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Publications Citing Air Quality Data
List of peer-reviewed publications that cite using Air Quality data.
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| Title | Year Sort ascending | Author | Topic | Dataset |
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| Anthropogenic aerosol and cryosphere changes drive Earth's strong but transient clear-sky hemispheric albedo asymmetry | Diamond, Michael S., Gristey, Jake J., Kay, Jennifer E., Feingold, Graham | 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) | ||
| Assessing progress toward the Paris climate agreement from space | Weir, Brad, Oda, Tomohiro, Ott, Lesley E, Schmidt, Gavin A | Carbon Monoxide, Geopotential Height, Tropopause, Methane, Atmospheric Ozone, Surface Pressure, Outgoing Longwave Radiation, Air Temperature, Upper Air Temperature, Humidity, Total Precipitable Water, Water Vapor, Water Vapor Profiles, Cloud Liquid Water/Ice, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Skin Temperature, Sea Surface Temperature, Atmospheric Carbon Dioxide |
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| Air quality impacts of crop residue burning in India and mitigation | Lan, Ruoyu, Eastham, Sebastian D., Liu, Tianjia, Norford, Leslie K., Barrett, Steven R. H. | Particulate Matter, Particulates, Habitat Conversion/Fragmentation | ||
| Airborne observations during KORUS-AQ show that aerosol optical depths are more spatially self-consistent than aerosol intensive properties | LeBlanc, Samuel E., Segal-Rozenhaimer, Michal, Redemann, Jens, Flynn, Connor, Johnson, Roy R., Dunagan, Stephen E., Dahlgren, Robert, Kim, Jhoon, Choi, Myungje, da Silva, Arlindo, Castellanos, Patricia, Tan, Qian, Ziemba, Luke, Lee Thornhill, Kenneth, Kacenelenbogen, Meloe | 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 1.0), PARTICULATE MATTER (PM 10) | ||
| Airmass Analysis of Size-Resolved Black Carbon Particles Observed in the | Cremer, Roxana S., Tunved, Peter, Strom, Johan | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| An evaluation of biomass burning aerosol mass, extinction, and size distribution in GEOS using observations from CAMP2Ex | Collow, Allison B. Marquardt, Buchard, Virginie, Colarco, Peter R., da Silva, Arlindo M., Govindaraju, Ravi, Nowottnick, Edward P., Burton, Sharon, Ferrare, Richard, Hostetler, Chris, Ziemba, Luke | Atmospheric Carbon Dioxide, Atmospheric Carbon Monoxide, Methane, Sulfur Compounds, Trace Gases/Trace Species, Nitrogen Dioxide, Nitrogen Oxides, Atmospheric Chemistry, Nitrogen Compounds, Carbon And Hydrocarbon Compounds, Tropospheric Ozone, Atmospheric Ozone | ||
| An integrated analysis of contemporary methane emissions and concentration trends over China using in situ and satellite observations and model ... | Tan, Haiyue, Zhang, Lin, Lu, Xiao, Zhao, Yuanhong, Yao, Bo, Parker, Robert J., Boesch, Hartmut | Atmospheric Carbon Monoxide, Carbonaceous Aerosols, Air Quality, Trace Gases/Trace Species, Non-methane Hydrocarbons/Volatile Organic Compounds, Industrial Emissions, Fossil Fuel Burning, Biomass Burning, Atmospheric Carbon Dioxide, Sulfur Compounds, Halocarbons And Halogens, Atmospheric Ozone | ||
| An Analysis of Spatio-Temporal Relationship between Satellite-Based Land | Liu, Jiang, Hagan, Daniel Fiifi Tawia, Holmes, Thomas R., Liu, Yi | Emissivity, Land Surface Temperature, Land Use/Land Cover Classification, Carbon Monoxide, Geopotential Height, Tropopause, Methane, Atmospheric Ozone, Surface Pressure, Outgoing Longwave Radiation, Air Temperature, Upper Air Temperature, Humidity, Total Precipitable Water, Water Vapor, Water Vapor Profiles, Cloud Liquid Water/Ice, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Skin Temperature, Sea Surface Temperature, Heat Flux, Skin Temperature, Specific Humidity, Precipitation Rate, Snow/Ice, Evaporation, Latent Heat Flux, Latent Heat Flux, Sensible Heat Flux, Diffusion, Surface Winds, Wind Speed, U/V Wind Components, Wind Stress, Wind Stress, Surface Roughness, Planetary Boundary Layer Height, Ice Fraction, Canopy Characteristics, Evergreen Vegetation, Crown, Deciduous Vegetation, Leaf Characteristics, Vegetation Cover |
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| A global analysis of the break-even prices to reduce atmospheric carbon dioxide via forest plantation and avoided deforestation | Chu, Long, Grafton, R. Quentin, Nguyen, Hai | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| A new approach for determining optimal placement of PM2. 5 air quality sensors: case study for the contiguous United States | Kelp, Makoto M, Lin, Samuel, Kutz, J Nathan, Mickley, Loretta J | Particulate Matter, Particulates | ||
| A Simple Model for Tropical Convective Cloud Shield Area Growth and Decay Rates Informed by Geostationary IR, GPM, and Aqua/AIRS Satellite Data | Elsaesser, Gregory S., Roca, Remy, Fiolleau, Thomas, Del Genio, Anthony D., Wu, Jingbo | 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, Atmospheric Water Vapor, Precipitation |
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| A new method for inferring city emissions and lifetimes of nitrogen oxides from high-resolution nitrogen dioxide observations: a model study | Liu, Fei, Tao, Zhining, Beirle, Steffen, Joiner, Joanna, Yoshida, Yasuko, Smith, Steven J., Knowland, K. Emma, Wagner, Thomas | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| A Framework for Characterizing the Multilateral and Directional | Liu, Jianzheng, Ho, Hung Chak | Geopotential Height, Altitude, Surface Temperature, Upper Air Temperature, Dew Point Temperature, Air Temperature, Cloud Top Temperature, Atmospheric Winds, Surface Winds, U/V Wind Components, Upper Level Winds, U/V Wind Components, Vertical Wind Velocity/Speed, Atmospheric Pressure, Sea Level Pressure, Cloud Top Pressure, Sea Level Pressure, Surface Pressure, Specific Humidity, Total Precipitable Water, Cloud Liquid Water/Ice, Atmospheric Water Vapor, Atmospheric Ozone, Oxygen Compounds, Boundary Layer Winds, Skin Temperature, 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 1.0), PARTICULATE MATTER (PM 10) | ||
| A data-augmentation approach to deriving long-term surface SO2 across Northern China: Implications for interpretable machine learning | Zhang, Shifu, Mi, Tan, Wu, Qinhuizi, Luo, Yuzhou, Grieneisen, Michael L., Shi, Guangming, Yang, Fumo, Zhan, Yu | Heat Flux, Air Temperature, Skin Temperature, Specific Humidity, Water Vapor, Precipitation Rate, Snow/Ice, Evaporation, Latent Heat Flux, Latent Heat Flux, Sensible Heat Flux, Diffusion, Surface Winds, Wind Speed, U/V Wind Components, Wind Stress, Wind Stress, Surface Roughness, Planetary Boundary Layer Height, Ice Fraction, Surface Temperature, Skin Temperature, Upper Air Temperature, Atmospheric Winds, Surface Winds, Atmospheric Pressure, Sea Level Pressure, Surface Pressure, Total Precipitable Water, Cloud Liquid Water/Ice, Atmospheric Water Vapor, Atmospheric Ozone, Oxygen Compounds, Altitude, Boundary Layer Winds, 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 1.0), PARTICULATE MATTER (PM 10), Population Density |
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| A comparison of the impact of TROPOMI and OMI tropospheric NO2 on global chemical data assimilation | Sekiya, Takashi, Miyazaki, Kazuyuki, Eskes, Henk, Sudo, Kengo, Takigawa, Masayuki, Kanaya, Yugo | Land Use/Land Cover Classification, Atmospheric Carbon Monoxide, Carbonaceous Aerosols, Air Quality, Trace Gases/Trace Species, Non-methane Hydrocarbons/Volatile Organic Compounds, Industrial Emissions, Fossil Fuel Burning, Biomass Burning, Atmospheric Carbon Dioxide, Sulfur Compounds, Halocarbons And Halogens, Atmospheric Ozone, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| A CO2-independent cloud mask from Infrared Atmospheric Sounding Interferometer (IASI) radiances for climate applications | Whitburn, Simon, Clarisse, Lieven, Crapeau, Marc, August, Thomas, Hultberg, Tim, Coheur, Pierre Francois, Clerbaux, Cathy | Carbon Monoxide, Tropospheric Ozone, Geopotential Height, Tropopause, Methane, Atmospheric Ozone, Sulfur Dioxide, Surface Pressure, Outgoing Longwave Radiation, Surface Temperature, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor Profiles, Cloud Droplet Concentration/Size, Cloud Liquid Water/Ice, Cloud Optical Depth/Thickness, Cloud Fraction, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Cloud Types, Precipitation Rate, Emissivity, Skin Temperature, Sea Surface Temperature, Brightness Temperature | ||
| Aerosol atmospheric rivers: climatology, event characteristics, and detection algorithm sensitivities | Chakraborty, Sudip, Guan, Bin, Waliser, Duane E., da Silva, Arlindo M. | 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 1.0), PARTICULATE MATTER (PM 10) | ||
| A vertical transport window of water vapor in the troposphere over the Tibetan Plateau with implications for global climate change | Xu, Xiangde, Sun, Chan, Chen, Deliang, Zhao, Tianliang, Xu, Jianjun, Zhang, Shengjun, Li, Juan, Chen, Bin, Zhao, Yang, Xu, Hongxiong, Dong, Lili, Sun, Xiaoyun, Zhu, Yan | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | ||
| Building a machine learning surrogate model for wildfire activities within a global Earth system model | Zhu, Qing, Li, Fa, Riley, William J., Xu, Li, Zhao, Lei, Yuan, Kunxiaojia, Wu, Huayi, Gong, Jianya, Randerson, James | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| Modelling the growth of atmospheric nitrous oxide using a global hierarchical inversion | Stell, Angharad C., Bertolacci, Michael, Zammit-Mangion, Andrew, Rigby, Matthew, Fraser, Paul J., Harth, Christina M., Krummel, Paul B., Lan, Xin, Manizza, Manfredi, Muhle, Jens, O'Doherty, Simon, Prinn, Ronald G., Weiss, Ray F., Young, Dickon, Ganesan, Anita L. | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| Model Analyses of Changes in Spring Surface Ozone Concentrations over Shandong Province in the Period of 20142017 | Li, Jialin, Cai, Juzhen, Liu, Houfeng, Han, Xiao, Xu, Yongfu, Cai, Xiaofang, Zhang, Meigen | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| Model analysis of vertical exchange of boundary layer ozone and its impact on surface air quality over the North China Plain | Liu, Hailing, Han, Xiao, Tang, Guiqian, Zhang, Jinqiang, Xia, Xiangao, Zhang, Meigen, Meng, Lihong | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| Model evaluation of short-lived climate forcers for the Arctic | Whaley, Cynthia H., Mahmood, Rashed, von Salzen, Knut, Winter, Barbara, Eckhardt, Sabine, Arnold, Stephen, Beagley, Stephen, Becagli, Silvia, Chien, Rong-You, Christensen, Jesper, Damani, Sujay Manish, Dong, Xinyi, Eleftheriadis, Konstantinos, Evangeliou, Nikolaos, Faluvegi, Gregory, Flanner, Mark, Fu, Joshua S., Gauss, Michael, Giardi, Fabio, Gong, Wanmin, Hjorth, Jens Liengaard, Huang, Lin, Im, Ulas, Kanaya, Yugo, Krishnan, Srinath, Klimont, Zbigniew, Kuhn, Thomas, Langner, Joakim, Law, Kathy S., Marelle, Louis, Massling, Andreas, Olivie, Dirk, Onishi, Tatsuo, Oshima, Naga, Peng, Yiran, Plummer, David A., Popovicheva, Olga, Pozzoli, Luca, Raut, Jean-Christophe, Sand, Maria, Saunders, Laura N., Schmale, Julia, Sharma, Sangeeta, Skeie, Ragnhild Bieltvedt, Skov, Henrik, Taketani, Fumikazu, Thomas, Manu A., Traversi, Rita, Tsigaridis, Kostas, Tsyro, Svetlana, Turnock, Steven, Vitale, Vito, Walker, Kaley A., Wang, Minqi, Watson-Parris, Duncan, Weiss-Gibbons, Tahya | Atmospheric Ozone, Volatile Organic Compounds, Tropospheric Ozone, Air Quality, Atmospheric Chemistry, Oxygen Compounds, Cloud Optical Depth/Thickness, Cloud Top Pressure, Non-methane Hydrocarbons/Volatile Organic Compounds, Methane, Volatile Organic Compounds, Carbon And Hydrocarbon Compounds, Atmospheric Chemistry, Air Quality | ||
| H2O2 and CH3OOH (MHP) in the remote atmosphere. I: Global distribution and regional influences | Allen, Hannah M., Crounse, John D., Kim, Michelle J., Teng, Alexander P., Ray, Eric A., McKain, Kathryn, Sweeney, Colm, Wennberg, Paul O. | Atmospheric Carbon Monoxide, Carbonaceous Aerosols, Air Quality, Trace Gases/Trace Species, Non-methane Hydrocarbons/Volatile Organic Compounds, Industrial Emissions, Fossil Fuel Burning, Biomass Burning, Atmospheric Carbon Dioxide, Sulfur Compounds, Halocarbons And Halogens, Atmospheric Ozone | ||
| H2O2 and CH3OOH (MHP) in the remote atmosphere. II: Physical and chemical controls | Allen, Hannah M., Bates, Kelvin H., Crounse, John D., Kim, Michelle J., Teng, Alexander P., Ray, Eric A., Wennberg, Paul O. | Atmospheric Carbon Monoxide, Carbonaceous Aerosols, Air Quality, Trace Gases/Trace Species, Non-methane Hydrocarbons/Volatile Organic Compounds, Industrial Emissions, Fossil Fuel Burning, Biomass Burning, Atmospheric Carbon Dioxide, Sulfur Compounds, Halocarbons And Halogens, Atmospheric Ozone, Nitrogen Dioxide, Nitric Oxide, Nitrogen Oxides, Nitrogen Oxides, Formaldehyde, Peroxyacyl Nitrate, Smog |