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Greenhouse gas mitigation in agriculture

Pete SmithDaniel MartinoZucong CaiD. M. GwaryH. H. JanzenPushpam KumarBruce A. McCarlStephen M. OgleF.P. O’MaraCharles W. RiceRobert J. ScholesO. D. SirotenkoMark HowdenTim A. McAllisterGenxing PanВ. А. РоманенковUwe A. SchneiderSirintornthep TowprayoonM. WattenbachJo Smith

Abstract

Agricultural lands occupy 37% of the earth's land surface. Agriculture accounts for 52 and 84% of global anthropogenic methane and nitrous oxide emissions. Agricultural soils may also act as a sink or source for CO2, but the net flux is small. Many agricultural practices can potentially mitigate greenhouse gas (GHG) emissions, the most prominent of which are improved cropland and grazing land management and restoration of degraded lands and cultivated organic soils. Lower, but still significant mitigation potential is provided by water and rice management, set-aside, land use change and agroforestry, livestock management and manure management. The global technical mitigation potential from agriculture (excluding fossil fuel offsets from biomass) by 2030, considering all gases, is estimated to be approximately 5500-6000Mt CO2-eq.yr-1, with economic potentials of approximately 1500-1600, 2500-2700 and 4000-4300Mt CO2-eq.yr-1 at carbon prices of up to 20, up to 50 and up to 100 US$ t CO2-eq.-1, respectively. In addition, GHG emissions could be reduced by substitution of fossil fuels for energy production by agricultural feedstocks (e.g. crop residues, dung and dedicated energy crops). The economic mitigation potential of biomass energy from agriculture is estimated to be 640, 2240 and 16 000Mt CO2-eq.yr-1 at 0-20, 0-50 and 0-100 US$ t CO2-eq.-1, respectively.

Soil Carbon and Nitrogen DynamicsBioenergy crop production and managementEnvironmental Impact and SustainabilityGreenhouse gasEnvironmental scienceAgricultureManure managementFossil fuelBiomass (ecology)ManureAgricultural landEnvironmental impact of agricultureAgroforestry

MeSH terms

AgricultureAnimalsAnimal HusbandryCarbon DioxideCost-Benefit AnalysisEnergy-Generating ResourcesHumansManureGreenhouse EffectEcosystemBiomassCrops, Agricultural
Citations
2,490
FWCI
71.86
field-weighted impact
References
189
Percentile
100%
vs. same field & year
Citations per year
References
Soil Organic Carbon Sequestration Rates by Tillage and Crop Rotation
Soil Science Society of America Journal · 2002 · 2,170 citations
Methane emissions from cattle
Journal of Animal Science · 1995 · 2,655 citations
GRASSLAND MANAGEMENT AND CONVERSION INTO GRASSLAND: EFFECTS ON SOIL CARBON
Ecological Applications · 2001 · 1,334 citations
Prediction of the amount of methane produced by ruminants
British Journal Of Nutrition · 1965 · 922 citations
Selection Indices in Holstein Cattle of Various Countries
Journal of Dairy Science · 2005 · 665 citations
The Nitrogen Cascade
BioScience · 2003 · 2,872 citations
Soil carbon stocks and land use change: a meta analysis
Global Change Biology · 2002 · 3,880 citations
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