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Methane emissions from cattle

Journal of Animal Science · 1995 · Vol. 73(8) · pp. 2483–2492
Kristen JohnsonDonald E. Johnson

Abstract

Increasing atmospheric concentrations of methane have led scientists to examine its sources of origin. Ruminant livestock can produce 250 to 500 L of methane per day. This level of production results in estimates of the contribution by cattle to global warming that may occur in the next 50 to 100 yr to be a little less than 2%. Many factors influence methane emissions from cattle and include the following: level of feed intake, type of carbohydrate in the diet, feed processing, addition of lipids or ionophores to the diet, and alterations in the ruminal microflora. Manipulation of these factors can reduce methane emissions from cattle. Many techniques exist to quantify methane emissions from individual or groups of animals. Enclosure techniques are precise but require trained animals and may limit animal movement. Isotopic and nonisotopic tracer techniques may also be used effectively. Prediction equations based on fermentation balance or feed characteristics have been used to estimate methane production. These equations are useful, but the assumptions and conditions that must be met for each equation limit their ability to accurately predict methane production. Methane production from groups of animals can be measured by mass balance, micrometeorological, or tracer methods. These techniques can measure methane emissions from animals in either indoor or outdoor enclosures. Use of these techniques and knowledge of the factors that impact methane production can result in the development of mitigation strategies to reduce methane losses by cattle. Implementation of these strategies should result in enhanced animal productivity and decreased contributions by cattle to the atmospheric methane budget.

Ruminant Nutrition and Digestive PhysiologyAtmospheric and Environmental Gas DynamicsOdor and Emission Control TechnologiesMethaneEnvironmental scienceMethane emissionsRuminantLivestockMaterial balanceAtmospheric methaneGreenhouse gasProduction (economics)Atmospheric sciences

MeSH terms

AnimalsAnimal FeedAtmosphereCattleCattle DiseasesChromatography, GasDietEatingEructationFemaleFermentationMethaneRumenMass SpectrometryGreenhouse Effect
Citations
2,655
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7.15
field-weighted impact
References
38
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97%
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Citations per year
References
Prediction of the amount of methane produced by ruminants
British Journal Of Nutrition · 1965 · 922 citations
Design and development of a long-term rumen simulation technique (Rusitec)
British Journal Of Nutrition · 1977 · 569 citations
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