Pubs by Program
This page lists the publications in the ESD Publications database, sorted by first author and year. To filter the list, select one or more Research Program(s) to filter the list, or else specify a publication year (e.g., 2011). Options to view other pages of the list are provided at the bottom of the page.
| Publication Citation | Research Program(s) |
|---|---|
| Vera, T., et al. (2022), An overview of methodologies for the determination of volatile organic compounds in indoor air., Applied Spectroscopy Reviews, 57(8), 625-674, doi:10.1080/05704928.2022.2085735. | Atmospheric Composition, TCP |
| Vernier, H., N. Rastogi, H. Liu, A.K. Pandit, K. Bedka, A. Patel, M.V. Ratnam, B.S. Kumar, B. Zhang, H. Gadhavi, F. Wienhold, G. Berthet, and J.-P. Vernier (2022), Exploring the inorganic composition of the Asian Tropopause Aerosol Layer using medium-duration balloon flights, Atmos. Chem. Phys., 22, 12675-12694, doi:10.5194/acp-22-12675-2022. | MAP, ACMAP, UARP |
| Wang, J., L. Castro-Garcia, G.D. Jenerette, M. Chandler, C. Ge, D. Kucera, S. Koutzoukis, and J. Zeng (2022), Resolving and predicting neighborhood vulnerability to urban heat and air pollution: insights from a pilot project of community science, GeoHealth, J. Zeng., 6, e2021GH000575. | ASP, MAP, Atmospheric Composition, ACMAP |
| Wang, M., M. Xiao, B. Bertozzi, G. Marie, B. Rorup, M. Schervish, H. Gordon, N. Donahue, et al. (2022), Synergistic HNO3–H2SO4–NH3 upper tropospheric particle formation, Nature, doi:10.1038/s41586-022-04605-4. | ACMAP |
| Wang, W., X. Liu, J. Bi, and Y. Liu (2022), A machine learning model to estimate ground-level ozone concentrations in California using TROPOMI data and high-resolution meteorology, Environment International, 158, 106917, doi:10.1016/j.envint.2021.106917. | Atmospheric Composition |
| Wei, J., S. Liu, Z. Li, C. Liu, K. Qin, X. Liu, R.T. Pinker, R.R. Dickerson, J. Lin, K.F. Boersma, L. Sun, R. Li, W. Xue, Y. Cui, C. Zhang, and J. Wang (2022), Ground-Level NO2 Surveillance from Space Across China for High Resolution Using Interpretable Spatiotemporally Weighted Artificial Intelligence, Environ. Sci. Technol., doi:10.1021/acs.est.2c03834. | Atmospheric Composition |
| Wei, J., Z. Li, K. Li, R.R. Dickerson, R.T. Pinker, J. Wang, X. Liu, L. Sun, W. Xue, and M. Cribb (2022), Full-coverage mapping and spatiotemporal variations of ground-level ozone (O3) pollution from 2013 to 2020 across China, Remote Sensing of Environment, 270, 112775, doi:10.1016/j.rse.2021.112775. | ASP, MAP, Atmospheric Composition, ACMAP |
| Wells, K.C., D.B. Millet, V.H. Payne, C. Vigouroux, C.A.B. Aquino, M. Mazière, J.A. Gouw, M. Graus, T. Kurosu, C. Warneke, and A. Wisthaler (2022), Next‐generation isoprene measurements from space: Detecting daily variability at high resolution, J. Geophys. Res., 127, e2021JD036181, doi:10.1029/2021JD036181. | Atmospheric Composition |
| Wolfe, G.M., T.F. Hanisco, H.L. Arkinson, D.R. Blake, A. Wisthaler, T. Mikoviny, T.B. Ryerson, I. Pollack, J. Peischl, P.O. Wennberg, J.D. Crounse, J.M. St. Clair, A. Teng, L.G. Huey, X. Liu, A. Fried, P. Weibring, D. Richter, J. Walega, S.R. Hall, K. Ullmann, J.L. Jimenez, P. Campuzano-Jost, T.P. Bui, G. Diskin, J.R. Podolske, G. Sachse, and R.C. Cohen (2022), Photochemical evolution of the 2013 California Rim Fire: synergistic impacts of reactive hydrocarbons and enhanced oxidants, Atmos. Chem. Phys., doi:10.5194/acp-22-4253-2022. | TCP |
| Worden, H.M., G.L. Francis, S.S. Kulawik, K.W. Bowman, K. Cady-Pereira, D. Fu, J.D. Hegarty, V. Kantchev, M. Luo, V.H. Payne, J.R. Worden, R. Commane, and K. McKain (2022), TROPESS/CrIS carbon monoxide profile validation with NOAA GML and ATom in situ aircraft observations, Atmos. Meas. Tech., 15, 5383-5398, doi:10.5194/amt-15-5383-2022. | TCP |
| Xu, L., J.D. Crounse, K.T. Vasquez, H. Allen, P.O. Wennberg, I. Bourgeois, S.S. Brown, P. Campuzano-Jost, M.M. Coggon, J.H. Crawford, J.P. DiGangi, G.S. Diskin, A. Fried, E.M. Gargulinski, J.B. Gilman, G.I. Gkatzelis, H. Guo, J.W. Hair, S.R. Hall, H.A. Halliday, T.F. Hanisco, R.A. Hannun, C.D. Holmes, L.G. Huey, J.L. Jimenez, A. Lamplugh, Y.R. Lee, J. Liao, J. Lindaas, J.A. Neuman, J.B. Nowak, J. Peischl, D.A. Peterson, F. Piel, D. Richter, P.S. Rickly, M.A. Robinson, A.W. Rollins, T.B. Ryerson, K. Sekimoto, V. Selimovic, T. Shingler, A.J. Soja, J.M. St. Clair, D.J. Tanner, K. Ullmann, P.R. Veres, J. Walega, C. Warneke, R.A. Washenfelder, P. Weibring, A. Wisthaler, G.M. Wolfe, C.C.&. Womack, and R.J. Yokelson (2022), Ozone chemistry in western U.S. wildfire plumes, Science Advances, 7, eabl3648, doi:10.1126/sciadv.abl3648. | Atmospheric Composition, TCP |
| Xu, L., J.D. Crounse, K.T. Vasquez, H. Allen, P.O. Wennberg, I. Bourgeois, S.S. Brown, P. Campuzano-Jost, M.M. Coggon, J.H. Crawford, J.P. DiGangi, G.S. Diskin, A. Fried, E.M. Gargulinski, J.B. Gilman, G.I. Gkatzelis, H. Guo, J.W. Hair, S.R. Hall, H.A. Halliday, T.F. Hanisco, R.A. Hannun, C.D. Holmes, L.G. Huey, J.L. Jimenez, A. Lamplugh, Y.R. Lee, J. Liao, J. Lindaas, J.A. Neuman, J.B. Nowak, J. Peischl, D.A.L. Peterson, F. Piel, D. Richter, P.S. Rickly, M.A. Robinson, A.W. Rollins, T.B. Ryerson, K. Sekimoto, V. Selimovic, T. Shingler, A.J. Soja, J.M. St. Clair, D.J. Tanner, K. Ullmann, P.R. Veres, J.G. Walega, C. Warneke, R.A. Washenfelder, P. Weibring, A. Wisthaler, G.M. Wolfe, C.C. Womack, and R.J. Yokelson (2022), Adv.7, eabl3648 (2021) 8 December 2021SCIENCE ADVANCES, Ozone chemistry in western U.S. wildfire plumes, Xu et al., Sci., 7, eabl3648, doi:10.1126/sciadv.abl3648. | TCP |
| Xu, Y., J. Arevalo, A. Ouyed, Zeng, and T.S. Products (2022), Precipitation over the U.S. Coastal Land/Water Using Gauge-Corrected Multi-Radar/Multi-Sensor System and Three Satellite Products, Remote Sens., 14, 4557, doi:10.3390/rs14184557. | RSP, ADP |
| Yang, A., Q. Tan, C. Rajapakshe, M. Chin, and H. Yu (2022), Global premature mortality by dust and pollution PM2.5 estimated from aerosol reanalysis of the modern-era retrospective analysis for research and applications, version 2, Frontiers in Environmental Science, 10, 975755, doi:10.3389/fenvs.2022.975755. | Atmospheric Composition, ACMAP |
| Yu, F., G. Luo, A.A. Nair, S. Eastham, C.J. Williamson, A. Kupc, and C.A. Brock (2022), Particle number concentrations and size distributions in the stratosphere: Implications of nucleation mechanisms and particle microphysics, Atmos. Chem. Phys., doi:10.5194/acp-2022-487. | TCP |
| Yue, J., S.D. Miller, W.C. Straka, Y.-J. Noh, M.-Y. Chou, R. Kahn, and V. Flower (2022), La Soufriere Volcanic Eruptions Launched Gravity Waves Into Space, Geophys. Res. Lett.. | ACMAP, ESI |
| Zamora, L.M., R.A. Kahn, N. Evangeliou, C.D.G. Zwaaftink, and K.B. Huebert (2022), Comparisons between the distributions of dust and combustion aerosols in MERRA-2, FLEXPART, and CALIPSO and implications for deposition freezing over wintertime Siberia, Atmos. Chem. Phys., doi:10.5194/acp-22-12269-2022. | ACMAP |
| Zeng, L., J. Dibb, E. Scheuer, J.M. Katich, J.P. Schwarz, I. Bourgeois, J. Peischl, T. Ryerson, C. Warneke, A.E. Perring, G.S. Diskin, J.P. DiGangi, J.B. Nowak, R.H. Moore, E.B. Wiggins, D. Pagonis, H. Guo, P. Campuzano-Jost, J.L. Jimenez, L. Xu, and R.J. Weber (2022), Characteristics and evolution of brown carbon in western United States wildfires, Atmos. Chem. Phys., doi:10.5194/acp-22-8009-2022. | TCP |
| Zeng, L., J. Dibb, E. Scheuer, J.M. Katich, J.P. Schwarz, I. Bourgeois, J. Peischl, T. Ryerson, C. Warneke, A.E. Perring, G.S. Diskin, J.P. DiGangi, J.B. Nowak, R.H. Moore, E.B. Wiggins, D. Pagonis, H. Guo, P. Campuzano-Jost, J.L. Jimenez, L. Xu, and R.J. Weber (2022), Characteristics and evolution of brown carbon in western United States wildfires, Atmos. Chem. Phys., doi:10.5194/acp-22-8009-2022. | TCP |
| Zhang, H., J. Wang, L.C. García, M. Zhou, C. Ge, T. Plessel, J. Szykman, R.C. Levy, B. Murphy, and T.L. Spero (2022), Improving Surface PM2.5 Forecasts in the United States Using an Ensemble of Chemical Transport Model Outputs: 2. Bias Correction With Satellite Data for Rural Areas, J. Geophys. Res., 127, e2021JD035563, doi:10.1029/2021JD035563. | ASP, IDS, MAP, ACMAP |