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Quantification of methane emitted by ruminants: a review of methods

  • Luis Orlindo Tedeschi
  • , Adibe Luiz Abdalla
  • , Clementina Álvarez
  • , Samuel Weniga Anuga
  • , Jacobo Arango
  • , Karen A. Beauchemin
  • , Philippe Becquet
  • , Alexandre Berndt
  • , Robert Burns
  • , Camillo De Camillis
  • , Julián Chará
  • , Javier Martin Echazarreta
  • , MCrossed D.sign©lynda Hassouna
  • , David Kenny
  • , Michael Mathot
  • , Rogerio M. Mauricio
  • , Shelby C. Mcclelland
  • , Mutian Niu
  • , Alice Anyango Onyango
  • , Ranjan Parajuli
  • Luiz Gustavo Ribeiro Pereira, Agustin Del Prado, Maria Paz Tieri, Aimable Uwizeye, Ermias Kebreab
  • Texas A&M University
  • Universidade de São Paulo
  • TINE SA
  • European University Institute, San Domenico di Fiesole
  • Centro Internacional de Agricultura Tropical
  • Agriculture and Agri-Food Canada
  • International Feed Industry Federation
  • Empresa Brasileira de Pesquisa Agropecuária
  • University of Tennessee
  • Food and Agriculture Organization of the United Nations
  • CIPAV
  • Instituto Nacional de Tecnología Industrial
  • Institut Agro / Inrae / Ifremer
  • Teagasc - Irish Agriculture and Food Development Authority
  • Centre wallon de recherches agronomiques
  • Universidade Federal de São João del-Rei
  • Swiss Federal Institute of Technology Zurich
  • International Livestock Research Institute
  • Maseno University
  • EcoEngineers
  • BC3 Basque Centre for Climate Change
  • Ikerbasque Basque Foundation for Science
  • Instituto Nacional de Tecnología Agropecuaria
  • University of California at Davis

Research output: Contribution to journalArticlepeer-review

109 Scopus citations

Abstract

The contribution of greenhouse gas (GHG) emissions from ruminant production systems varies between countries and between regions within individual countries. The appropriate quantification of GHG emissions, specifically methane (CH4), has raised questions about the correct reporting of GHG inventories and, perhaps more importantly, how best to mitigate CH4 emissions. This review documents existing methods and methodologies to measure and estimate CH4 emissions from ruminant animals and the manure produced therein over various scales and conditions. Measurements of CH4 have frequently been conducted in research settings using classical methodologies developed for bioenergetic purposes, such as gas exchange techniques (respiration chambers, headboxes). While very precise, these techniques are limited to research settings as they are expensive, labor-intensive, and applicable only to a few animals. Head-stalls, such as the GreenFeed system, have been used to measure expired CH4 for individual animals housed alone or in groups in confinement or grazing. This technique requires frequent animal visitation over the diurnal measurement period and an adequate number of collection days. The tracer gas technique can be used to measure CH4 from individual animals housed outdoors, as there is a need to ensure low background concentrations. Micrometeorological techniques (e.g., open-path lasers) can measure CH4 emissions over larger areas and many animals, but limitations exist, including the need to measure over more extended periods. Measurement of CH4 emissions from manure depends on the type of storage, animal housing, CH4 concentration inside and outside the boundaries of the area of interest, and ventilation rate, which is likely the variable that contributes the greatest to measurement uncertainty. For large-scale areas, aircraft, drones, and satellites have been used in association with the tracer flux method, inverse modeling, imagery, and LiDAR (Light Detection and Ranging), but research is lagging in validating these methods. Bottom-up approaches to estimating CH4 emissions rely on empirical or mechanistic modeling to quantify the contribution of individual sources (enteric and manure). In contrast, top-down approaches estimate the amount of CH4 in the atmosphere using spatial and temporal models to account for transportation from an emitter to an observation point. While these two estimation approaches rarely agree, they help identify knowledge gaps and research requirements in practice.

Original languageEnglish
Article numberskac197
JournalJournal of Animal Science
Volume100
Issue number7
DOIs
StatePublished - Jul 1 2022

Keywords

  • estimates
  • greenhouse gas
  • livestock
  • measurements
  • quantification
  • sustainability

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