A new framework to estimate spatio-temporal ammonia emissions due to nitrogen fertilization in France
被引:21
作者:
Ramanantenasoa, Maharavo Marie Julie
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Univ Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, France
ADEME 20, Ave Gresille,BP 90406, F-49004 Angers 01, FranceUniv Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, France
Ramanantenasoa, Maharavo Marie Julie
[1
,2
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Gilliot, Jean-Marc
[1
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Mignolet, Catherine
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INRA, UR SAD, F-88500 Mirecourt, FranceUniv Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, France
Mignolet, Catherine
[3
]
Bedos, Carole
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Univ Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, FranceUniv Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, France
Bedos, Carole
[1
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Mathias, Etienne
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CITEPA, 42 Rue Paradis, F-75010 Paris, FranceUniv Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, France
Mathias, Etienne
[4
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Eglin, Thomas
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ADEME 20, Ave Gresille,BP 90406, F-49004 Angers 01, FranceUniv Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, France
Eglin, Thomas
[2
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Makowski, David
[5
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Genermont, Sophie
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Univ Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, FranceUniv Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, France
Genermont, Sophie
[1
]
机构:
[1] Univ Paris Saclay, AgroParisTech, INRA, UMR ECOSYS, F-78850 Thiverval Grignon, France
[2] ADEME 20, Ave Gresille,BP 90406, F-49004 Angers 01, France
[3] INRA, UR SAD, F-88500 Mirecourt, France
[4] CITEPA, 42 Rue Paradis, F-75010 Paris, France
[5] Univ Paris Saclay, AgroParisTech, INRA, UMR Agron, F-78000 Thiverval Grignon, France
In France, agriculture is responsible for 98% of ammonia (NH3) emissions with over 50% caused by nitrogen (N) fertilization. The current French national inventory is based on default emission factors (EF) and does not account for the main variables influencing NH3 emissions. To model the spatio-temporal variability of NH3 emissions due to mineral and organic N fertilization, we implemented a new method named CADASTRE_NH3. The novelty lies in the combined use of two types of resources: the process-based Volt'Air model and georeferenced and temporally explicit databases for soil properties, meteorological conditions and N fertilization. Simulation units are the Small Agricultural Regions. Several sources of information were combined to obtain N fertilization management: census and surveys of the French Ministry of Agriculture, statistics on commercial fertilizer deliveries, and French expertise on physicochemical properties of organic manure. The practical interest of this new framework was illustrated for France during the crop year 2005/06. Aggregation at crop year level showed a reasonable agreement between estimated values derived from CADASTRE_ NH3 and those from the French inventory method, for N and ammoniacal-N (TAN) application rates, totalNH(3) emissions and NH3 EF. Discrepancies were large for organic manure only; national TAN application rates and NH3 emissions were 62- 63% lower with CADASTRE_ NH3. This was due to divergences in the representation of cattle farm yard manure and in the TAN:N ratio of solid manure. Annual emissions for fertilization in France were estimated to be 270 Gg NH3, 29% lower than the French national inventory estimate. At the regional level, organic manure contributed to 73% of field NH3 emissions in intensive livestock husbandry areas and to 41% in the other areas. The CADASTRE_NH3 framework can be seen as a Tier 3 approach able to estimate specific regional EF for different mineral fertilizers and organic manure. (c) 2018 Elsevier B.V. All rights reserved.