Simulation of organics in the atmosphere: evaluation of EMACv2.54 with the Mainz Organic Mechanism (MOM) coupled to the ORACLE (v1.0) submodel
An updated and expanded representation of organics in the chemistry general circulation model EMAC (ECHAM5/MESSy for Atmospheric Chemistry) has been evaluated. First, the comprehensive Mainz Organic Mechanism (MOM) in the submodel MECCA (Module Efficiently Calculating the Chemistry of the Atmosphere...
Main Authors: | Akritidis, D. (Author), Clarisse, L. (Author), Crippa, M. (Author), Ehrhart, S. (Author), Emmerichs, T. (Author), Fall, V. (Author), Franco, B. (Author), Gromov, S. (Author), Guizzardi, D. (Author), Jöckel, P. (Author), Kaiser, J.W (Author), Karydis, V. (Author), Kiendler-Scharr, A. (Author), Kohl, M. (Author), Kumar, V. (Author), Pozzer, A. (Author), Reifenberg, S.F (Author), Rosanka, S. (Author), Sander, R. (Author), Taraborrelli, D. (Author), Tost, H. (Author), Tsimpidi, A. (Author) |
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Format: | Article |
Language: | English |
Published: |
Copernicus GmbH
2022
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Subjects: | |
Online Access: | View Fulltext in Publisher |
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