Obserwuj
Anna Hodshire
Tytuł
Cytowane przez
Cytowane przez
Rok
A large source of cloud condensation nuclei from new particle formation in the tropics
CJ Williamson, A Kupc, D Axisa, KR Bilsback, TP Bui, P Campuzano-Jost, ...
Nature 574 (7778), 399-403, 2019
2072019
Aging effects on biomass burning aerosol mass and composition: A critical review of field and laboratory studies
AL Hodshire, A Akherati, MJ Alvarado, B Brown-Steiner, SH Jathar, ...
Environmental science & technology 53 (17), 10007-10022, 2019
1832019
Oxygenated aromatic compounds are important precursors of secondary organic aerosol in biomass-burning emissions
A Akherati, Y He, MM Coggon, AR Koss, AL Hodshire, K Sekimoto, ...
Environmental science & technology 54 (14), 8568-8579, 2020
1272020
The potential role of methanesulfonic acid (MSA) in aerosol formation and growth and the associated radiative forcings
AL Hodshire, P Campuzano-Jost, JK Kodros, B Croft, BA Nault, ...
Atmospheric Chemistry and Physics 19 (5), 3137-3160, 2019
1122019
Revisiting particle dry deposition and its role in radiative effect estimates
EW Emerson, AL Hodshire, HM DeBolt, KR Bilsback, JR Pierce, ...
Proceedings of the National Academy of Sciences 117 (42), 26076-26082, 2020
1062020
Rapid evolution of aerosol particles and their optical properties downwind of wildfires in the western US
LI Kleinman, AJ Sedlacek III, K Adachi, PR Buseck, S Collier, MK Dubey, ...
Atmospheric Chemistry and Physics 20 (21), 13319-13341, 2020
682020
Organic condensation and particle growth to CCN sizes in the summertime marine Arctic is driven by materials more semivolatile than at continental sites
J Burkart, AL Hodshire, EL Mungall, JR Pierce, DB Collins, LA Ladino, ...
Geophysical Research Letters 44 (20), 10,725-10,734, 2017
652017
More than emissions and chemistry: Fire size, dilution, and background aerosol also greatly influence near‐field biomass burning aerosol aging
AL Hodshire, Q Bian, E Ramnarine, CR Lonsdale, MJ Alvarado, ...
Journal of Geophysical Research: Atmospheres 124 (10), 5589-5611, 2019
612019
Arctic marine secondary organic aerosol contributes significantly to summertime particle size distributions in the Canadian Arctic Archipelago
B Croft, RV Martin, WR Leaitch, J Burkart, RYW Chang, DB Collins, ...
Atmospheric Chemistry and Physics 19 (5), 2787-2812, 2019
612019
Multiple new-particle growth pathways observed at the US DOE Southern Great Plains field site
AL Hodshire, MJ Lawler, J Zhao, J Ortega, C Jen, T Yli-Juuti, JF Brewer, ...
Atmospheric Chemistry and Physics 16 (14), 9321-9348, 2016
462016
Effects of near-source coagulation of biomass burning aerosols on global predictions of aerosol size distributions and implications for aerosol radiative effects
E Ramnarine, JK Kodros, AL Hodshire, CR Lonsdale, MJ Alvarado, ...
Atmospheric Chemistry and Physics 19 (9), 6561-6577, 2019
402019
Vertically resolved concentration and liquid water content of atmospheric nanoparticles at the US DOE Southern Great Plains site
H Chen, AL Hodshire, J Ortega, J Greenberg, PH McMurry, AG Carlton, ...
Atmospheric Chemistry and Physics 18 (1), 311-326, 2018
392018
Dilution impacts on smoke aging: evidence in Biomass Burning Observation Project (BBOP) data
AL Hodshire, E Ramnarine, A Akherati, ML Alvarado, DK Farmer, ...
Atmospheric Chemistry and Physics 21 (9), 6839-6855, 2021
342021
The potential role of organics in new particle formation and initial growth in the remote tropical upper troposphere
A Kupc, CJ Williamson, AL Hodshire, J Kazil, E Ray, TP Bui, M Dollner, ...
Atmospheric Chemistry and Physics 20 (23), 15037-15060, 2020
212020
Detailed investigation of the contribution of gas-phase air contaminants to exposure risk during indoor activities
AL Hodshire, E Carter, JM Mattila, V Ilacqua, J Zambrana, JPD Abbatt, ...
Environmental Science & Technology 56 (17), 12148-12157, 2022
182022
Dilution and photooxidation driven processes explain the evolution of organic aerosol in wildfire plumes
A Akherati, Y He, LA Garofalo, AL Hodshire, DK Farmer, SM Kreidenweis, ...
Environmental Science: Atmospheres 2 (5), 1000-1022, 2022
172022
Constraining nucleation, condensation, and chemistry in oxidation flow reactors using size-distribution measurements and aerosol microphysical modeling
AL Hodshire, BB Palm, ML Alexander, Q Bian, P Campuzano-Jost, ...
Atmospheric Chemistry and Physics 18 (16), 12433-12460, 2018
162018
Aerosol size distribution changes in FIREX-AQ biomass burning plumes: the impact of plume concentration on coagulation and OA condensation/evaporation
NA June, AL Hodshire, EB Wiggins, EL Winstead, CE Robinson, ...
Atmospheric Chemistry and Physics 22 (19), 12803-12825, 2022
152022
The surface atmosphere integrated field laboratory (SAIL) campaign
DR Feldman, AC Aiken, WR Boos, RWH Carroll, V Chandrasekar, ...
Bulletin of the American Meteorological Society 104 (12), E2192-E2222, 2023
132023
Look up: Probing the vertical profile of new particle formation and growth in the planetary boundary layer with models and observations
SE O’Donnell, A Akherati, Y He, AL Hodshire, JE Shilling, C Kuang, ...
Journal of Geophysical Research: Atmospheres 128 (3), e2022JD037525, 2023
112023
Nie można teraz wykonać tej operacji. Spróbuj ponownie później.
Prace 1–20