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Full adoption of the most effective strategies to mitigate methane emissions by ruminants can help meet the 1.5 °C target by 2030 but not 2050

  • Claudia Arndt
  • , Alexander N. Hristov
  • , William J. Price
  • , Shelby C. McClelland
  • , Amalia M. Pelaez
  • , Sergio F. Cueva
  • , Joonpyo Oh
  • , Jan Dijkstra
  • , André Bannink
  • , Ali R. Bayat
  • , Les A. Crompton
  • , Maguy A. Eugéne
  • , Dolapo Enahoro
  • , Ermias Kebreab
  • , Michael Kreuzer
  • , Mark McGee
  • , Cécile Martin
  • , Charles J. Newbold
  • , Christopher K. Reynolds
  • , Angela Schwarm
  • Kevin J. Shingfield, Jolien B. Veneman, David R. Yáñez-Ruiz, Zhongtang Yu
  • International Livestock Research Institute
  • Pennsylvania State University
  • University of Idaho
  • Wageningen University & Research
  • Luke Natural Resources Institute Finland
  • University of Reading
  • Université Clermont Auvergne
  • University of California at Davis
  • Swiss Federal Institute of Technology Zurich
  • Teagasc - Irish Agriculture and Food Development Authority
  • Scotland's Rural College
  • Norwegian University of Life Sciences
  • De Heus Animal Nutrition B.V.
  • EEZ-CSIC
  • Ohio State University

Research output: Contribution to journalArticlepeer-review

334 Scopus citations

Abstract

To meet the 1.5 °C target, methane (CH4) from ruminants must be reduced by 11 to 30% by 2030 and 24 to 47% by 2050 compared to 2010 levels. A meta-analysis identified strategies to decrease product-based (PB; CH4 per unit meat or milk) and absolute (ABS) enteric CH4 emissions while maintaining or increasing animal productivity (AP; weight gain or milk yield). Next, the potential of different adoption rates of one PB or one ABS strategy to contribute to the 1.5 °C target was estimated. The database included findings from 430 peer-reviewed studies, which reported 98 mitigation strategies that can be classified into three categories: animal and feed management, diet formulation, and rumen manipulation. A random-effects meta-analysis weighted by inverse variance was carried out. Three PB strategies—namely, increasing feeding level, decreasing grass maturity, and decreasing dietary forage-to-concentrate ratio—decreased CH4 per unit meat or milk by on average 12% and increased AP by a median of 17%. Five ABS strategies—namely CH4 inhibitors, tanniferous forages, electron sinks, oils and fats, and oilseeds—decreased daily methane by on average 21%. Globally, only 100% adoption of the most effective PB and ABS strategies can meet the 1.5 °C target by 2030 but not 2050, because mitigation effects are offset by projected increases in CH4 due to increasing milk and meat demand. Notably, by 2030 and 2050, low- and middle-income countries may not meet their contribution to the 1.5 °C target for this same reason, whereas high-income countries could meet their contributions due to only a minor projected increase in enteric CH4 emissions.

Original languageEnglish
Article numbere2111294119
JournalProceedings of the National Academy of Sciences of the United States of America
Volume119
Issue number20
DOIs
StatePublished - May 17 2022

Keywords

  • enteric j mitigation
  • meta-analysis
  • methane
  • ruminant

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