期刊
ATMOSPHERIC ENVIRONMENT
卷 43, 期 4, 页码 915-920出版社
PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.atmosenv.2008.10.045
关键词
Ammonia; Dispersion; Deposition; Biomonitors; OML-DEP model
Substantial emission of ammonia (NH3) from animal houses and the related high local deposition of NH3-N are a threat to semi-natural nitrogen-deficient ecosystems Situated near the NH3 Source. In Denmark, there are regulations limiting the level of NH3 emission from livestock houses near N-deficient ecosystems that are likely to change due to nitrogen (N) enrichment caused by NH3 deposition. The models used for assessing NH3 emission from livestock production, therefore, need to be precise, as the regulation will affect both the nature of the ecosystem and the economy of the farmer. Therefore a Study was carried Out with the objective of validating the Danish model used to monitor NH3 transport, dispersion and deposition from and in the neighbourhood of a chicken farm. In the Study we measured NH3 emission with standard flux measuring methods, NH3 concentrations at increasing distances front the chicken houses using passive diffusion samplers and deposition using N-15-enriched biomonitors and held plot studies. The dispersion and deposition of NH3 were modelled using the Danish OML-DEP model. It was also shown that model calculations clearly reflect the measured NH3 concentration and N deposition. Deposition of N measured by biomonitors clearly reflected the variation in NH3 concentrations and showed that deposition was not significantly different from zero (P < 0.05) at distances greater than 150-200 m from these chicken houses. Calculations confirmed this, as Calculated N deposition 320 m away from the chicken farm was only marginally affected by the NH3 emission front the farm. There was agreement between calculated and measured deposition showing that the model gives true estimates of the deposition in the neighbourhood of a livestock house emitting NH3. (C) 2008 Elsevier Ltd. All rights reserved.
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