Assessment of the contribution of denitrification to N losses from compacted grassland soil by NO sub(3) super(-) disappearance and N sub(2)O production during anaerobic incubation
Decreases in herbage production and of N uptake and utilization have been observed on Denbigh series soils in mid-Wales after several years in permanent pasture. Laboratory experiments were conducted to examine the contribution of denitrification to N loss from these wet grassland soils. Denitrifica...
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Published in: | Canadian journal of soil science Vol. 79; no. 1; pp. 57 - 64 |
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Main Authors: | , |
Format: | Journal Article |
Language: | English |
Published: |
01-02-1999
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Online Access: | Get full text |
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Summary: | Decreases in herbage production and of N uptake and utilization have been observed on Denbigh series soils in mid-Wales after several years in permanent pasture. Laboratory experiments were conducted to examine the contribution of denitrification to N loss from these wet grassland soils. Denitrification capacity was measured in seived soil following the addition of KNO sub(3) and maintained at 20 degree C under anoxic conditions. Emission of N sub(2)O was measured from intact field cores equilibrated under conditions of simulated "field capacity" using glucose as C substrate. The rate of loss of NO sub(3) super(-)-N decreased with depth and in the 0-2.5 cm layer all added NO sub(3) super(-)-N was lost in 10 d incubation. Net mineralization of NH sub(4) super(+)-N occurred at about one-sixth of the rate of NO sub(3) super(-)-N disappearance. The presence of NO sub(3) super(-) reduced the rate of decrease in redox potential (E sub(h)) and the E sub(h) did not fall below about +200 mV until all NO sub(3) super(-)-N had been lost. Emission of N sub(2)O was greatest between 6 and 48 h and denitrification rate decreased with depth. Addition of glucose increased N sub(2)O emission in the 2.5-5.7 cm layers indicating that C limitation to denitrification may occur at shallow depths in the soil profile of compacted grassland. On average, the total denitrification ranged between 15 and 20 kg N ha super(-1), equivalent to 20-30% of applied N. The potential rates of denitrification change markedly over quite shallow depths in these compacted grassland soils. Furthermore, since denitrification occurred at substantial rates under simulated field capacity, conditions conducive to denitrification are likely to persist for quite long periods in the moist climatic conditions. |
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Bibliography: | ObjectType-Article-2 SourceType-Scholarly Journals-1 content type line 23 ObjectType-Feature-1 |
ISSN: | 0008-4271 |