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      Potential for reduced methane and carbon dioxide emissions from livestock and pasture management in the tropics.

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          Abstract

          We estimate the potential reductions in methane and carbon dioxide emissions from several livestock and pasture management options in the mixed and rangeland-based production systems in the tropics. The impacts of adoption of improved pastures, intensifying ruminant diets, changes in land-use practices, and changing breeds of large ruminants on the production of methane and carbon dioxide are calculated for two levels of adoption: complete adoption, to estimate the upper limit to reductions in these greenhouse gases (GHGs), and optimistic but plausible adoption rates taken from the literature, where these exist. Results are expressed both in GHG per ton of livestock product and in Gt CO(2)-eq. We estimate that the maximum mitigation potential of these options in the land-based livestock systems in the tropics amounts to approximately 7% of the global agricultural mitigation potential to 2030. Using historical adoption rates from the literature, the plausible mitigation potential of these options could contribute approximately 4% of global agricultural GHG mitigation. This could be worth on the order of $1.3 billion per year at a price of $20 per t CO(2)-eq. The household-level and sociocultural impacts of some of these options warrant further study, however, because livestock have multiple roles in tropical systems that often go far beyond their productive utility.

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          Author and article information

          Journal
          Proc. Natl. Acad. Sci. U.S.A.
          Proceedings of the National Academy of Sciences of the United States of America
          1091-6490
          0027-8424
          Nov 16 2010
          : 107
          : 46
          Affiliations
          [1 ] Consultative Group on International Agricultural Research/Earth System Science Partnership Challenge Program on Climate Change, Agriculture & Food Security, University of Copenhagen, DK-1958 Frederiksberg, Denmark. P.THORNTON@cgiar.org
          Article
          0912890107
          10.1073/pnas.0912890107
          20823225
          12e26f46-7d72-4572-8df3-737c231b84a1
          History

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