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Soil charcoal stability over the Holocene—Response to comments by Mikael Ohlson

Published online by Cambridge University Press:  20 January 2017

Guillaume de Lafontaine*
Affiliation:
INRA, UMR 1202 BIOGECO, F-33610 Cestas, France, Univ. Bordeaux, UMR 1202 BIOGECO, F-33400 Talence, France
Hugo Asselin*
Affiliation:
NSERC/UQAT/UQAM Industrial Chair in Sustainable Forest Management, Université du Québec en Abitibi-Témiscamingue, 445 boulevard de l'Université, Rouyn-Noranda, Québec, Canada, J9X 5E4
*
Corresponding author. Fax: 33 5 57 12 28 81. Email Address:gdelafon@pierroton.inra.fr
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Abstract

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Type
Articles
Copyright
University of Washington

References

Ascough, P.L., Bird, M.I., Francis, S.M., Thornton, B., Midwood, A.J., Scott, A.C. et al. Variability in oxidative degradation of charcoal: influence of production conditions and environmental exposure. Geochimica et Cosmochimica Acta 75, (2011). 23612378.Google Scholar
Asselin, H., and Payette, S. Late Holocene deforestation of a tree line site: estimation of pre-fire vegetation composition and black spruce cover using soil charcoal. Ecography 28, (2005). 801805.Google Scholar
Baldock, J.A., and Smernik, R.J. Chemical composition and bioavailability of thermally altered Pinus resinosa (Red pine) wood. Organic Geochemistry 33, (2002). 10931109.Google Scholar
Carcaillet, C. Are Holocene wood-charcoal fragments stratified in alpine and subalpine soils? Evidence from the Alps based on AMS 14C dates. The Holocene 11, (2001). 231242.Google Scholar
Carcaillet, C., and Talon, B. Aspects taphonomiques de la stratigraphie et de la datation de charbons de bois dans les sols: exemple de quelques sols des Alpes. Géographie physique et Quaternaire 50, (1996). 233244.Google Scholar
de Groot, W.J., Bothwell, P.M., Taylor, S.M., Wotton, B.M., Stocks, B.J., and Alexander, M.E. Jack pine regeneration and crown fires. Canadian Journal of Forest Research 34, (2004). 16341641.Google Scholar
de Lafontaine, G., and Asselin, H. Soil charcoal stability over the Holocene across boreal northeastern North America. Quaternary Research 76, (2011). 196200.CrossRefGoogle Scholar
Johnson, E.A. Fire and Vegetation Dynamics: Studies from the North American Boreal Forest. (1992). Cambridge University Press, Google Scholar
Pietikäinen, J., Kiikkilä, O., and Fritze, H. Charcoal as a habitat for microbes and its effect on the microbial community of the underlying humus. Oikos 89, (2000). 231242.Google Scholar
Preston, C.M., and Schmidt, M.W.I. Black (pyrogenic) carbon: a synthesis of current knowledge and uncertainties with special consideration of boreal regions. Biogeosciences 3, (2006). 397420.Google Scholar
Swift, L.W. Jr., Elliott, K.J., Ottmar, R.D., and Vihnanek, R.E. Site preparation burning to improve southern Appalachian pine-hardwood stands: fire characteristics and soil erosion, moisture, and temperature. Canadian Journal of Forest Research 23, (1993). 22422254.CrossRefGoogle Scholar