Increasing beef production could lower greenhouse gas emissions in Brazil if decoupled from deforestation

被引:0
|
作者
De Oliveira Silva R. [1 ,2 ]
Barioni L.G. [3 ]
Hall J.A.J. [1 ]
Folegatti Matsuura M. [4 ]
Zanett Albertini T. [5 ]
Fernandes F.A. [6 ]
Moran D. [2 ]
机构
[1] School of Mathematics, University of Edinburgh, Mayfield Road
[2] Research Division, SRUC, West Mains Road, Edinburgh
[3] Embrapa Agriculture Informatics, Campinas-SP
[4] Embrapa Environment, Jaguariúna-São Paulo
[5] Luiz de Queiroz College of Agriculture, University of Sao Paulo (ESALQ/USP), Piracicaba, São Paulo
[6] Embrapa Pantanal, Corumbá-Mato Grosso do Sul
基金
英国经济与社会研究理事会;
关键词
D O I
10.1038/nclimate2916
中图分类号
学科分类号
摘要
Recent debate about agricultural greenhouse gas emissions mitigation highlights trade-offs inherent in the way we produce and consume food, with increasing scrutiny on emissions-intensive livestock products. Although most research has focused on mitigation through improved productivity, systemic interactions resulting from reduced beef production at the regional level are still unexplored. A detailed optimization model of beef production encompassing pasture degradation and recovery processes, animal and deforestation emissions, soil organic carbon (SOC) dynamics and upstream life-cycle inventory was developed and parameterized for the Brazilian Cerrado. Economic return was maximized considering two alternative scenarios: decoupled livestock-deforestation (DLD), assuming baseline deforestation rates controlled by effective policy; and coupled livestock-deforestation (CLD), where shifting beef demand alters deforestation rates. In DLD, reduced consumption actually leads to less productive beef systems, associated with higher emissions intensities and total emissions, whereas increased production leads to more efficient systems with boosted SOC stocks, reducing both per kilogram and total emissions. Under CLD, increased production leads to 60% higher emissions than in DLD. The results indicate the extent to which deforestation control contributes to sustainable intensification in Cerrado beef systems, and how alternative life-cycle analytical approaches result in significantly different emission estimates. © 2016 Macmillan Publishers Limited. All rights reserved.
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页码:493 / 497
页数:4
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