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Future productivity and phenology changes in European grasslands for different warming levels: implications for grassland management and carbon balance

Authors: orcid Jean-François Soussana;
Jean-François Soussana
ORCID
Harvested from ORCID Public Data File

Jean-François Soussana in OpenAIRE
orcid bw Benjamin Sultan;
Benjamin Sultan
ORCID
Derived by OpenAIRE algorithms or harvested from 3rd party repositories

Benjamin Sultan in OpenAIRE
orcid Nicolas Viovy;
Nicolas Viovy
ORCID
Harvested from ORCID Public Data File

Nicolas Viovy in OpenAIRE
orcid bw Katja Klumpp;
Katja Klumpp
ORCID
Derived by OpenAIRE algorithms or harvested from 3rd party repositories

Katja Klumpp in OpenAIRE
orcid Jinfeng Chang;
Jinfeng Chang
ORCID
Harvested from ORCID Public Data File

Jinfeng Chang in OpenAIRE
Jinfeng Chang; orcid bw Philippe Ciais;
Philippe Ciais
ORCID
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Philippe Ciais in OpenAIRE

Future productivity and phenology changes in European grasslands for different warming levels: implications for grassland management and carbon balance

Abstract

Europe has warmed more than the global average (land and ocean) since pre-industrial times, and is also projected to continue to warm faster than the global average in the twenty-first century. According to the climate models ensemble projections for various climate scenarios, annual mean temperature of Europe for 2071-2100 is predicted to be 1-5.5 °C higher than that for 1971-2000. Climate change and elevated CO2 concentration are anticipated to affect grassland management and livestock production in Europe. However, there has been little work done to quantify the European-wide response of grassland to future climate change. Here we applied ORCHIDEE-GM v2.2, a grid-based model for managed grassland, over European grassland to estimate the impacts of future global change.Increases in grassland productivity are simulated in response to future global change, which are mainly attributed to the simulated fertilization effect of rising CO2. The results show significant phenology shifts, in particular an earlier winter-spring onset of grass growth over Europe. A longer growing season is projected over southern and southeastern Europe. In other regions, summer drought causes an earlier end to the growing season, overall reducing growing season length. Future global change allows an increase of management intensity with higher than current potential annual grass forage yield, grazing capacity and livestock density, and a shift in seasonal grazing capacity. We found a continual grassland soil carbon sink in Mediterranean, Alpine, North eastern, South eastern and Eastern regions under specific warming level (SWL) of 1.5 and 2 °C relative to pre-industrial climate. However, this carbon sink is found to saturate, and gradually turn to a carbon source at warming level reaching 3.5 °C.This study provides a European-wide assessment of the future changes in productivity and phenology of grassland, and their consequences for the management intensity and the carbon balance. The simulated productivity increase in response to future global change enables an intensification of grassland management over Europe. However, the simulated increase in the interannual variability of grassland productivity over some regions may reduce the farmers' ability to take advantage of the increased long-term mean productivity in the face of more frequent, and more severe drops of productivity in the future.

Country
France
Keywords

changement climatique, 550, [PHYS.PHYS.PHYS-GEO-PH] Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph], Research, [PHYS.PHYS.PHYS-GEO-PH]Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph], European grassland, phénologie, Environmental sciences, gestion des prairies, [ PHYS.PHYS.PHYS-GEO-PH ] Physics [physics]/Physics [physics]/Geophysics [physics.geo-ph], Phenology, niveau de réchauffement, Warming levels, Climate change, Grassland management, GE1-350

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