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Methane emission from global livestock sector during 1890–2014: Magnitude, trends and spatiotemporal patterns

Shree R. S. Dangal; Hanqin Tian; Bowen Zhang; Shufen Pan; Chaoqun Lu; Jia Yang
Global Change Biology · Vol. 23, Issue 10 · pp. 4147-4161 · 2017

Abstract

Human demand for livestock products has increased rapidly during the past few decades largely due to dietary transition and population growth, with significant impact on climate and the environment. The contribution of ruminant livestock to greenhouse gas ( GHG ) emissions has been investigated extensively at various scales from regional to global, but the long‐term trend, regional variation and drivers of methane ( CH 4 ) emission remain unclear. In this study, we use Intergovernmental Panel on Climate Change ( IPCC ) Tier II guidelines to quantify the evolution of CH 4 emissions from ruminant livestock during 1890–2014. We estimate that total CH 4 emissions in 2014 was 97.1 million tonnes (MT) CH 4 or 2.72 Gigatonnes (Gt) CO 2 ‐eq (1 MT = 10 12 g, 1 Gt = 10 15 g) from ruminant livestock, which accounted for 47%–54% of all non‐ CO 2 GHG emissions from the agricultural sector. Our estimate shows that CH 4 emissions from the ruminant livestock had increased by 332% (73.6 MT CH 4 or 2.06 Gt CO 2 ‐eq) since the 1890s. Our results further indicate that livestock sector in drylands had 36% higher emission intensity ( CH 4 emissions/km 2 ) compared to that in nondrylands in 2014, due to the combined effect of higher rate of increase in livestock population and low feed quality. We also find that the contribution of developing regions (Africa, Asia and Latin America) to the total CH 4 emissions had increased from 51.7% in the 1890s to 72.5% in the 2010s. These changes were driven by increases in livestock numbers ( LU units) by up to 121% in developing regions, but decreases in livestock numbers and emission intensity (emission/km 2 ) by up to 47% and 32%, respectively, in developed regions. Our results indicate that future increases in livestock production would likely contribute to higher CH 4 emissions, unless effective strategies to mitigate GHG emissions in livestock system are implemented.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2017-10-01
Publication Year2017
Volume23
Issue10
Pages4147-4161
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/gcb.13709
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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