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Publications Citing MMS Data
List of peer-reviewed publications that cite using MMS data.
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| Title | Year Sort ascending | Author | Topic | Dataset |
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| Aerosol iodine recycling is a major control on tropospheric reactive iodine abundance | Moon, Allison R., Liu, Leyang, Wang, Xuan, Chan, Yuk-Chun, Fritzmann, Alyson, Pound, Ryan, Lees, Amy, Marden, Lewis, Evans, Mat, Carpenter, Lucy J., Stutz, Jochen, Thornton, Joel A., Novak, Gordon, Rollins, Andrew, Schill, Gregory P., He, Xu-Cheng, Finkenzeller, Henning, Reza, Mago, Volkamer, Rainer, Bates, Kelvin H., Saiz-Lopez, Alfonso, Mahajan, Anoop S., Alexander, Becky | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols | ||
| An assessment of a CO2 transport model simulations using | Das, Chiranjit, Kunchala, Ravi Kumar, Patra, Prabir K., Chandra, Naveen, Ishijima, Kentaro, Machida, Toshinobu | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols |
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| Atmospheric oxygen constraints on Southern Ocean productivity and drivers of carbon uptake | Jin, Yuming, Stephens, Britton B., Long, Matthew C., Manizza, Manfredi, Lovenduski, Nicole S., Nevison, Cynthia, Morgan, Eric J., Keeling, Ralph F. | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols | ||
| Evaluation of UKESM aerosol size and composition using ATom measurements | He, Xu-Cheng, Abraham, Nathan Luke, Ding, Han, Russo, Maria R., Grosvenor, Daniel P., Ge, Yao, Wang, Xuemei, Jones, Anthony C., Campuzano-Jost, Pedro, Nault, Benjamin, Kupc, Agnieszka, Blake, Donald, Jimenez, Jose L., Williamson, Christina J., Weber, James, Archibald, Alexander T., Gordon, Hamish | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols, Sea Salt, Aerosol Particle Properties, Aerosols, Aerosol Size Distribution, Black Carbon | ||
| Interannual variations in terrestrial carbon uptake are dominated by temperature and the vapor pressure deficit rather than water availability | Jiang, Dong, Yu, Zhe, Wang, Jianhua, Hao, Mengmeng, Zhang, Xingxing, Yan, Xiaoxi, Liu, Jinglei, Li, Zhaoxing, Liu, Zhaofei | Land Use/Land Cover Classification, Gross Primary Production (gpp), Vegetation Cover, Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Primary Production | ||
| Global CO emissions and drivers of atmospheric CO trends constrained by MOPITT satellite measurements | Tang, Zhaojun, Yang, Panpan, Miyazaki, Kazuyuki, Worden, John, Worden, Helen, Henze, Daven K., Jones, Dylan B. A., Jiang, Zhe | Altitude | ||
| Asian Summer Monsoon AnticycloneThe Primary Entryway for Chlorinated VeryShortLived Substances to the Stratosphere | Liang, Qing, Newman, Paul A., Fleming, Eric L., Lait, Leslie R., Atlas, Elliot, Pan, Laura, Kinnison, Doug, Western, Luke M., Schauffler, Sue, Smith, Katie, Treadaway, Victoria, Hendershot, Roger, Donnelly, Stephen, Lueb, Richard | Aerosols, Atmospheric Carbon Monoxide, Sulfur Compounds, Atmospheric Winds, Biomass Burning, Sulfur Dioxide, Surface Pressure, Atmospheric Pressure, Atmospheric Temperature, Sulfate, Humidity, Wind Speed, Organic Particles, Potential Temperature, Dust/Ash/Smoke, Atmospheric Water Vapor, Atmospheric Chemistry, Carbon And Hydrocarbon Compounds, Relative Humidity, Sea Level Pressure, Specific Humidity, Static Temperature, Potential Vorticity, Wind Dynamics, Black Carbon | ||
| On the Fate of Aerosols Produced by New Particle Formation in the Upper | Ueyama, R., Smith, W. P., Brown, M., Jensen, E. J., Ziemba, L., Bui, T. P., DeanDay, J., Williamson, C. J. | Aerosols, Atmospheric Carbon Monoxide, Sulfur Compounds, Atmospheric Winds, Biomass Burning, Sulfur Dioxide, Surface Pressure, Atmospheric Pressure, Atmospheric Temperature, Sulfate, Humidity, Wind Speed, Organic Particles, Potential Temperature, Dust/Ash/Smoke, Atmospheric Water Vapor, Atmospheric Chemistry, Carbon And Hydrocarbon Compounds, Relative Humidity, Sea Level Pressure, Specific Humidity, Static Temperature, Potential Vorticity, Wind Dynamics, Black Carbon | ||
| Measurement report: Characterization of aerosol hygroscopicity over Southeast Asia during the NASA CAMP2Ex campaign | Lorenzo, Genevieve Rose, Ziemba, Luke D., Arellano, Avelino F., Barth, Mary C., Crosbie, Ewan C., DiGangi, Joshua P., Diskin, Glenn S., Ferrare, Richard, Hilario, Miguel Ricardo A., Shook, Michael A., Tilmes, Simone, Wang, Jian, Xiao, Qian, Zhang, Jun, Sorooshian, Armin | Aerosols, Sulfur Compounds, Aerosol Particle Properties, Sulfate Particles, Nitrate Particles, Organic Particles, Atmospheric Chemistry, Nitrogen Compounds, Chemical Composition, AMMONIUM AEROSOLS, Sea Salt, AEROSOL ABSORPTION, Angstrom Exponent, AEROSOL SINGLE SCATTERING ALBEDO, Cloud Condensation Nuclei, Chemical Composition, Non-refractory Aerosol Organic Mass, Aerosol Concentration, Aerosol Size Distribution, Aerosol Extinction, Carbonaceous Aerosols, Atmospheric Winds, Atmospheric Temperature, Surface Temperature, Upper Level Winds, Humidity, Wind Speed, Dew Point Temperature, Potential Temperature, Air Temperature, Atmospheric Water Vapor, Water Vapor Indicators, Relative Humidity, Wind Speed, Wind Direction, Humidity Mixing Ratio, U/V Wind Components, Dew Point Temperature, Horizontal Wind Velocity/Speed, Vertical Wind Velocity/Speed, Airspeed/Ground Speed, Atmospheric Pressure, Atmospheric Carbon Dioxide, Atmospheric Carbon Monoxide, Methane, Trace Gases/Trace Species, Nitrogen Dioxide, Nitrogen Oxides, Carbon And Hydrocarbon Compounds, Tropospheric Ozone, Atmospheric Ozone, Particle Size Distribution, Clouds, Cloud Optical Depth/Thickness, Cloud Liquid Water/Ice, Cloud Droplet Distribution, Cloud Microphysics, Cloud Droplet Concentration/Size, Spectral Irradiance, ICE NUCLEI | ||
| Aircraft observations of biomass burning pollutants in the equatorial lower stratosphere over the tropical western Pacific during boreal winter | Pittman, Jasna V., Daube, Bruce C., Wofsy, Steven C., Atlas, Elliot L., Navarro, Maria A., Hintsa, Eric J., Moore, Fred L., Dutton, Geoff S., Elkins, James W., Thornberry, Troy D., Rollins, Andrew W., Jensen, Eric J., Bui, Thaopaul, Dean-Day, Jonathan, Pfister, Leonhard | Atmospheric Carbon Dioxide, Atmospheric Carbon Monoxide, Carbonyl Sulfide, Halocarbons, Non-methane Hydrocarbons/Volatile Organic Compounds, Molecular Hydrogen, Methane, Nitrous Oxide, Atmospheric Ozone, Sulfur Compounds, Water Vapor, Barometric Altitude, Upper Air Temperature, Static Pressure, Atmospheric Winds, Vertical Wind Velocity/Speed | ||
| Stratospheric aerosol perturbation by tropospheric biomass burning and deep convection | Shen, X., Jacquot, J. L., Li, Y., Sharpe, S. A. L., Dykema, J. A., Schill, G. P., Bowman, K. P., Homeyer, C. R., Fraund, M., Moffet, R. C., Olayemi, T. E., Pittman, J. V., Rivera-Adorno, F. A., Murphy, D. M., Smith, J. B., Laskin, A., Keutsch, F. N., Cziczo, D. J. | Aerosols, Atmospheric Carbon Dioxide, Atmospheric Carbon Monoxide, Halocarbons, Methane, Atmospheric Ozone, Sulfur Compounds, Static Pressure, Atmospheric Winds, Atmospheric Temperature, Upper Level Winds, Nitrogen Dioxide, Atmospheric Water Vapor, Formaldehyde, Oxygen Compounds, Hydrogen Compounds, Nitrogen Compounds, Carbon And Hydrocarbon Compounds, Water Vapor Indicators, Halocarbons And Halogens, Halons, Water Vapor, Atmospheric Chemistry, Aerosol Concentration, Aerosol Size Distribution, Chlorine Nitrate, Photolysis Rates, Atmospheric Pressure, U/V Wind Components, Horizontal Wind Velocity/Speed, Vertical Wind Velocity/Speed, Nitrous Oxide, Airspeed/Ground Speed, Altitude, Chemical Composition, Sea Salt, Nitrate Particles, Sulfate Particles, Organic Particles | ||
| A nitrate photolysis source of tropospheric HONO is incompatible with current understanding of atmospheric chemistry | Rowlinson, Matthew J., Carpenter, Lucy J., Evans, Mat J., Lee, James D., Andersen, Simone T., Sherwen, Tomas, Callaghan, Anna B., Sommariva, Roberto, Bloss, William, Hou, Siqi, Crilley, Leigh R., Pfeilsticker, Klaus, Weyland, Benjamin, Ryerson, Thomas B., Veres, Patrick R., Campuzano-Jost, Pedro, Guo, Hongyu, Nault, Benjamin A., Jimenez, Jose L., Fomba, Khanneh Wadinga | Visible Radiance, THERMAL INFRARED, Infrared Radiance, 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 | ||
| A reactive condensation particle counter for measuring atmospherically relevant concentrations of sulfuric acid | Casalnuovo, Dominic A., Cheng, Darren, Romero-Flores, Michel, Montesinos-Castellanos, Alejandro, Jen, Coty N. | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols | ||
| Can the COVID19 Decrease in Aircraft Flights Inform us of Whether the Addition of Efficient INP to Cirrus Altitudes Cools the Climate? | Penner, Joyce E., Zhu, Jialei, Garnier, Anne | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols | ||
| Atmospheric Vapor Pressure Deficit Outweighs Soil Moisture Deficit in Controlling Global Ecosystem Water Use Efficiency | Li, Chao, Zhang, Dahong, Zhang, Shiqiang, Wen, Yanan, Wang, Wenhui, Chen, Youdong, Peng, Jian | Gross Primary Production (gpp), Vegetation Cover, Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Primary Production, Land Use/Land Cover Classification | ||
| Limited longterm photolysis of stratospheric organic aerosols with implications for CESM modeling | Guan, Jian, Solomon, Susan, Murphy, Daniel M., Stone, Kane, Yu, Pengfei, Kinnison, Douglas, Schill, Gregory P., Tilmes, Simone, Lawler, Michael J. | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols, Aerosol Particle Properties, Chemical Composition, Black Carbon, Aerosol Extinction |
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| Impacts of DMS Emissions and Chemistry on E3SMv2 Simulated Cloud Droplet | Kang, Litai, Marchand, Roger, Ma, PoLun, Huang, Meng, Wood, Robert, Jongebloed, Ursula, Alexander, Becky | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols | ||
| Enhanced CH4 emissions from global wildfires likely due to undetected small fires | Zhao, Junri, Ciais, Philippe, Chevallier, Frederic, Canadell, Josep G., van der Velde, Ivar R., Chuvieco, Emilio, Chen, Yang, Zhang, Qiang, He, Kebin, Zheng, Bo | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols, Boundary Layer Winds, Air Mass/Density, Convective Clouds/Systems (Observed/Analyzed), Convection | ||
| Correction of Simulation Biases in Stratospheric Methane Concentrations | Zhang, Peixuan, Zhang, Yuzhong, Liang, Ruosi | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols, Methane, Nitrous Oxide | ||
| Global Impacts of Marine Methanethiol Emissions and Chemistry in the Atmosphere | Tashmim, Linia, Porter, William C., Bertram, Timothy H., Kilgour, Delaney B., Rollins, Andrew | 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, Sulfur Dioxide, Sulfur Oxides | ||
| Global observations of acetyl peroxynitrate (PAN) in the remote troposphere | Lee, Young Ro, Huey, L. Gregory, Tanner, David J., Roberts, James M., Wang, Yuhang, Wennberg, Paul O., Crounse, John D., Allen, Hannah, Apel, Eric C., Hills, Alan J., Hornbrook, Rebecca S., Elkins, James W., Hintsa, Eric, Moore, Fred, Hall, Samuel R., Ullmann, Kirk, McKain, Kathryn, Sweeney, Colm, Ryerson, Thomas B., Peischl, Jeff, Tompson, Chelsea R., Bourgeois, Ilann, Ray, Eric, Newman, Paul A., Strode, Sarah | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols, Boundary Layer Winds, Air Mass/Density, Convective Clouds/Systems (Observed/Analyzed), Convection, Carbon And Hydrocarbon Compounds, Nitrogen Oxides, Carbon Monoxide, Methane, Black Carbon, Atmospheric Temperature, Atmospheric Pressure, Atmospheric Winds |
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| Observational ozone datasets over the global oceans and polar regions (version 2024) | Kanaya, Yugo, Sommariva, Roberto, Saiz-Lopez, Alfonso, Mazzeo, Andrea, Koenig, Theodore K., Kawana, Kaori, Johnson, James E., Colomb, Aurelie, Tulet, Pierre, Molloy, Suzie, Galbally, Ian E., Volkamer, Rainer, Mahajan, Anoop, Halfacre, John W., Shepson, Paul B., Schmale, Julia, Angot, Helene, Blomquist, Byron, Shupe, Matthew D., Helmig, Detlev, Gil, Junsu, Lee, Meehye, Coburn, Sean C., Ortega, Ivan, Chen, Gao, Lee, James, Aikin, Kenneth C., Parrish, David D., Holloway, John S., Ryerson, Thomas B., Pollack, Ilana B., Williams, Eric J., Lerner, Brian M., Weinheimer, Andrew J., Campos, Teresa, Flocke, Frank M., Spackman, J. Ryan, Bourgeois, Ilann, Peischl, Jeff, Thompson, Chelsea R., Staebler, Ralf M., Aliabadi, Amir A., Gong, Wanmin, Van Malderen, Roeland, Thompson, Anne M., Stauffer, Ryan M., Kollonige, Debra E., Gomez Martin, Juan Carlos, Fujiwara, Masatomo, Read, Katie, Rowlinson, Matthew, Sato, Keiichi, Kurokawa, Junichi, Iwamoto, Yoko, Taketani, Fumikazu, Takashima, Hisahiro, Navarro-Comas, Monica, Panagi, Marios, Schultz, Martin G. | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols | ||
| The Atmospheric Potential Oxygen forward Model Intercomparison Project | Jin, Yuming, Stephens, Britton B., Long, Matthew C., Chandra, Naveen, Chevallier, Frederic, Hooghiem, Joram J. D., Luijkx, Ingrid T., Maksyutov, Shamil, Morgan, Eric J., Niwa, Yosuke, Patra, Prabir K., Rodenbeck, Christian, Vance, Jesse | Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols | ||
| Toward Realistic Prognostic Modeling of the Methane Chemical Loss | Mirrezaei, Mohammad Amin, Gaubert, Benjamin, Arellano, Avelino F., Fernandez, Rafael P., Ortega, Ivan, Emmons, Louisa K., Kinnison, Douglas, Roozitalab, Behrooz, McKain, Kathryn, Bruhwiler, Lori, Oh, Youmi, SaizLopez, Alfonso, Cuevas, Carlos A., Feng, Chuan, Xu, Yangyang, Brasseur, Guy P. | Atmospheric Chemistry, Carbon And Hydrocarbon Compounds, Air Quality, Carbon Monoxide, Atmospheric Temperature, Surface Temperature, Atmospheric Pressure, Surface Pressure, Atmospheric Water Vapor, Water Vapor Indicators, Water Vapor, Carbon Monoxide Profiles, Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols | ||
| Validation of formaldehyde products from three satellite retrievals (OMI SAO, OMPS-NPP SAO, and OMI BIRA) in the marine atmosphere with four seasons of ... | Liao, Jin, Wolfe, Glenn M., Kotsakis, Alexander E., Nicely, Julie M., St. Clair, Jason M., Hanisco, Thomas F., Gonzalez Abad, Gonzalo, Nowlan, Caroline R., Ayazpour, Zolal, De Smedt, Isabelle, Apel, Eric C., Hornbrook, Rebecca S. | Formaldehyde, Biomass Burning, Halocarbons And Halogens, Trace Gases/Trace Species, Sulfur Compounds, Air Quality, Atmospheric Carbon Monoxide, Atmospheric Ozone, Non-methane Hydrocarbons/Volatile Organic Compounds, Fossil Fuel Burning, Industrial Emissions, Atmospheric Carbon Dioxide, Carbonaceous Aerosols |
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