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Get Free AccessThe ATom mission was designed to collect a multi-species, detailed chemical climatology that documents the patterns of physical and chemical heterogeneity throughout the remote troposphere. The calculation of reactivities requires a complete set of key species in each air parcel to initialize chemistry models and then calculate the CH4 and O3 reactivities over a 24 h cycle. The ATom Modeling Data Stream (MDS) provides a semi-continuous set of 10 s air parcels with a full set of values for the key chemical reactants and conditions. This supplementary methods section documents the methods used to create MDS version 2 (MDS-2).
Hao Guo, Clare M. Flynn, Michael J. Prather, Sarah A. Strode, Stephen D. Steenrod, L. K. Emmons, Forrest Lacey, Jean‐François Lamarque, Arlene M. Fiore, Gustavo Correa, Lee T. Murray, Glenn M. Wolfe, Jason M. St. Clair, Michelle Kim, John D. Crounse, Glenn S. Diskin, Joshua P. DiGangi, Bruce C. Daube, R. Commane, Kathryn McKain, Jeff Peischl, Thomas B. Ryerson, Chelsea R. Thompson, T. F. Hanisco, Donald R Blake, N. J. Blake, Eric C. Apel, Rebecca S. Hornbrook, James W. Elkins, Eric J. Hintsa, F. L. Moore, Steven C. Wofsy (2022). Supplementary material to "Heterogeneity and chemical reactivity of the remote troposphere defined by aircraft measurements". , DOI: https://doi.org/10.5194/acp-2022-631-supplement.
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Type
Preprint
Year
2022
Authors
32
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.5194/acp-2022-631-supplement
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