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The effect of harvesting intensity on the fate of applied 15N-ammonium to the organic horizons of a coniferous forest in N. Wales
Authors:B. A. Emmett  C. Quarmby
Affiliation:(1) Institute of Terrestrial Ecology (South), Bangor Research Unit, UCNW, Deiniol Rd., Bangor, Gwynedd, LL57 2UP, UK;(2) Institute of Terrestrial Ecology (North), Merlewood Research Station, Grange-over Sands, Cumbria, LA11 6JU, UK
Abstract:15N-ammonium sulphate equivalent to 0.5 kg N/ha was added as a tracer to lysimeters containing the organic horizons of an acid forest soil. The effect of logging debris (brash), vegetation and second rotationPicea sitchensis seedlings on the amount of the15N found in various soil, vegetation and leachate pools was followed over a period of 60 days. Transformation of15N-ammonium to nitrate occurred within 24 hours. Although total nitrate leachate losses were high, tracer-derived nitrate represented only 0.4%–4.2% of the applied15N-ammonium. The atom % excess of the KCI-extractable organic-N pool was initially lower than for the inorganic species but due to the large pool size, consistently represented 3–6% of the applied15N-ammonium. The similarity of the atom % excess of the ammonium and nitrate pools indicated an autotrophic nitrification pathway.A significant proportion of the15N-ammonium passed through the microbial biomass which contained between 16 and 48% of the15N-ammonium 2 days after addition of the15N-ammonium. This nitrogen was in a readily available form or short-term pool for the first two weeks (with no change in the overall biomass pool), after which the nitrogen appeared to become transformed into more stable compounds representing a long-term pool. Total recovery of the15N was between 68% and 99% for the different treatments. The presence of brash reduced microbial immobilisation of the15N-ammonium and total retention in the organic matter. This is suggested to be a consequence of greater nitrification and denitrificatiion rate in organic horizons beneath a brash covering due to different microclimatic conditions.
Keywords:15N-ammonium sulphate  forest soil  nitrification  microbial biomass  clear-felling  Sitka spruce
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