov
Elke Stehfest
Christoph Müller
Almut Arneth
Cynthia Rosenzweig
Thomas A. M. Pugh
Alex C. Ruane
Joshua Elliott
Delphine Deryng
Kenneth J. Boote
Michael Glotter
Kathleen Neumann
Franziska Piontek
Erwin Schmid
Hong Yang
James W. Jones
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