Affiliation:
1. Horticultural and Educational Services Beata Kułek, Osiedle Przyjaźni 13/92, 61-687 Poznań, Poland
2. Department of Meteorology, Institute of Geography and Earth Sciences, Eötvös Loránd University (ELTE), Pázmány Péter str. 1/A, H-1117 Budapest, Hungary
Abstract
Influences of animals, time of day, air temperature and relative humidity, wind speed and direction on ammonia concentrations were investigated. A case study on a typical summer day from 7:00 to approximately 24:00 CEST (moderate wind speed, variable cloudiness and maximum global radiation higher than 950 W/m2) in west–central Poland is presented. Concentrations of this gas were measured at four heights (0.1–1.5 m), which were changed every 5 min, using a Nitrolux 1000 photoacoustic spectrometer. A micrometeorological station was established to also measure the surface energy budget components. The results presented are the average for each hour and for the entire day. The fine structure of concentration profiles, plume detection and uncertainty of ammonia flux calculation are also presented. The highest NH3 concentrations were at a 0.5 m height between 16:00 and 17:00 h when cows were grazing, but the lowest concentrations were between 23:00 and 24:00 h at the height of 1.5 m. The ammonia concentration increased with increasing air temperature and was the highest with a westerly wind direction and decreased with increasing air relative humidity. The greatest influence on the ammonia concentration was related to the presence of cows and the time of day, while a slightly smaller influence was noted in terms of air temperature and wind direction. A case study is suitable for presenting local effects, inhomogeneities and quantifying uncertainties in the bidirectional ammonia flux calculation.
Funder
Institute for Agricultural and Forest Environment, Polish Academy of Sciences in Poznań, Poland
National Research, Development and Innovation Office
FAIR Network of micrometeorological measurements COST Action
Subject
Atmospheric Science,Environmental Science (miscellaneous)
Reference40 articles.
1. McInnes, G. (1996). Joint EMEP/CORINAIR Atmospheric Emission Inventory Guidebook, EEA.
2. Estimating ammonia emission factors in Europe: Summary of the work of the UNECE ammonia expert panel;Atmos. Environ.,1998
3. Sutton, M.A., Howard, C.M., Erisman, J.W., Billen, G., Bleeker, A., Grennfelt, P., Van Grinsven, H., and Grizzetti, B. (2011). The European Nitrogen Assessment: Sources, Effects and Policy Perspectives, Cambridge University Press.
4. New Emission Factors for Calculation of Ammonia Volatilization from European Livestock Manure Management Systems;Sommer;Front. Sustain. Food Syst.,2019
5. Modelling nitrogen fluxes at the landscape scale. Water, Air, and Soil Pollut;Theobald;Focus,2004