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:e30ca77b-9118-4279-8b3a-a4c7773d1c43
dcterms:title "Meteorological data and ammonia concentration and deposition rates from an ammonia enhancement experiment site, Glencorse, UK, 2021-2022" ;
dcterms:identifier "https://catalogue.ceh.ac.uk/id/e30ca77b-9118-4279-8b3a-a4c7773d1c43","https://doi.org/10.5285/e30ca77b-9118-4279-8b3a-a4c7773d1c43" ;
dcterms:bibliographicCitation "Deshpande, A.G., Jones, M.R., Mullinger, N.J., Harvey, D., Simmons, I., Nicoll, R., van Dijk, N., Grenier, M., Toteva, G., Duarte, F., Stephens, A., Iwanicka, A. (2024). Meteorological data and ammonia concentration and deposition rates from an ammonia enhancement experiment site, Glencorse, UK, 2021-2022. NERC EDS Environmental Information Data Centre. https://doi.org/10.5285/e30ca77b-9118-4279-8b3a-a4c7773d1c43" ;
dcterms:description "This dataset contains information about meteorological conditions and ammonia concentration and deposition rates resulting from an experimental setup. An NH3 enhancement experiment along with a full suite of multi-height meteorological measurements was established in a Birch woodland near Edinburgh, UK. Under suitable wind conditions measured at the meteorological tower, NH3 is released towards a monitoring transect. Along the downwind monitoring transect, NH3 concentrations in the air are measured using monthly passive samplers. Deposition rates are modelled using a bi-directional resistance model based on measured NH3 concentrations in the air, micrometeorology and plant physiology. Additionally, NH3 concentrations were measured at high temporal resolution at a fixed downwind distance from the source to achieve the target enhancement concentrations. The work was supported by UKRI GCRF South Asian Nitrogen Hub (Grant NE/S009019/1) and NERC (Grant NE/R016429/1)." ;
dcterms:provenance [
a dcterms:ProvenanceStatement ;
rdfs:label "Meteorological parameters such as temperature, relative humidity, total solar radiation, photosynthetically active radiation, wind speed, wind direction and rainfall were measured at four heights starting from the ground level to above-canopy. The measurements were made on a 16 m tall mast. Additionally, soil moisture, temperature and electric conductivity was measured at three depths. All instruments measured data every 20 seconds and the average was calculated over 15-minute intervals through a data logger. NH3 enhancement was conducted by releasing the gas from a pure anhydrous NH3 cylinder. A mass flow controller (MFC) released pre-programmed volume of NH3 under suitable wind conditions and the release volume and time is recorded on the datalogger at 1-minute intervals. The meteorological and NH3 enhancement data was checked visually, and any obvious errors introduced by instrument malfunctioning, datalogger programming issues and power cuts were removed. NH3 concentrations were measured downwind of the source using UKCEH Adapted Low-cost Passive High Absorption (ALPHA®) samplers and analysed monthly. NH3 concentrations not following the regular exponentially declining curve with distance from the source were removed. Monthly dry deposition of NH3 to different layers of the canopy was modelled using a bi-directional resistance model written in R. At a distance of 10 m downwind of the NH3 source, NH3 concentrations were measured using a Picarro high-resolution analyser at a frequency of 1 Hz and averaged over 1-minute intervals. The analyser had inlets at four different heights to understand the vertical movement of the gas. The analyser was operated as a part of two seasonal measurement campaigns. The data was checked visually and any obvious errors introduced by instrument malfunctioning, LabVIEW inlet switching programming issues and power cuts were removed. Gaps introduced during inlet switching were filled by linear interpolation."
] ;
dcterms:spatial [
a dcterms:Location ;
dcat:bbox "POLYGON((-3.216 55.853, -3.216 55.855, -3.215 55.855, -3.215 55.853, -3.216 55.853))"^^geo:wktLiteral ;
] ;
dcterms:temporal
[ a dcterms:PeriodOfTime ;
dcat:startDate "2021-01-01"^^xsd:date ;
dcat:endDate "2022-12-31"^^xsd:date ;
] ;
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dcterms:isReferencedBy
<http://dx.doi.org/10.1016/j.atmosenv.2023.120325> ;
dcterms:subject
"Scotland",
<http://onto.nerc.ac.uk/CEHMD/topic/4>,
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"enhancement",
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;
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dcterms:bibliographicCitation "Deshpande, A.G., Jones, M.R., van Dijk, N., Mullinger, N.J., Harvey, D., Nicoll, R., Toteva, G., Weerakoon, G., Nissanka, S., Weerakoon, B., Grenier, M., Iwanicka, A., Duarte, F., Stephens, A., Ellis, C.J., Vieno, M., Drewer, J., Wolseley, P.A., Nanayakkara, S., Prabhashwara, T., Bealey, W.J., Nemitz, E., Sutton, M.A., 2024. Estimation of ammonia deposition to forest ecosystems in Scotland and Sri Lanka using wind-controlled NH3 enhancement experiments. Atmos. Environ. 120325. doi:10.1016/j.atmosenv.2023.120325";
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