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Critical review of the impacts of grazing intensity on soil organic carbon storage and other soil quality indicators in extensively managed grasslands

Agriculture Ecosystems & Environment · 2017 · Vol. 253 · pp. 62–81
Mohamed AbdallaAstley HastingsDavid R. ChadwickDavey L. JonesChris EvansMike JonesRobert M. ReesPete Smith

Abstract

Livestock grazing intensity (GI) is thought to have a major impact on soil organic carbon (SOC) storage and soil quality indicators in grassland agroecosystems. To critically investigate this, we conducted a global review and meta-analysis of 83 studies of extensive grazing, covering 164 sites across different countries and climatic zones. Unlike previous published reviews we normalized the SOC and total nitrogen (TN) data to a 30 cm depth to be compatible with IPCC guidelines. We also calculated a normalized GI and divided the data into four main groups depending on the regional climate (dry warm, DW; dry cool, DC; moist warm, MW; moist cool, MC). Our results show that taken across all climatic zones and GIs, grazing (below the carrying capacity of the systems) results in a decrease in SOC storage, although its impact on SOC is climate-dependent. When assessed for different regional climates, all GI levels increased SOC stocks under the MW climate (+7.6%) whilst there were reductions under the MC climate (-19%). Under the DW and DC climates, only the low (+5.8%) and low to medium (+16.1%) grazing intensities, respectively, were associated with increased SOC stocks. High GI significantly increased SOC for C4-dominated grassland compared to C3-dominated grassland and C3-C4 mixed grasslands. It was also associated with significant increases in TN and bulk density but had no effect on soil pH. To protect grassland soils from degradation, we recommend that GI and management practices should be optimized according to climate region and grassland type (C3, C4 or C3-C4 mixed).

Soil Carbon and Nitrogen DynamicsSoil and Unsaturated FlowEcology and Vegetation Dynamics StudiesGrazingGrasslandEnvironmental scienceSoil carbonAgroecosystemSoil qualityClimate changeAgronomyAgroforestrySoil water

Funding

  • City University of Hong Kong
  • Newton Fund
  • Scottish Government
  • Belmont Forum
  • Sight Research UK
  • Biotechnology and Biological Sciences Research Council
  • Natural Environment Research Council
Citations
500
FWCI
31.09
field-weighted impact
References
156
Percentile
100%
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Citations per year
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References
GRASSLAND MANAGEMENT AND CONVERSION INTO GRASSLAND: EFFECTS ON SOIL CARBON
Ecological Applications · 2001 · 1,334 citations
The worldwide leaf economics spectrum
Nature · 2004 · 8,567 citations
Greenhouse gas mitigation in agriculture
Philosophical Transactions of the Royal Society B Biological Sciences · 2007 · 2,490 citations
Effects of grazing on grassland soil carbon: a global review
Global Change Biology · 2013 · 791 citations
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