Title
Identification and cross-checking of large point source SO2 emissions in Europe using OMI retrievals
Author
van der Gon, H.D.
Visschedijk, A.
McLinden, C.
Fioletov, V.
van der Wal, L.
Publication year
2013
Abstract
European SO2 emissions from large points sources (LPS) were cross-checked with satellite S2 measurements from the Ozone Monitoring Instrument (OMI) on NASA's EOS-Aura satellite, averaged over a period of several years. Coordinates of the top-100 individual LPS in Europe were taken from the TNO point source database and corresponding OMI S2 plots (ca. 100 × 100 km) were made. From the top-10 emitters in the LPS database, only ca. 50% was clearly identifiable. To interpret this surprising mismatch we compiled corresponding OMI N2 plots and investigated these on a plant by plant basis. This supported various improvements in the representation of LPS in the TNO-MACC emission inventory used in the GMES Atmospheric Core Service. Some plants had shifted from coal to gas and were no longer (large) S2 emitters but could be clearly identified in the OMI N2 retrievals. In some cases the coordinates of the LPS were incorrect or allocation of emission to a LPS within the country was incorrect. In the latter case, the national S2 emission was maintained but the location of emission should be adjusted. It was previously demonstrated that individual sources (or multiple sources within 50 km) with annual S2 emissions greater than about 70 kT y-1 produce a statistically significant signal in 5-year averaged OMI data. When we used this threshold to verify the European Pollutant Release and Transfer Register (E-PRTR) reported emissions, most plants with emissions larger than 50-70 kT y-1 could be identified. Thus the use of OMI S2 retrievals is a promising tool for monitoring and identification of LPS emissions, especially in regions were high quality emission data is missing. However, we also established that in the case of Europe LPS only account for 25-30% of the total annual S2 emission. Combining the traditional emission inventory approach with novel satellite retrieval interpretations provides added value, which may increase when satellite data with a better sensitivity to S2 become available. ©2013 by the International Astronautical Federation. All rights reserved. Organisation:
Subject
Earth / Environmental
CAS - Climate, Air and Sustainability
ELSS - Earth, Life and Social Sciences
Urban Development
Emission
Built Environment
Gas plants
NASA
Satellites
Emission data
Emission inventories
Multiple source
Ozone monitoring instruments
Point sources
Pollutant release and transfer registers
Satellite data
Satellite retrieval
Sulfur dioxide
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http://resolver.tudelft.nl/uuid:d01c50df-6f7a-452f-8d78-f049ea91670a
TNO identifier
513274
Publisher
International Astronautical Federation, IAF
ISBN
00741795
Source
64th International Astronautical Congress 2013, IAC 2013, 23 September 2013 through 27 September 2013, Beijing, 4, 2883-2886
Document type
conference paper