P007-0009
Validation of the Aeroplanets/Aerochemistry Model in a Present-Day Earth Simulation

Monday, 7 December 2020
Poster
Bradley M Hegyi1, Guillaume Gronoff1, Vladimir Airapetian2 and Benjamin Hayworth3, (1)NASA Langley Research Center, Hampton, VA, United States, (2)SEEC/NASA Goddard Space Flight Center & American University, DC, SEEC, Greenbelt, MD, United States, (3)Pennsylvania State University Main Campus, Geosciences, University Park, PA, United States
Abstract:
We present a validation of the Aeroplanets/Aerochemistry model (Gronoff et al. 2012; Airapetian et al. 2016), a one-dimensional photochemistry model, with another one-dimensional photochemistry model implemented in Hu et al. 2016. Results from a simulation of the atmosphere of present-day Earth from both models were used in the validation. Realistic initial conditions and concentrations were used in the validation, including surface emissions of CO, CH4, NH3, N2O, NO, SO2, OCS, H2S, and H2SO4. As part of the validation, we compare the vertical profile of concentration of key chemical species, including O3, N2O, NO, NO2, HNO3, HO2, OH, and CH4. Our model was able to create vertical concentration profiles of these species that closely matched the results from Hu et al. 2016. With the successful validation, we plan to use the Aeroplanets model to explore the role of ions and aerosols, formed the interaction of solar energetic particles and the atmosphere of early Earth, in generating key greenhouse gas species and gas species that support the formation of molecules crucial for life.