Climate change mitigation through livestock system transitions

Смягчение последствий изменения климата посредством трансформации животноводческих систем
Mario Herrero, Michael Obersteiner, Peter Havlík, Mariana C. Rufino, Florian Kraxner, Sabine Fuss, Erwin Schmid, Philip K. Thornton, Stefan Frank, Aline Mosnier, Hugo Valin, Steffen Fritz, An Notenbaert, Richard T. Conant, Hannes Böttcher
2014-02-24

climate mitigation policiesgreenhouse gas emissionsland-use changelivestock system transitionssustainable intensification
Livestock are responsible for 12% of anthropogenic greenhouse gas emissions. Sustainable intensification of livestock production systems might become a key climate mitigation technology. However, livestock production systems vary substantially, making the implementation of climate mitigation policies a formidable challenge. Here, we provide results from an economic model using a detailed and high-resolution representation of livestock production systems. We project that by 2030 autonomous transitions toward more efficient systems would decrease emissions by 736 million metric tons of carbon dioxide equivalent per year (MtCO2e⋅y(-1)), mainly through avoided emissions from the conversion of 162 Mha of natural land. A moderate mitigation policy targeting emissions from both the agricultural and land-use change sectors with a carbon price of US$10 per tCO2e could lead to an abatement of 3,223 MtCO2e⋅y(-1). Livestock system transitions would contribute 21% of the total abatement, intra- and interregional relocation of livestock production another 40%, and all other mechanisms would add 39%. A comparable abatement of 3,068 MtCO2e⋅y(-1) could be achieved also with a policy targeting only emissions from land-use change. Stringent climate policies might lead to reductions in food availability of up to 200 kcal per capita per day globally. We find that mitigation policies targeting emissions from land-use change are 5 to 10 times more efficient--measured in "total abatement calorie cost"--than policies targeting emissions from livestock only. Thus, fostering transitions toward more productive livestock production systems in combination with climate policies targeting the land-use change appears to be the most efficient lever to deliver desirable climate and food availability outcomes.
1
A moderate US$10 per tCO2e carbon price covering agricultural and land-use-change emissions could abate 3,223 MtCO2e per year.
2
By 2030, autonomous transitions toward more efficient livestock systems could reduce emissions by 736 MtCO2e per year, largely by avoiding conversion of 162 million hectares of natural land.
3
Land-use-change mitigation policies are 5–10 times more efficient in total abatement calorie cost than livestock-only policies, although stringent policies could reduce global food availability by up to 200 kcal per capita daily.
4
Livestock production accounts for 12% of anthropogenic greenhouse gas emissions, while substantial variation among production systems complicates mitigation policy implementation.
5
Livestock system transitions would provide 21% of total abatement, livestock relocation 40%, and other mechanisms 39%; targeting land-use change alone could achieve 3,068 MtCO2e per year.

livestock production systems and their transitions

greenhouse-gas emission mitigation, land-use change, production relocation, and food-availability trade-offs under climate policies

Publication Details
Publication Date
2014-02-24
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Authors
Mario Herrero
Michael Obersteiner
Peter Havlík
Mariana C. Rufino
Florian Kraxner
Sabine Fuss
Erwin Schmid
Philip K. Thornton
Stefan Frank
Aline Mosnier
Hugo Valin
Steffen Fritz
An Notenbaert
Richard T. Conant
Hannes Böttcher
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