Articles | Volume 19, issue 18
https://doi.org/10.5194/gmd-19-8959-2026
https://doi.org/10.5194/gmd-19-8959-2026
Model description paper
 | 
22 Sep 2026
Model description paper |  | 22 Sep 2026

A simplified isoprene oxidation mechanism for fast formaldehyde-based emission inversion of isoprene

Glenn-Michael Oomen, Jean-François Müller, Trissevgeni Stavrakou, Isabelle De Smedt, Vincent Huijnen, Flora Kluge, Antje Inness, and Johannes Flemming

Data sets

TROPOMI HCHO columns from ESA CCI (L3) I. De Smedt et al. https://doi.org/10.18758/y591kda5

Model code and software

KPP-Based Optimization of Simplified Chemistry Models G.-M. Oomen https://doi.org/10.5281/zenodo.21838936

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Short summary
We developed a strongly simplified mechanism for isoprene oxidation that reduces the computational cost of atmospheric chemistry while retaining the key processes controlling formaldehyde formation. Its parameters were optimized using box-model simulations, and the mechanism reproduces the full chemistry well in global simulations. It also gives similar isoprene emissions when constrained by satellite formaldehyde observations, enabling faster large-scale simulations and emission inversions.
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