N: 90 S: -90 E: 180 W: -180
Description
This is Level-3 daily global gridded (0.25x0.25 degree) Nitrogen Dioxide Product (OMNO2d). OMNO2d data product is a Level-3 Gridded Product where pixel level data of good quality are binned and "averaged" into 0.25x0.25 degree global grids. This product contains Total column NO2 and Total Tropospheric Column NO2, for all atmospheric conditions, and for sky conditions where cloud fraction is less than 30 percent.
Nitrogen dioxide is an important chemical species in both, the stratosphere where it plays a key role in ozone chemistry, and in the troposphere where it is a precursor to ozone production. In the troposphere, it is produced in various combustion processes and in lightning and is an indicator of poor air quality.
The OMNO2d data are stored in version 5 EOS Hierarchical Data Format (HDF-EOS). Each file contains data from the day lit portion of the orbit (~14 orbits). The average file size for the OMNO2d data product is about 12 Mbytes.
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.
Copy Citation
Documents
READ-ME
PUBLICATIONS
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Regionalizing & Partitioning Africa's Coronavirus (COVID-19) Fatalities Using Environmental Factors and Underlying Health Conditions for Social-economic Impacts | Boluwade, Alaba | Nitrogen Dioxide, Longwave Radiation, Shortwave Radiation, Soil Heat Budget, Soil Heat Budget, Soil Temperature, Soil Temperature, Soil Infiltration, Soil Infiltration, Soil Moisture/Water Content, Surface Soil Moisture, Root Zone Soil Moisture, Soil Moisture/Water Content, Evaporation, Surface Water, Runoff Rate, Average Flow, Average Flow, Precipitation, Snow/Ice, Snow Depth, Snow Melt, Snow/Ice Temperature, Leaf Area Index (LAI), Leaf Area Index (LAI) | |
| Pollution trace gas distributions and their transport in the Asian monsoon upper troposphere and lowermost stratosphere during the StratoClim campaign ... | Johansson, Soren, Hopfner, Michael, Kirner, Oliver, Wohltmann, Ingo, Bucci, Silvia, Legras, Bernard, Friedl-Vallon, Felix, Glatthor, Norbert, Kretschmer, Erik, Ungermann, Jorn, Wetzel, Gerald | Nitrogen Dioxide | |
| The abnormal change of air quality and air pollutants induced by the forest fire in Sumatra and Borneo in 2015 | Yin, Shuai, Wang, Xiufeng, Guo, Meng, Santoso, Heri, Guan, Hongyou | Nitrogen Dioxide, Fire Occurrence, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES | |
| The Development and Use of Isoscapes to Determine the Geographical | Watkinson, Charles, Gasson, Peter, Rees, Gareth, Boner, Markus | Nitrogen Dioxide | |
| 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, Cloud Fraction, Cloud Top Pressure, Nitrogen Dioxide, Visible Radiance | |
| Ambient air pollution exposure association with anaemia prevalence and haemoglobin levels in Chinese older adults | Elbarbary, Mona, Honda, Trenton, Morgan, Geoffrey, Guo, Yuming, Guo, Yanfei, Kowal, Paul, Negin, Joel | Nitrogen Dioxide | |
| Air pollution scenario over China during COVID-19 | Nichol, Janet E., Bilal, Muhammad, Ali, Md. Arfan, Qiu, Zhongfeng | Nitrogen Dioxide | |
| COVID-19 and air pollution in Indian cities: World's most polluted cities | Kumari, Sonal, Lakhani, Anita, Kumari, K. Maharaj | Nitrogen Dioxide | |
| Daytime and nighttime aerosol optical depth implementation in CLIS | Gonzalez, Ramiro, Toledano, Carlos, Roman, Roberto, Fuertes, David, Berjon, Alberto, Mateos, David, Guirado-Fuentes, Carmen, Velasco-Merino, Cristian, Antuna-Sanchez, Juan Carlos, Calle, Abel, Cachorro, Victoria E., de Frutos, Angel M. | Nitrogen Dioxide | |
| Evaluating current satellite capability to observe diurnal change in nitrogen oxides in preparation for geostationary satellite missions | Penn, Elise, Holloway, Tracey | Nitrogen Dioxide, Nitrogen Dioxide | |
| Long-range air pollution transport in East Asia during the first week of the COVID-19 lockdown in China | Griffith, Stephen Miles, Huang, Wei-Syun, Lin, Chia-Ching, Chen, Ying-Chieh, Chang, Kuo-En, Lin, Tang-Huang, Wang, Sheng-Hsiang, Lin, Neng-Huei | Nitrogen Dioxide | |
| Inverse modeling of SO2 and NOx emissions over China using multisensor satellite data Part 1: Formulation and sensitivity analysis | Wang, Yi, Wang, Jun, Xu, Xiaoguang, Henze, Daven K., Qu, Zhen, Yang, Kai | Nitrogen Dioxide, Nitrogen Dioxide, Sulfur Dioxide | |
| COVID-19 lockdowns improve air quality in the South-East Asian regions, as seen by the remote sensing satellites | Metya, Abirlal, Dagupta, Panini, Halder, Santanu, Chakraborty, S., Tiwari, Yogesh K. | Sulfur Dioxide, Nitrogen Dioxide | |
| Development of the global atmospheric chemistry general circulation model BCC-GEOS-Chem v1. 0: model description and evaluation | Lu, Xiao, Zhang, Lin, Wu, Tongwen, Long, Michael S., Wang, Jun, Jacob, Daniel J., Zhang, Fang, Zhang, Jie, Eastham, Sebastian D., Hu, Lu, Zhu, Lei, Liu, Xiong, Wei, Min | Nitrogen Dioxide, Sulfur Dioxide | |
| Atmospheric measurements in the context of protection and conservation of cultural heritage objects | Rosu, Adrian, Constantin, Daniel-Eduard, Arseni, Maxim, Timofti, Mihaela | Atmospheric Ozone, Total Surface Precipitation Rate, Aerosols, Aerosol Extinction, Aerosol Optical Depth/Thickness, Angstrom Exponent, Aerosol Particle Properties, Carbonaceous Aerosols, Dust/Ash/Smoke, Organic Particles, Sulfate Particles, Sulfur Oxides, Sulfur Compounds, Sulfate, Sulfur Dioxide, Sulfur Oxides, Particulate Matter, Dimethyl Sulfide, Black Carbon, Sea Salt, PARTICULATE MATTER (PM 2.5), PARTICULATE MATTER (PM 10), PARTICULATE MATTER (PM 1.0), Nitrogen Dioxide, Ultraviolet Radiation | |
| Bayesian geostatistical modelling of high-resolution NO2 exposure in Europe combining data from monitors, satellites and chemical transport models | Beloconi, Anton, Vounatsou, Penelope | Nitrogen Dioxide | |
| 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 | |
| Global-scale patterns and trends in tropospheric NO2 concentrations, 20052018 | Jamali, Sadegh, Klingmyr, Daniel, Tagesson, Torbern | Nitrogen Dioxide | |
| Ground-based and OMI-TROPOMI NO2 measurements at El Arenosillo observatory: Unexpected upward trends | Adame, J.A., Gutierrez-Alvarez, I., Bolivar, J.P., Yela, M. | Nitrogen Dioxide | |
| Impact of COVID-19 containment measures on air pollution in California | Naeger, Aaron R., Murphy, Kelley | Nitrogen Dioxide | |
| Long-term satellite-based estimates of air quality and premature mortality in Equatorial Asia through deep neural networks | Bruni Zani, N, Lonati, G, Mead, M I, Latif, M T, Crippa, P | Nitrogen Dioxide, Sulfur Dioxide, Carbon And Hydrocarbon Compounds, Ultraviolet Radiation | |
| Vertical distribution of smoke aerosols over upper Indo-Gangetic Plain | Vinjamuri, K.S., Mhawish, Alaa, Banerjee, Tirthankar, Sorek-Hamer, Meytar, Broday, David M., Mall, Rajesh K., Latif, Mohd Talib | Nitrogen Dioxide, Aerosol Extinction, Aerosol Optical Depth/Thickness | |
| Unprecedented temporary reduction in global air pollution associated with COVID-19 forced confinement: A continental and city scale analysis | Zhang, Zhijie, Arshad, Arfan, Zhang, Chuanrong, Hussain, Saddam, Li, Weidong | Atmospheric Ozone, Nitrogen Dioxide, Sulfur Dioxide | |
| Spatial Assessment of Health Economic Losses from Exposure to Ambient Pollutants in China | Wang, Kun, Wang, Wen, Wang, Weijia, Jiang, Xiaoqun, Yu, Tao, Ciren, Pubu | Nitrogen Dioxide, Atmospheric Ozone, Sulfur Dioxide, Aerosol Extinction, Aerosol Optical Depth/Thickness | |
| Satellite validation strategy assessments based on the AROMAT campaigns | Merlaud, Alexis, Belegante, Livio, Constantin, Daniel-Eduard, Den Hoed, Mirjam, Meier, Andreas Carlos, Allaart, Marc, Ardelean, Magdalena, Arseni, Maxim, Bosch, Tim, Brenot, Hugues, Calcan, Andreea, Dekemper, Emmanuel, Donner, Sebastian, Dorner, Steffen, Balanica Dragomir, Mariana Carmelia, Georgescu, Lucian, Nemuc, Anca, Nicolae, Doina, Pinardi, Gaia, Richter, Andreas, Rosu, Adrian, Ruhtz, Thomas, Schonhardt, Anja, Schuettemeyer, Dirk, Shaiganfar, Reza, Stebel, Kerstin, Tack, Frederik, Nicolae Vajaiac, Sorin, Vasilescu, Jeni, Vanhamel, Jurgen, Wagner, Thomas, Van Roozendael, Michel | Nitrogen Dioxide |