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      Partitioning of the net CO2 exchange using an automated chamber system reveals plant phenology as key control of production and respiration fluxes in a boreal peatland

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          Temperature sensitivity of soil carbon decomposition and feedbacks to climate change.

          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.
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            Northern Peatlands: Role in the Carbon Cycle and Probable Responses to Climatic Warming

             Eville Gorham (1991)
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              Simple means to improve the interpretability of regression coefficients

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                Author and article information

                Affiliations
                [1 ]Department of Forest Ecology & Management; Swedish University of Agricultural Sciences; Umeå Sweden
                [2 ]Department of Geological Sciences; Stockholm University; Stockholm Sweden
                [3 ]Bolin Center for Climate Research; Stockholm Sweden
                Journal
                Global Change Biology
                Glob Change Biol
                Wiley
                13541013
                August 2018
                August 2018
                May 24 2018
                : 24
                : 8
                : 3436-3451
                10.1111/gcb.14292
                © 2018

                http://doi.wiley.com/10.1002/tdm_license_1.1

                http://onlinelibrary.wiley.com/termsAndConditions#vor

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