Temperature sensitivity of soil carbon decomposition and feedbacks to climate change View Full Text


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Article Info

DATE

2006-03

AUTHORS

Eric A. Davidson, Ivan A. Janssens

ABSTRACT

Significantly more carbon is stored in the world's soils—including peatlands, wetlands and permafrost—than is present in the atmosphere. Disagreement exists, however, regarding the effects of climate change on global soil carbon stocks. If carbon stored belowground is transferred to the atmosphere by a warming-induced acceleration of its decomposition, a positive feedback to climate change would occur. Conversely, if increases of plant-derived carbon inputs to soils exceed increases in decomposition, the feedback would be negative. Despite much research, a consensus has not yet emerged on the temperature sensitivity of soil carbon decomposition. Unravelling the feedback effect is particularly difficult, because the diverse soil organic compounds exhibit a wide range of kinetic properties, which determine the intrinsic temperature sensitivity of their decomposition. Moreover, several environmental constraints obscure the intrinsic temperature sensitivity of substrate decomposition, causing lower observed ‘apparent’ temperature sensitivity, and these constraints may, themselves, be sensitive to climate. More... »

PAGES

165-173

References to SciGraph publications

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  • 2000-01. Will changes in soil organic carbon act as a positive or negative feedback on global warming? in BIOGEOCHEMISTRY
  • 2005-09. Carbon losses from all soils across England and Wales 1978–2003 in NATURE
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  • 1982-07. Soil carbon pools and world life zones in NATURE
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  • 2000-04. Evidence that decomposition rates of organic carbon in mineral soil do not vary with temperature in NATURE
  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1038/nature04514

    DOI

    http://dx.doi.org/10.1038/nature04514

    DIMENSIONS

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    PUBMED

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