N: 90 S: -90 E: 180 W: -180
Description
The Version 4.0 Aura Ozone Monitoring Instrument (OMI) Nitrogen Dioxide (NO2) Standard Product (OMNO2) is now available from the NASA Goddard Earth Sciences Data and Information Services Center. The major V4.0 updates include: (1) use of a new daily and OMI field of view specific geometry dependent surface Lambertian Equivalent Reflectivity (GLER) product in both NO2 and cloud retrievals; (2) use of improved cloud parameters (effective cloud fraction and cloud optical centroid pressure) from a new cloud algorithm (OMCDO2N) that are retrieved consistently with NO2 using a new algorithm for O2-O2 slant column data and the GLER product for terrain reflectivity; (3) use of a more accurate terrain pressure calculated using OMI ground pixel-averaged terrain height and monthly mean GMI terrain pressure; and (4) improved treatment over snow/ice surfaces by using the concept of scene LER and scene pressure. The details can be found in the updated OMNO2 readme document (see Documentation). The OMNO2 product contains slant column NO2 (total amount along the average optical path from the sun into the atmosphere, and then toward the satellite), the total NO2 vertical column density (VCD), the stratospheric and tropospheric VCDs, air mass factors (AMFs), scattering weights for calculation of AMFs, and other ancillary data. The short name for the Level-2 swath type column NO2 products is OMNO2. Other OMNO2-associated NO2 products include the Level-2 gridded column product, OMNO2G, and the Level-3 gridded column product, OMNO2d.
The OMNO2 files are stored in version 5 EOS Hierarchical Data Format (HDF-EOS5). Each Level-2 file contains data from the day lit portion of an orbit (~53 minutes). There are approximately 14 orbits per day. The maximum file size for the OMNO2 is ~24 MB.
Product Summary
Citation
Citation is critically important for dataset documentation and discovery. This dataset is openly shared, without restriction, in accordance with the EOSDIS Data Use and Citation Guidance.
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Documents
READ-ME
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Changes in air quality and human mobility in the USA during the COVID-19 pandemic | Archer, Cristina L., Cervone, Guido, Golbazi, Maryam, Al Fahel, Nicolas, Hultquist, Carolynne | Nitrogen Dioxide, Nitrogen Dioxide | |
| Assessment of NO2 observations during DISCOVER-AQ and KORUS-AQ field campaigns | Choi, Sungyeon, Lamsal, Lok N., Follette-Cook, Melanie, Joiner, Joanna, Krotkov, Nickolay A., Swartz, William H., Pickering, Kenneth E., Loughner, Christopher P., Appel, Wyat, Pfister, Gabriele, Saide, Pablo E., Cohen, Ronald C., Weinheimer, Andrew J., Herman, Jay R. | Nitrogen Dioxide, Cloud Fraction, Cloud Top Pressure | |
| Validation of Aura-OMI QA4ECV NO2 climate data records with ground-based DOAS networks: the role of measurement and comparison uncertainties | Compernolle, Steven, Verhoelst, Tijl, Pinardi, Gaia, Granville, Jose, Hubert, Daan, Keppens, Arno, Niemeijer, Sander, Rino, Bruno, Bais, Alkis, Beirle, Steffen, Boersma, Folkert, Burrows, John P., De Smedt, Isabelle, Eskes, Henk, Goutail, Florence, Hendrick, Francois, Lorente, Alba, Pazmino, Andrea, Piters, Ankie, Peters, Enno, Pommereau, Jean-Pierre, Remmers, Julia, Richter, Andreas, van Geffen, Jos, Van Roozendael, Michel, Wagner, Thomas, Lambert, Jean-Christopher | Nitrogen Dioxide | |
| Effects of a priori profile shape assumptions on comparisons between satellite NO2 columns and model simulations | Cooper, Matthew J., Martin, Randall V., Henze, Daven K., Jones, Dylan B. A. | Nitrogen Dioxide | |
| On validation high-detail mapping of tropospheric NO2 using GSA/Resurs-P observations with simulated data | Postylyakov, Oleg V., Borovski, Alexander N., Shukurov, Karim A., Mukhartova, Iuliia V., Davydova, Marina A., Makarenkov, Aleksandr A. | Nitrogen Dioxide | |
| Non-negligible impacts of clean air regulations on the reduction of tropospheric NO2 over East China during the COVID-19 pandemic observed by OMI and TROPOMI | Huang, Guanyu, Sun, Kang | Nitrogen Dioxide | |
| Long-term variations in ozone levels in the troposphere and lower stratosphere over Beijing: Observations and model simulations | Zhang, Yuli, Tao, Mengchu, Zhang, Jinqiang, Liu, Yi, Chen, Hongbin, Cai, Zhaonan, Konopka, Paul | Nitrogen Dioxide | |
| 20052017 ozone trends and potential benefits of local measures as deduced from air quality measurements in the north of the Barcelona metropolitan area | Massague, Jordi, Carnerero, Cristina, Escudero, Miguel, Baldasano, Jose Maria, Alastuey, Andres, Querol, Xavier | Nitrogen Dioxide | |
| A top-down assessment using OMI NO2 suggests an underestimate in the NOx emissions inventory in Seoul, South Korea, during KORUS-AQ | Goldberg, Daniel L., Saide, Pablo E., Lamsal, Lok N., de Foy, Benjamin, Lu, Zifeng, Woo, Jung-Hun, Kim, Younha, Kim, Jinseok, Gao, Meng, Carmichael, Gregory, Streets, David G. | Nitrogen Dioxide | |
| Exploiting OMI NO2 satellite observations to infer fossil-fuel CO2 emissions from US megacities | Goldberg, Daniel L., Lu, Zifeng, Oda, Tomohiro, Lamsal, Lok N., Liu, Fei, Griffin, Debora, McLinden, Chris A., Krotkov, Nickolay A., Duncan, Bryan N., Streets, David G. | Nitrogen Dioxide | |
| Comparison of space high-detailed experimental and model data on tropospheric NO2 distribution | Postylyakov, Oleg V., Borovski, Alexander N., Elansky, Nikolay F., Davydova, Marina A., Zakharova, Svetlana A., Makarenkov, Aleksandr A. | Nitrogen Dioxide | |
| Preliminary validation of high-detailed GSA/Resurs-P tropospheric NO2 maps with alternative satellite measurements and transport simulations | Postylyakov, Oleg V., Borovski, Alexander N., Davydova, Marina A., Makarenkov, Aleksandr A. | Nitrogen Dioxide | |
| Satellite-derived emissions of carbon monoxide, ammonia, and nitrogen dioxide from the 2016 Horse River wildfire in the Fort McMurray area | Adams, Cristen, McLinden, Chris A., Shephard, Mark W., Dickson, Nolan, Dammers, Enrico, Chen, Jack, Makar, Paul, Cady-Pereira, Karen E., Tam, Naomi, Kharol, Shailesh K., Lamsal, Lok N., Krotkov, Nickolay A. | Nitrogen Dioxide | |
| Retrieval of total column and surface NO2 from Pandora zenith-sky measurements | Zhao, Xiaoyi, Griffin, Debora, Fioletov, Vitali, McLinden, Chris, Davies, Jonathan, Ogyu, Akira, Lee, Sum Chi, Lupu, Alexandru, Moran, Michael D., Cede, Alexander, Tiefengraber, Martin, Muller, Moritz | Nitrogen Dioxide | |
| Quantifying Emissions of CO and NOx Using Observations From MOPITT, OMI | Zhang, X., Jones, D. B. A., Keller, M., Walker, T. W., Jiang, Z., Henze, D. K., Worden, H. M., Bourassa, A. E., Degenstein, D. A., Rochon, Y. J. | Nitrogen Dioxide | |
| Towards a satellite formaldehydein situ hybrid estimate for organic aerosol abundance | Liao, Jin, Hanisco, Thomas F., Wolfe, Glenn M., St. Clair, Jason, Jimenez, Jose L., Campuzano-Jost, Pedro, Nault, Benjamin A., Fried, Alan, Marais, Eloise A., Gonzalez Abad, Gonzalo, Chance, Kelly, Jethva, Hiren T., Ryerson, Thomas B., Warneke, Carsten, Wisthaler, Armin | Nitrogen Dioxide, Nitrogen Dioxide, Aerosol Backscatter, Aerosol Extinction, Aerosol Optical Depth/Thickness, Angstrom Exponent, Aerosol Particle Properties, Aerosol Radiance, Carbonaceous Aerosols, Cloud Condensation Nuclei, Dust/Ash/Smoke, Nitrate Particles, Organic Particles, Particulate Matter, Sulfate Particles, Optical Depth/Thickness, Radiative Flux, Reflectance | |
| Improved Satellite Retrieval of Tropospheric NO2 Column Density via | Mak, Hugo Wai Leung, Laughner, Joshua L., Fung, Jimmy Chi Hung, Zhu, Qindan, Cohen, Ronald C. | Nitrogen Dioxide | |
| Dry Deposition of Reactive Nitrogen From Satellite Observations of | Kharol, S. K., Shephard, M. W., McLinden, C. A., Zhang, L., Sioris, C. E., O'Brien, J. M., Vet, R., CadyPereira, K. E., Hare, E., Siemons, J., Krotkov, N. A. | Nitrogen Dioxide | |
| Evaluating commercial marine emissions and their role in air quality policy using observations and the CMAQ model | Ring, Allison M., Canty, Timothy P., Anderson, Daniel C., Vinciguerra, Timothy P., He, Hao, Goldberg, Daniel L., Ehrman, Sheryl H., Dickerson, Russell R., Salawitch, Ross J. | Nitrogen Dioxide | |
| OMI Satellite and GroundBased Pandora Observations and Their Application to Surface NO2 Estimations at Terrestrial and Marine Sites | Kollonige, Debra E., Thompson, Anne M., Josipovic, Miroslav, Tzortziou, Maria, Beukes, Johan P., Burger, Roelof, Martins, Douglas K., van Zyl, Pieter G., Vakkari, Ville, Laakso, Lauri | Air Temperature, Carbon Monoxide, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Geopotential Height, Methane, Outgoing Longwave Radiation, Atmospheric Ozone, Total Precipitable Water, Sea Surface Temperature, Surface Pressure, Skin Temperature, Surface Temperature, Sulfur Dioxide, Tropopause, Tropospheric Ozone, Upper Air Temperature, Water Vapor Profiles, Cloud Liquid Water/Ice, Cloud Droplet Concentration/Size, Cloud Optical Depth/Thickness, Cloud Types, Brightness Temperature, Precipitation Rate, Nitrogen Dioxide | |
| Satellite-Observed Impacts of Wildfires on Regional Atmosphere | Fu, Yuyun, Li, Rui, Huang, Jianguo, Bergeron, Yves, Fu, Yunfei, Wang, Yu, Gao, Zongting | Nitrogen Dioxide, Carbon And Hydrocarbon Compounds, Land Surface Temperature, Fire Occurrence, Surface Thermal Properties, THERMAL ANOMALIES, Aerosol Extinction, Aerosol Optical Depth/Thickness, Air Temperature, Carbon Monoxide, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Geopotential Height, Methane, Outgoing Longwave Radiation, Atmospheric Ozone, Total Precipitable Water, Sea Surface Temperature, Surface Pressure, Skin Temperature, Surface Temperature, Sulfur Dioxide, Tropopause, Tropospheric Ozone, Upper Air Temperature, Water Vapor Profiles, Cloud Liquid Water/Ice | |
| The Berkeley High Resolution Tropospheric NO2 product | Laughner, Joshua L., Zhu, Qindan, Cohen, Ronald C. | Nitrogen Dioxide, VIEWING GEOMETRY, Albedo, Anisotropy, Reflectance | |
| A high-resolution and observationally constrained OMI NO2 satellite retrieval | Goldberg, Daniel L., Lamsal, Lok N., Loughner, Christopher P., Swartz, William H., Lu, Zifeng, Streets, David G. | Nitrogen Dioxide | |
| First experiment on retrieval of tropospheric NO2 over polluted areas with 2.4-km spatial resolution basing on satellite spectral measurements | Postylyakov, Oleg V., Borovski, Alexander N., Makarenkov, Aleksandr A. | Nitrogen Dioxide | |
| Quantification of the effect of modeled lightning NO2 on UVvisible air mass factors | Laughner, Joshua L., Cohen, Ronald C. | Nitrogen Dioxide, Albedo, Anisotropy |