Grassland management impacts on soil carbon stocks: a new synthesis

Grassland ecosystems cover a large portion of Earths' surface and contain substantial amounts of soil organic carbon. Previous work has established that these soil carbon stocks are sensitive to management and land use changes: grazing, species composition, and mineral nutrient availability can...

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Published inEcological applications Vol. 27; no. 2; p. 662
Main Authors Conant, Richard T, Cerri, Carlos E P, Osborne, Brooke B, Paustian, Keith
Format Journal Article
LanguageEnglish
Published United States 01.03.2017
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Abstract Grassland ecosystems cover a large portion of Earths' surface and contain substantial amounts of soil organic carbon. Previous work has established that these soil carbon stocks are sensitive to management and land use changes: grazing, species composition, and mineral nutrient availability can lead to losses or gains of soil carbon. Because of the large annual carbon fluxes into and out of grassland systems, there has been growing interest in how changes in management might shift the net balance of these flows, stemming losses from degrading grasslands or managing systems to increase soil carbon stocks (i.e., carbon sequestration). A synthesis published in 2001 assembled data from hundreds of studies to document soil carbon responses to changes in management. Here we present a new synthesis that has integrated data from the hundreds of studies published after our previous work. These new data largely confirm our earlier conclusions: improved grazing management, fertilization, sowing legumes and improved grass species, irrigation, and conversion from cultivation all tend to lead to increased soil C, at rates ranging from 0.105 to more than 1 Mg C·ha ·yr . The new data include assessment of three new management practices: fire, silvopastoralism, and reclamation, although these studies are limited in number. The main area in which the new data are contrary to our previous synthesis is in conversion from native vegetation to grassland, where we find that across the studies the average rate of soil carbon stock change is low and not significant. The data in this synthesis confirm that improving grassland management practices and conversion from cropland to grassland improve soil carbon stocks.
AbstractList Grassland ecosystems cover a large portion of Earths' surface and contain substantial amounts of soil organic carbon. Previous work has established that these soil carbon stocks are sensitive to management and land use changes: grazing, species composition, and mineral nutrient availability can lead to losses or gains of soil carbon. Because of the large annual carbon fluxes into and out of grassland systems, there has been growing interest in how changes in management might shift the net balance of these flows, stemming losses from degrading grasslands or managing systems to increase soil carbon stocks (i.e., carbon sequestration). A synthesis published in 2001 assembled data from hundreds of studies to document soil carbon responses to changes in management. Here we present a new synthesis that has integrated data from the hundreds of studies published after our previous work. These new data largely confirm our earlier conclusions: improved grazing management, fertilization, sowing legumes and improved grass species, irrigation, and conversion from cultivation all tend to lead to increased soil C, at rates ranging from 0.105 to more than 1 Mg C·ha ·yr . The new data include assessment of three new management practices: fire, silvopastoralism, and reclamation, although these studies are limited in number. The main area in which the new data are contrary to our previous synthesis is in conversion from native vegetation to grassland, where we find that across the studies the average rate of soil carbon stock change is low and not significant. The data in this synthesis confirm that improving grassland management practices and conversion from cropland to grassland improve soil carbon stocks.
Author Conant, Richard T
Paustian, Keith
Osborne, Brooke B
Cerri, Carlos E P
Author_xml – sequence: 1
  givenname: Richard T
  surname: Conant
  fullname: Conant, Richard T
  organization: Institute for Future Environments, Queensland University of Technology, Brisbane, Queensland, Australia
– sequence: 2
  givenname: Carlos E P
  surname: Cerri
  fullname: Cerri, Carlos E P
  organization: Unversidade de São Paulo, Piracicaba, Brazil
– sequence: 3
  givenname: Brooke B
  surname: Osborne
  fullname: Osborne, Brooke B
  organization: Natural Resource Ecology Laboratory, Colorado State University, 1499 Campus Delivery, Fort Collins, Colorado, 80523, USA
– sequence: 4
  givenname: Keith
  surname: Paustian
  fullname: Paustian, Keith
  organization: Natural Resource Ecology Laboratory, Colorado State University, 1499 Campus Delivery, Fort Collins, Colorado, 80523, USA
BackLink https://www.ncbi.nlm.nih.gov/pubmed/27875004$$D View this record in MEDLINE/PubMed
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Keywords soil land use
management
carbon
sequestration
grassland
Language English
License 2016 by the Ecological Society of America.
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PublicationTitle Ecological applications
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Snippet Grassland ecosystems cover a large portion of Earths' surface and contain substantial amounts of soil organic carbon. Previous work has established that these...
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StartPage 662
SubjectTerms Carbon - analysis
Conservation of Natural Resources
Grassland
Soil - chemistry
Title Grassland management impacts on soil carbon stocks: a new synthesis
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