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Concentration-dependent NH3 deposition processes for moorland plant species with and without stomata

Authors :
Jones, M.R.
Leith, I.D.
Raven, J.A.
Fowler, D.
Sutton, M.A.
Nemitz, E.
Cape, J.N.
Sheppard, L.J.
Smith, R.I.
Source :
Atmospheric Environment. Dec2007, Vol. 41 Issue 39, p8980-8994. 15p.
Publication Year :
2007

Abstract

Currently, in operational modelling of NH3 deposition a fixed value of canopy resistance (R c) is generally applied, irrespective of the plant species and NH3 concentration. This study determined the effect of NH3 concentration on deposition processes to individual moorland species. An innovative flux chamber system was used to provide accurate continuous measurements of NH3 deposition to Deschampsia cespitosa (L.) Beauv., Calluna vulgaris (L.) Hull, Eriophorum vaginatum L., Cladonia spp., Sphagnum spp., and Pleurozium schreberi (Brid.) Mitt. Measurements were conducted across a wide range of NH3 concentrations (1–140μgm−3). NH3 concentration directly affects the deposition processes to the vegetation canopy, with R c, and cuticular resistance (R w) increasing with increasing NH3 concentration, for all the species and vegetation communities tested. For example, the R c for C. vulgaris increased from 14sm−1 at 2μgm−3 to 112sm−1 at 80μgm−3. Diurnal variations in NH3 uptake were observed for higher plants, due to stomatal uptake; however, no diurnal variations were shown for non-stomatal plants. R c for C. vulgaris at 80μgm−3 was 66 and 112sm−1 during day and night, respectively. Differences were found in NH3 deposition between plant species and vegetation communities: Sphagnum had the lowest R c (3sm−1 at 2μgm−3 to 23 at 80μgm−3), and D. cespitosa had the highest nighttime value (18sm−1 at 2μgm−3 to 197sm−1 at 80μgm−3). [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
13522310
Volume :
41
Issue :
39
Database :
Academic Search Index
Journal :
Atmospheric Environment
Publication Type :
Academic Journal
Accession number :
27755519
Full Text :
https://doi.org/10.1016/j.atmosenv.2007.08.015