Abstract
On a heavily karstified site in the Northern Limestone Alps (Austria), nutrient budgets and leaching in Norway spruce stands were investigated along a chronosequence (clearcut, 10-year-old plantation (25% cover of planted and naturally regenerated spruce and larch, 75% weed cover) and mature stand). The soils were Lithic Leptosols on very pure limestone. Nutrient fluxes were studied during three growth periods (4–5 months each). Despite of inorganic nitrogen inputs from precipitation between 5 and 10 kg ha−1, inorganic nitrogen output with seepage water from the mature stand and the regeneration plot was only 0.5–1.2 kg ha−1 during these periods. In the first and second growth periods after clearcut, inorganic N fluxes with seepage increased to 20 and 30 kg ha−1, respectively, declining in the third growth period to 8 kg ha−1. DON output during the growth period was between 3 and 6 kg ha−1 in the mature stand and 7 and 11 kg ha−1 in the clearcut as well as in the regeneration plot. K output rates achieved 30 kg ha−1 in the first, 20 kg ha−1 in the second and 9 kg ha−1 in the third growth period after clear-cutting while output rates during the growth periods were less than 2 kg ha−1 in the mature stand and in the regeneration plot. K pools in the humus layer were only 150–210 kg ha−1, total K pools including above and below ground biomass in the mature stand were 360 kg ha−1. Thus, post-harvest hydrological losses comprise a substantial depletion of K for this specific ecosystem. Since precipitation is high in this area (1400 mm a−1), forest growth is limited by nutrient rather than by water supply. Needle analyses already indicate a deficient potassium supply. Harvesting and post-harvesting losses of K in combination with elevated nitrogen deposition may have negative influences on the stability of forest stands on the studied sites.
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Katzensteiner, K. Effects of harvesting on nutrient leaching in a Norway spruce (Picea abies Karst.) ecosystem on a Lithic Leptosol in the Northern Limestone Alps. Plant and Soil 250, 59–73 (2003). https://doi.org/10.1023/A:1022821913932
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DOI: https://doi.org/10.1023/A:1022821913932