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)
Prather, M.J., X. Zhu, C.M. Flynn, S.A. Strode, J.M. Rodriguez, S.D. Steenrod, J. Liu, J.-F. Lamarque, A.M. Fiore, L.W. Horowitz, J. Mao, L.T. Murray, D.T. Shindell, and S.C. Wofsy (2017), Global atmospheric chemistry – which air matters, Atmos. Chem. Phys., 17, 9081-9102, doi:10.5194/acp-17-9081-2017. TCP
Prather, M.J., C.M. Flynn, A. Fiore, G. Correa, S.A. Strode, S.D. Steenrod, L.T. Murray, and J.-F. Lamarque (2018), ATom: Simulated Data Stream for Modeling ATom-like Measurements, Ornl Daac, doi:10.3334/ORNLDAAC/1597. TCP
Prather, M.J., C.M. Flynn, X. Zhu, S.D. Steenrod, S.A. Strode, A.M. Fiore, G. Correa, L.T. Murray, and J.-F. Lamarque (2018), How well can global chemistry models calculate the reactivity of short-lived greenhouse gases in the remote troposphere, knowing the chemical composition, Atmos. Meas. Tech., 11, 2653-2668, doi:10.5194/amt-11-2653-2018. TCP
Prather, M.J., H. Guo, and X. Zhu (2023), Deconstruction of tropospheric chemical reactivity using aircraft measurements: the Atmospheric Tomography Mission (ATom) data, Earth Syst. Sci. Data, 15, 1-51, doi:10.5194/essd-15-1-2023. Atmospheric Composition, ACMAP, TCP
Pusede, S.E., A.L. Steiner, and R.C. Cohen (2015), Temperature and Recent Trends in the Chemistry of Continental Surface Ozone, Chem. Rev., 115, 3898-3918, doi:10.1021/cr5006815. TCP
Pusede, S.E., and R.C. Cohen (2012), On the observed response of ozone to NOx and VOC reactivity reductions in San Joaquin Valley California 1995–present, Atmos. Chem. Phys., 12, 8323-8339, doi:10.5194/acp-12-8323-2012. TCP
Pusede, S.E., K.C. Duffey, A.A. Shusterman, A. Saleh, J.L. Laughner, P.J. Wooldridge, Q. Zhang, C.L. Parworth, H. Kim, S.L. Capps, L.C. Valin, C.D. Cappa, A. Fried, J. Walega, J.B. Nowak, A.J. Weinheimer, R.M. Hoff, T.A. Berkoff, A.J. Beyersdorf, J. Olson, J.H. Crawford, and R.C. Cohen (2016), On the effectiveness of nitrogen oxide reductions as a control over ammonium nitrate aerosol, Atmos. Chem. Phys., 16, 2575-2596, doi:10.5194/acp-16-2575-2016. TCP
Pye, H.O.T., L. Xu, B.H. Henderson, D. Pagonis, P. Campuzano Jost, H. Guo, J.L. Jimenez, C. Allen, T.N. Skipper, H.S. Halliday, B.N. Murphy, E.L. D'Ambro, P.O. Wennberg, B.K. Place, F.C. Wiser, V.F. McNeill, E.C. Apel, D.R. Blake, M.M. Coggon, and J.D. Crounse (2024), Evolution of Reactive Organic Compounds and Their Potential Health Risk in Wildfire Smoke Published as part of Environmental Science & Technology special issue “Wildland Fires: Emissions, Chemistry, Contamination, Climate, and Human Health”., Environ. Sci. Technol., 58, 19785-19796, doi:10.1021/acs.est.4c06187. Atmospheric Composition, TCP
Qu, W., J. Wang, X. Zhang, Z. Yang, and S. Gao (2015), Effect of cold wave on winter visibility over eastern China, J. Geophys. Res., 120, 2394-2406, doi:10.1002/2014JD021958. ACMAP, TCP
Ranjithkumar, A., H. Gordon, C. Williamson, A. Rollins, K. Pringle, A. Kupc, N.L. Abraham, C. Brock, and K. Carslaw (2021), Constraints on global aerosol number concentration, SO2 and condensation sink in UKESM1 using ATom measurements, Atmos. Chem. Phys., 21, 4979-5014, doi:10.5194/acp-21-4979-2021. ACMAP, TCP
Reed, A.J., A.M. Thompson, D.E. Kollonige, D.K. Martins, M.A. Tzortziou, J.R. Herman, T.A. Berkoff, and N.K. Abuhassan (2013), Effects of local meteorology and aerosols on ozone and nitrogen dioxide retrievals from OMI and pandora spectrometers in Maryland, USA during DISCOVER-AQ 2011, J Atmos Chem, 72, 455-482, doi:10.1007/s10874-013-9254-9. TCP
Ren, X., J.R. Olson, J.H. Crawford, W.H. Brune, J. Mao, R.B. Long, Z. Chen, G. Chen, M.A. Avery, G.W. Sachse, J.D. Barrick, G.S. Diskin, L.G. Huey, A. Fried, R.C. Cohen, B. Heikes, P.O. Wennberg, H.B. Singh, D.R. Blake, and R.E. Shetter (2008), HOx chemistry during INTEX-A 2004: Observation, model calculation, and comparison with previous studies, J. Geophys. Res., 113, D05310, doi:10.1029/2007JD009166. TCP
Rickly, P.S., L. Xu, J.D. Crounse, P.O. Wennberg, and A.W. Rollins (2021), Improvements to a laser-induced fluorescence instrument for measuring SO2 – impact on accuracy and precision, Atmos. Meas. Tech., 14, 2429-2439, doi:10.5194/amt-14-2429-2021. TCP
Rickly, P.S., H. Guo, P. Campuzano-Jost, J.L. Jimenez, G.M. Wolfe, R. Bennett, I. Bourgeois, J.D. Crounse, J.E. Dibb, J.P. DiGangi, G.S. Diskin, M. Dollner, E.M. Gargulinski, S.R. Hall, H.S. Halliday, T.F. Hanisco, R.A. Hannun, J. Liao, R. Moore, B.A. Nault, J.B. Nowak, J. Peischl, C.E. Robinson, T. Ryerson, K.J. Sanchez, M. Schöberl, A.J. Soja, J.M. St. Clair, K.L. Thornhill, K. Ullmann, P.O. Wennberg, B. Weinzierl, E.B. Wiggins, E.L. Winstead, and A.W. Rollins (2023), Emission factors and evolution of SO2 measured from biomass burning in wildfires and agricultural fires, Atmos. Chem. Phys., doi:10.5194/acp-22-15603-2022. TCP
Ridley, A., C.L. Heald, K.L. Thornhill, B.E. Anderson, M.J. Cubison, J.L. Jimenez, Y. Kondo, L.K. Sahu, J.E. Dibb, and C. Wang (2016), Evaluating model parameterizations of submicron aerosol scattering and absorption with in situ data from ARCTAS 2008 Matthew J. Alvarado1 , Chantelle R. Lonsdale1 , Helen L. Macintyre2,a , Huisheng Bian3,4 , Mian Chin4 , David, Atmos. Chem. Phys., 16, 9435-9455, doi:10.5194/acp-16-9435-2016. TCP
Ridley, D.A., C.L. Heald, J.F. Kok, and C. Zhao (2016), An observationally constrained estimate of global dust aerosol optical depth, Atmos. Chem. Phys., 16, 15097-15117, doi:10.5194/acp-16-15097-2016. TCP
Roberts, G.C., D.A. Day, L.M. Russell, E.J. Dunlea, J.L. Jimenez, J.M. Tomlinson, D.R. Collins, Y. Shinozuka, and A.D. Clarke (2010), Characterization of particle cloud droplet activity and composition in the free troposphere and the boundary layer during INTEX-B, Atmos. Chem. Phys., 10, 6627-6644, doi:10.5194/acp-10-6627-2010. TCP
Roberts, J.M., S. Wang, P.R. Veres, J.A. Neuman, M.A. Robinson, I. Bourgeois, J. Peischl, T.B. Ryerson, C.R. Thompson, H.M. Allen, J.D. Crounse, P.O. Wennberg, S.R. Hall, K. Ullmann, S. Meinardi, I.J. Simpson, and D. Blake (2024), Observations of cyanogen bromide (BrCN) in the global troposphere and their relation to polar surface O3 destruction, Atmos. Chem. Phys., doi:10.5194/acp-24-3421-2024. Atmospheric Composition, TCP
Robinson, C.B., J.R. Kimmel, D.E. David, J.T. Jayne, A. Trimborn, D. Worsnop, and J. Jimenez (2011), Thermal desorption metastable atom bombardment ionization aerosol mass spectrometer, International Journal of Mass Spectrometry, 303, 164-172, doi:10.1016/j.ijms.2011.01.027. TCP
Romer, P.S., P.J. Wooldridge, J.D. Crounse, M.J. Kim, P.O. Wennberg, J.E. Dibb, E. Scheuer, D.R. Blake, S. Meinardi, A.L. Brosius, A.B. Thames, D.O. Miller, W.H. Brune, S.R. Hall, T.B. Ryerson, and R.C. Cohen (2018), Cite This: Environ. Sci. Technol. 2018, 52, 13738−13746 pubs.acs.org/est Constraints on Aerosol Nitrate Photolysis as a Potential Source of HONO and NOx, Environ. Sci. Technol., doi:10.1021/acs.est.8b03861. Atmospheric Composition, TCP