A Geostationary air quality monitor for the Middle East
Atmospheric pollution measurements from space have been evolving from low-earth-orbits (LEO) to geostationary orbits (GEO), to track the diurnal variation of atmospheric emissions. There are three GEO instruments in development. TEMPO is NASA's first Earth Venture Instrument, to be launched dur...
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Published in | Journal of physics. Conference series Vol. 869; no. 1; pp. 12085 - 12088 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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IOP Publishing
01.06.2017
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Abstract | Atmospheric pollution measurements from space have been evolving from low-earth-orbits (LEO) to geostationary orbits (GEO), to track the diurnal variation of atmospheric emissions. There are three GEO instruments in development. TEMPO is NASA's first Earth Venture Instrument, to be launched during 2018-2021. It will measure atmospheric pollution for greater North America using ultraviolet and visible spectroscopy. The European Sentinel-4 and the South Korean GEMS will measure atmospheric pollution for Europe and Southeast Asia, respectively. In this paper, we describe NASA's TEMPO instrument and we propose a similar instrument in GEO to provide hourly atmospheric pollution measurements for the Middle East at very high spatial resolution. The proposed Middle-East TEMPO instrument will cover Arab Countries, and parts of Asia and Europe. The measurement will include the spectra required to retrieve O3, NO2, SO2, H2CO, C2H2O2, H2O, aerosols, cloud parameters, and UVB radiation. |
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AbstractList | Atmospheric pollution measurements from space have been evolving from low-earth-orbits (LEO) to geostationary orbits (GEO), to track the diurnal variation of atmospheric emissions. There are three GEO instruments in development. TEMPO is NASA’s first Earth Venture Instrument, to be launched during 2018-2021. It will measure atmospheric pollution for greater North America using ultraviolet and visible spectroscopy. The European Sentinel-4 and the South Korean GEMS will measure atmospheric pollution for Europe and Southeast Asia, respectively. In this paper, we describe NASA’s TEMPO instrument and we propose a similar instrument in GEO to provide hourly atmospheric pollution measurements for the Middle East at very high spatial resolution. The proposed Middle-East TEMPO instrument will cover Arab Countries, and parts of Asia and Europe. The measurement will include the spectra required to retrieve O 3, NO 2, SO 2, H 2 CO, C 2 H 2 O 2, H 2 O, aerosols, cloud parameters, and UVB radiation. Atmospheric pollution measurements from space have been evolving from low-earth-orbits (LEO) to geostationary orbits (GEO), to track the diurnal variation of atmospheric emissions. There are three GEO instruments in development. TEMPO is NASA's first Earth Venture Instrument, to be launched during 2018-2021. It will measure atmospheric pollution for greater North America using ultraviolet and visible spectroscopy. The European Sentinel-4 and the South Korean GEMS will measure atmospheric pollution for Europe and Southeast Asia, respectively. In this paper, we describe NASA's TEMPO instrument and we propose a similar instrument in GEO to provide hourly atmospheric pollution measurements for the Middle East at very high spatial resolution. The proposed Middle-East TEMPO instrument will cover Arab Countries, and parts of Asia and Europe. The measurement will include the spectra required to retrieve O3, NO2, SO2, H2CO, C2H2O2, H2O, aerosols, cloud parameters, and UVB radiation. |
Author | Suleiman, R M Liu, X Chance, K |
Author_xml | – sequence: 1 givenname: R M surname: Suleiman fullname: Suleiman, R M email: rsuleiman@cfa.harvard.edu organization: Harvard-Smithsonian Center for Astrophysics , USA – sequence: 2 givenname: K surname: Chance fullname: Chance, K organization: Harvard-Smithsonian Center for Astrophysics , USA – sequence: 3 givenname: X surname: Liu fullname: Liu, X organization: Harvard-Smithsonian Center for Astrophysics , USA |
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Cites_doi | 10.1016/j.jqsrt.2016.05.008 10.1175/2008BAMS2526.1 10.1117/12.453748 10.1117/12.46657 10.1117/12.2024479 10.1016/j.jcp.2007.02.024 10.1002/2013JD020472 10.1029/2006GL027749 10.5194/acp-9-585-2009 10.1016/j.atmosenv.2011.05.058 |
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References | 11 12 Chance K V (9) 2002; 4 13 1 2 3 4 Seftor C J (5) 2014; 119 Bednarz F (7) 1995 6 Bhartia P K (8) 2002; 2 10 |
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SubjectTerms | Air pollution Air quality Diurnal variations Geosynchronous orbits Low earth orbits Physics Spatial resolution Spectrum analysis |
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