TROPOMI on the ESA Sentinel-5 Precursor: A GMES mission for global observations of the atmospheric composition for climate, air quality and ozone layer applications
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- Type
- article
- Published
- 2012-05-15
- Cited by
- 2,015
- References
- 37
- OpenAlex
- https://openalex.org/W2027404493
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:129512539
Keywords
SCIAMACHY, Remote sensing, Environmental science, Troposphere, Payload (computing)
References
- Atmospheric Brown Clouds : Regional Assessment Report with Focus on Asia
- Inverse Methods for Atmospheric Sounding: Theory and Practice
- The verisimilitude of the independent pixel approximation used in cloud remote sensing
- Touring the atmosphere aboard the A-Train
- Height resolved ozone hole structure as observed by the Global Ozone Monitoring Experiment–2
- SCIAMACHY: Mission Objectives and Measurement Modes
- Role of tropospheric ozone increases in 20th‐century climate change
- Validation of operational ozone profiles from the Ozone Monitoring Instrument
- The semi‐direct aerosol effect: Impact of absorbing aerosols on marine stratocumulus
- An emissions‐based view of climate forcing by methane and tropospheric ozone
- Investigation of clear‐sky occurrence rate estimated from CALIOP and MODIS observations
- Comparison of OMI NO2 tropospheric columns with an ensemble of global and European regional air quality models
- The next generation of scenarios for climate change research and assessment
- Numerically stable algorithm for discrete-ordinate-method radiative transfer in multiple scattering and emitting layered media.
- Global satellite analysis of the relation between aerosols and short-lived trace gases
- Intercomparison of SCIAMACHY and OMI Tropospheric NO2 Columns: Observing the Diurnal Evolution of Chemistry and Emissions from Space
- Ozone profile and tropospheric ozone retrievals from the Global Ozone Monitoring Experiment: Algorithm description and validation
- Climate change 2007: the physical science basis
- The importance of the Montreal Protocol in protecting climate
- Ozone monitoring instrument calibration
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- Remote sensing of sun-induced chlorophyll fluorescence
- Estimates of power plant NOx emissions and lifetimes from OMI NO2 satellite retrievals
- Modelling of methane emissions utilising a Lagrangian atmospheric dispersion model in combination with Earth observation data
- Sulfur dioxide vertical column DOAS retrievals from the Ozone Monitoring Instrument: Global observations and comparison to ground‐based and satellite data
- Effect of Instrument Errors in the Retrieval of Anthropogenic Gas Distribution from Satellite
- Global retrieval of marine and terrestrial chlorophyll fluorescence at its red peak using hyperspectral top of atmosphere radiance measurements: Feasibility study and first results
- Accounting for aerosol scattering in the CLARS retrieval of column averaged CO2 mixing ratios
- Satellite systems for atmospheric ozone observations
- Mapping of North American methane emissions with high spatial resolution by inversion of SCIAMACHY satellite data
- Quantifying Methane Emissions Using Satellite Observations
- Lifetimes and emissions of SO2 from point sources estimated from OMI
- Emissions of nitrogen oxides from US urban areas: estimation from Ozone Monitoring Instrument retrievals for 2005-2014
- Improved western U.S. background ozone estimates via constraining nonlocal and local source contributions using Aura TES and OMI observations
- Improved spectral fitting of nitrogen dioxide from OMI in the 405–465 nm window
- Carbon Monitoring Satellite (CarbonSat): assessment of atmospheric CO 2 and CH 4 retrieval errors by error parameterization
- Global representation of aerosol vertical profiles by sums of lognormal modes: Consequences for the passive remote sensing of aerosol heights
- Validation of SCIAMACHY HDO/H2O measurements using the TCCON and NDACC-MUSICA networks
- Aura OMI observations of regional SO2 and NO2 pollution changes from 2005 to 2015
- High spatial resolution NO2 tropospheric slant columns retrieved from OMI spatial-zoom spectra using an earthshine reference
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