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A nitrogen cycle model for calculating the reduction of N-input necessary to reduce soil acidification and nitrate leaching and the consequences of this for wood production

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Abstract

The biogeochemical cycle of elements has been established in a spruce stand in the French Ardennes on a site with a poor acidic soil and a large inputs of nitrogen and sulphate from the atmosphere. This paper shows the interest of studying the seasonal N cycle instead of the global annual cycle, because part of the N input seems to be immobilized in the soil during the dormant season and is released afterwards and taken up during the growing season, and because of the important participation of N inputs in the N-uptake by trees during the growing season. The very large amount of NO3-N leached towards the water table level should be reduced. Using the seasonal cycles, we discuss the relationship between the desirable reduction in the NO3-N output and the N (NH4-N + NO3-N) input. A fertilization trial, including N and Ca, shows a decrease in the wood production after N fertilization. These models give us the opportunity to calculate the reduction of wood production in relation to the reduction of the N input in the ecosystem.

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Bonneau, M., Nys, C. A nitrogen cycle model for calculating the reduction of N-input necessary to reduce soil acidification and nitrate leaching and the consequences of this for wood production. Water Air Soil Pollut 69, 1–20 (1993). https://doi.org/10.1007/BF00478344

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  • DOI: https://doi.org/10.1007/BF00478344

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