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Fluctuations of Climatic Conditions, Elemental Cycling and Forest Growth at the Watershed Scale
Authors:F Courchesne  A G Roy  P M Biron  B Cote  J Fyles  W H Hendershot
Institution:(1) Département de Géographie, Université de Montréal, Montréal, Québec, Canada;(2) Département de Géographie, Université de Montréal, Montréal, Québec, Canada;(3) Department of Geography, Concordia University, Montréal, Québec, Canada;(4) Department of Natural Resource Sciences, McGill University, Québec, Canada
Abstract:The relationships between fluctuations in climatic conditions,forest productivity and elemental cycling were studied from 1994 to 1997 in a headwater catchment of the southern Laurentians dominated by sugar maple (Acer saccharumMarsh.) growing on podzolic soils. Annual budgets show that H+, K, and NO3 were retained in the watershed whileCa, Mg and Na were lost. The magnitude of the net annual budget for Ca, Mg and Na was correlated to annual variationsin precipitation with the absolute budget value decreasing during dry years. Stemwood (r2 = 0.85) and total tree biomass production (r2 = 0.99) were correlated with mean annual temperature but fine roots and leaf litter werenot. During the growing season, the pH of the organic horizons(FH) decreased as the volumetric water content of soildecreased. A positive association was also found between airtemperature and H2O-soluble (r2 = 0.88) and PO4-extractable (r2 = 0.99) SO4 in the upper B horizon. On a multi-year scale, we suspect that the decreasein the storage of inorganic SO4 in the soil results from the cumulative effects of annual variations in climatic conditions superimposed on the long-term decrease in SO4deposition from the atmosphere. These soil changes were reflected by a decline in SO4, Ca and Mg concentrationsin the stream. The generalisation of the observed short-term patterns to longer time scales must be approached with caution. Yet, our results indicate that the associations between climatic variations and the biogeochemistry of the ecosystem occur at different spatial and temporal scales and integrate abroad range of chemical components and ecosystem compartments. This reflects the inherent complexity of natural systems and offers a vast palette of indicators of the response of terrestrial ecosystems to variations in the intensity of environmental factors such as climatic conditions.
Keywords:biogeochemistry  biomass production  climaticconditions  forest soils  nutrient cycling  streamwater
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