Nitrous oxide emissions in Austria
Identifieur interne : 001605 ( Main/Exploration ); précédent : 001604; suivant : 001606Nitrous oxide emissions in Austria
Auteurs : Rudolf Orthofer [Autriche] ; H. Markus Knoflacher [Autriche] ; Johann Zueger [Autriche]Source :
- Energy Conversion and Management [ 0196-8904 ] ; 1996.
Abstract
Using IPCC recommended procedures, anthropogenic emissions of nitrous oxide (N2O) in Austria for the base year 1990 were estimated to be around 4,800 metric tons (t). The uncertainties are high particularly for the emissions from agricultural soils. About 62 % of total emissions come from agriculture, 26 % from the energy sector, and 11 % from the industrial processes sector. Projections for the year 2000 show that emissions will grow by about 15 %. This is mainly due to unwanted side-effects of pollution control technologies (e.g. 3-way catalytic converters for cars, fluidised bed combustion in industry, and denitrification processes in waste water treatment plants). The national emission estimates were spatially disaggregated to a district level using a top-down model. Arithmetic average and median emission densities in the districts are 1.2 and 0.6 kg per hectare.
Url:
DOI: 10.1016/0196-8904(95)00338-X
Affiliations:
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<front><div type="abstract" xml:lang="en">Using IPCC recommended procedures, anthropogenic emissions of nitrous oxide (N2O) in Austria for the base year 1990 were estimated to be around 4,800 metric tons (t). The uncertainties are high particularly for the emissions from agricultural soils. About 62 % of total emissions come from agriculture, 26 % from the energy sector, and 11 % from the industrial processes sector. Projections for the year 2000 show that emissions will grow by about 15 %. This is mainly due to unwanted side-effects of pollution control technologies (e.g. 3-way catalytic converters for cars, fluidised bed combustion in industry, and denitrification processes in waste water treatment plants). The national emission estimates were spatially disaggregated to a district level using a top-down model. Arithmetic average and median emission densities in the districts are 1.2 and 0.6 kg per hectare.</div>
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