Grantee Research Project Results
Publications Details for Grant Number R840010
Evaluating chemical mechanisms with recent field data to account for the contributions of volatile chemical product emissions to urban ozone pollution
RFA:
Chemical Mechanisms to Address New Challenges in Air Quality Modeling (2019)
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Reference Type | Citation | Progress Report Year | Document Sources |
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Journal Article | Pfannerstill E, Arata C, Zhu Q, Schulze B, Woods R, Harkins C, Schwantes R, Mcdonald B, Goldstein A. Comparison between Spatially Resolved Airborne Flux Measurements and Emission Inventories of Volatile Organic Compounds in Los Angeles. ENVIRONMENTAL SCIENCE AND TECHNOLOGY 2023;57(41):15533-15545. |
R840010 (2022) R840259 (2023) |
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Journal Article | Place B, Hutzell W, Appel K, Farrell S, Valin L, Murphy B, Seltzer K, Sarwar G, Allen C, Piletic I, D'Ambro E, Saunders E, Simon H, Torres-Vasquez A, Pleim J, Schwantes R, Coggon M, Xu L, Stockwell W, Pye H. Sensitivity of northeastern US surface ozone predictions to the representation of atmospheric chemistry in the Community Regional Atmospheric Chemistry Multiphase Mechanism (CRACMMv1.0). ATMOSPHERIC CHEMISTRY AND PHYSICS 2023;23(16):9173-9190 |
R840010 (2022) |
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Journal Article | Stewart A, Foley M, Doughetry M, Mcgill S, Gulati A, Gentry E, Hagey L, Dorrenstein P, Theirot C, Dodds J, Baker E. Using Multidimensional Separations to Distinguish Isomeric Amino Acid-Bile Acid Conjugates and Assess Their Presence and Perturbations in Model Systems. ANALYTICAL CHEMISTRY 2023;95(41):15357-15366 |
R840010 (2022) |
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Journal Article | Coggon MM, Gkatzelis GI, McDonald BC, Gilman JB, Schwantes RH, Abuhassan N, Aikin KC, Arend MF, Berkoff TA, Brown SS, Campos TL, Dickerson RR, Gronoff G, Hurley JF, Isaacman-VanWertz G, Koss AR, et al. Volatile chemical product emissions enhance ozone and modulate urban chemistry. Proceedings of the National Academy of Sciences 2021;118. |
R840010 (2021) |
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Journal Article | Pye HOT, Place BK, Murphy BN, Seltzer KM, D’Ambro EL, Allen C, Piletic IR, Farrell S, Schwantes RH, Coggon MM, Saunders E, Xu L, Sarwar G, Hutzell WT, Foley KM, Pouliot G, et al. Linking gas, particulate, and toxic endpoints to air emissions in the Community Regional Atmospheric Chemistry Multiphase Mechanism (CRACMM) version 1.0. Atmospheric Chemistry and Physics Discussions [preprint]. doi:10.5194/acp-2022-695, in review, 2022. |
R840010 (2022) |
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Presentation | Coggon et al. Assessing the impacts of volatile chemical products on urban ozone formation and urban atmospheric chemistry, EPA A-E Connections Moment of Science, March 3, 2021. |
R840010 (2021) |
not available |
Presentation | Coggon et al. Assessing the impacts of volatile chemical products on urban ozone formation and urban atmospheric chemistry, LISTOS Workshop, October 14, 2021. |
R840010 (2021) |
not available |
Presentation | Zhang et al. Developing chemical mechanisms for the oxidation of volatile chemical products, American Meteorological Society, January 2022. |
R840010 (2021) |
not available |
Presentation | Schwantes et al. Evaluating and Improving Urban VOC Chemistry in Los Angeles using WRF-Chem, American Geophysical Union Meeting, December 2021. |
R840010 (2021) |
not available |
Presentation | Coggon et al. Evaluating contributions of volatile chemical products to ozone and urban atmospheric chemistry, American Meteorological Society, January 2022. |
R840010 (2021) |
not available |
Presentation | Stockwell CE et al. Investigating urban ozone formation and chemistry from Volatile Chemical Products (VCPs) and other non-traditional urban VOC sources across the Los Angeles Basin, Invited Talk, American Meteorological Society, January 2024. |
R840010 (2023) |
not available |
The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.