Dylan B. Millet, Ph.D.
Affiliations: | 2003 | University of California, Berkeley, Berkeley, CA, United States |
Area:
Biogeochemistry, Atmospheric Science Physics, Environmental SciencesGoogle:
"Dylan Millet"Mean distance: (not calculated yet)
Cross-listing: Meteorology Tree
Parents
Sign in to add mentorAllen H. Goldstein | grad student | 2003 | UC Berkeley | |
(Characterizing emission sources, chemistry, and lifetimes of VOCs and particles using in situ measurements.) |
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Publications
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Hu M, Yu Z, Griffis TJ, et al. (2024) Hydrologic Connectivity Regulates Riverine NO Sources and Dynamics. Environmental Science & Technology |
Shutter JD, Millet DB, Wells KC, et al. (2024) Interannual changes in atmospheric oxidation over forests determined from space. Science Advances. 10: eadn1115 |
Selimovic V, Ketcherside D, Chaliyakunnel S, et al. (2022) Atmospheric biogenic volatile organic compounds in the Alaskan Arctic tundra: constraints from measurements at Toolik Field Station. Atmospheric Chemistry and Physics. 22: 14037-14058 |
Stanier CO, Pierce RB, Abdi-Oskouei M, et al. (2022) Overview of the Lake Michigan Ozone Study 2017. Bulletin of the American Meteorological Society. 102: E2207-E2225 |
Thakrar SK, Tessum CW, Apte JS, et al. (2022) Global, high-resolution, reduced-complexity air quality modeling for PM2.5 using InMAP (Intervention Model for Air Pollution). Plos One. 17: e0268714 |
Chen X, Millet DB, Neuman JA, et al. (2021) HCOOH in the remote atmosphere: Constraints from Atmospheric Tomography (ATom) airborne observations. Acs Earth & Space Chemistry. 5: 1436-1454 |
Bekbulat B, Apte JS, Millet DB, et al. (2021) Changes in criteria air pollution levels in the US before, during, and after Covid-19 stay-at-home orders: Evidence from regulatory monitors. The Science of the Total Environment. 769: 144693 |
Doak AG, Christiansen MB, Alwe HD, et al. (2021) Characterization of ground-based atmospheric pollution and meteorology sampling stations during the Lake Michigan Ozone Study 2017. Journal of the Air & Waste Management Association (1995) |
Yu X, Millet DB, Wells KC, et al. (2021) Aircraft-based inversions quantify the importance of wetlands and livestock for Upper Midwest methane emissions. Atmospheric Chemistry and Physics. 21: 951-971 |
Angot H, McErlean K, Hu L, et al. (2020) Biogenic volatile organic compound ambient mixing ratios and emission rates in the Alaskan Arctic tundra. Biogeosciences (Online). 17: 6219-6236 |