Bryan N Duncan
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Explore the profile of Bryan N Duncan including associated specialties, affiliations and a list of published articles.
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11
Citations
88
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Recent Articles
1.
Baublitz C, Fiore A, Ludwig S, Nicely J, Wolfe G, Murray L, et al.
Proc Natl Acad Sci U S A
. 2023 Aug;
120(34):e2209735120.
PMID: 37579162
The hydroxyl radical (OH) fuels atmospheric chemical cycling as the main sink for methane and a driver of the formation and loss of many air pollutants, but direct OH observations...
2.
Duncan B, Malings C, Knowland K, Anderson D, Prados A, Keller C, et al.
Geohealth
. 2021 Sep;
5(9):e2021GH000451.
PMID: 34585034
The combination of air quality (AQ) data from satellites and low-cost sensor systems, along with output from AQ models, have the potential to augment high-quality, regulatory-grade data in countries with...
3.
Keller C, Knowland K, Duncan B, Liu J, Anderson D, Das S, et al.
J Adv Model Earth Syst
. 2021 Jul;
13(4):e2020MS002413.
PMID: 34221240
The Goddard Earth Observing System composition forecast (GEOS-CF) system is a high-resolution (0.25°) global constituent prediction system from NASA's Global Modeling and Assimilation Office (GMAO). GEOS-CF offers a new tool...
4.
Schollaert Uz S, Ruane A, Duncan B, Tucker C, Huffman G, Mladenova I, et al.
Remote Sens Earth Syst Sci
. 2020 Oct;
2(1):18-38.
PMID: 33005873
Global food production depends upon many factors that Earth observing satellites routinely measure about water, energy, weather, and ecosystems. Increasingly sophisticated, publicly-available satellite data products can improve efficiencies in resource...
5.
Anenberg S, Bindl M, Brauer M, Castillo J, Cavalieri S, Duncan B, et al.
Geohealth
. 2020 Jul;
4(7):e2020GH000270.
PMID: 32642628
The 2018 NASA Health and Air Quality Applied Science Team (HAQAST) "Indicators" Tiger Team collaboration between NASA-supported scientists and civil society stakeholders aimed to develop satellite-derived global air pollution and...
6.
Choi H, Liu H, Crawford J, Considine D, Allen D, Duncan B, et al.
Atmos Chem Phys
. 2020 May;
17(13):8429-8452.
PMID: 32457810
We examine the capability of the Global Modeling Initiative (GMI) chemistry and transport model to reproduce global mid-tropospheric (618hPa) O-CO correlations determined by the measurements from Tropospheric Emission Spectrometer (TES)...
7.
Ott L, Duncan B, Thompson A, Diskin G, Fasnacht Z, Langford A, et al.
J Geophys Res Atmos
. 2020 Feb;
Volume 121(Iss 7):3687-3706.
PMID: 32021738
Aircraft observations and ozonesonde profiles collected on July 14 and 27, 2011, during the Maryland month-long DISCOVER-AQ campaign, indicate the presence of stratospheric air just above the planetary boundary layer...
8.
Loughner C, Follette-Cook M, Duncan B, Hains J, Pickering K, Moy J, et al.
J Air Waste Manag Assoc
. 2019 Nov;
70(2):193-205.
PMID: 31769734
Using the Community Multiscale Air Quality (CMAQ) model and the Benefits Mapping and Analysis Program - Community Edition (BenMAP-CE) tool, we estimate the benefits of anthropogenic emission reductions between 2002...
9.
Cromar K, Duncan B, Bartonova A, Benedict K, Brauer M, Habre R, et al.
Ann Am Thorac Soc
. 2019 Oct;
16(10):1207-1214.
PMID: 31573344
Air quality data from satellites and low-cost sensor systems, together with output from air quality models, have the potential to augment high-quality, regulatory-grade data in countries with monitoring networks and...
10.
Goldberg D, Lu Z, Oda T, Lamsal L, Liu F, Griffin D, et al.
Sci Total Environ
. 2019 Aug;
695:133805.
PMID: 31419680
Fossil-fuel CO emissions and their trends in eight U.S. megacities during 2006-2017 are inferred by combining satellite-derived NO emissions with bottom-up city-specific NO-to-CO emission ratios. A statistical model is fit...