Publikationen von Sergey Gromov

Poster (1)

41.
Poster
Klingmüller, K.; Butler, T. M.; Gromov, S.; Jorba, O.; Kuhn, L.; Magre, I. M.; Mouchel-Vallon, C.; Petetin, H.; Sander, R.; Schaap, M. et al.; Thürkow, M.; Lelieveld, J.; Pozzer, A.: The EACH project: Artificial Intelligence Emulating Atmospheric Chemistry. AGU Annual Meeting, New Orleans, LA (2025)

Hochschulschrift - Doktorarbeit (1)

42.
Hochschulschrift - Doktorarbeit
Gromov, S.: Stable isotope composition of atmospheric carbon monoxide. Dissertation, Johannes Gutenberg-Universität, Mainz (2013)

Forschungspapier (6)

43.
Forschungspapier
Lauster, B.; Dörner, S.; Beirle, S.; Donner, S.; Gromov, S.; Uhlmannsiek, K.; Wagner, T.: Estimating real driving emissions from MAX-DOAS measurements at the A60 motorway near Mainz, Germany. Atmospheric Measurement Techniques Discussions 13 (2020)
44.
Forschungspapier
Taraborelli, D.; Cabrera-Perez, D.; Bacer, S.; Gromov, S.; Lelieveld, J.; Sander, R.; Pozzer, A.: Influence of aromatics on tropospheric gas-phase composition. Atmospheric Chemistry and Physics Discussions 20 (2020)
45.
Forschungspapier
Sander, R.; Baumgaertner, A.; Cabrera-Perez, D.; Frank, F.; Grooß , J.-U.; Gromov, S.; Harder, H.; Huijnen, V.; Jöckel, P.; Karydis, V. et al.; Niemeyer, K. E.; Pozzer, A.; Riede, H.; Schultz, M. G.; Taraborelli, D.; Tauer, S.: The atmospheric chemistry box model CAABA/MECCA-4.0gmdd. Geoscientific Model Development Discussions 11 (2018), 31 S.
46.
Forschungspapier
Gromov, S.; Brenninkmeijer, C. A. M.; Jöckel, P.: Proxies and uncertainties for 13C /12C ratios of atmospheric reactive gases emissions. Atmospheric Chemistry and Physics Discussions 17 (2017)
47.
Forschungspapier
Derstroff, B.; Hüser, I.; Sander, R.; Crowley, J. N.; Fischer, H.; Gromov, S.; Harder, H.; Kesselmeier, J.; Mallik, C.; Martinez, M. et al.; Novelli, A.; Parchatka, U.; Phillips, G. J.; Sauvage, C.; Schuladen, J.; Stönner, C.; Tomsche, L.; Williams, J.: Volatile organic compounds (VOCs) in photochemically aged air from the Eastern and Western Mediterranean. Atmospheric Chemistry and Physics Discussions 16 (2016)
48.
Forschungspapier
Lelieveld, J.; Gromov, S.; Pozzer, A.; Taraborrelli, D.: Global tropospheric hydroxyl distribution, budget and reactivity. Atmospheric Chemistry and Physics Discussions 16 (2016)

Preprint (5)

49.
Preprint
Ruhl, S.; Kohl, M.; Baalbaki, R.; Xenofontos, C.; Vella, R.; Gromov, S.; He, X.-C.; Shen, J.; Alfaouri, D.; Atabakhsh, S. et al.; Dada, L.; DeVivo, J.; Duplissy, J.; El Haddad, I.; Harder, H.; Jokinen, T.; Junninen, H.; Kanawade, V. P.; Sebastian, M. K.; Klebach, H.; Kulmala, M.; Kunkler, F.; Lelieveld, J.; Lehtipalo, K.; Lietzke, C. J.; Liu, L.; Mauldin, R.; Mentler, B.; Möhler, O.; Petäjä, T.; Russell, D. M.; Simon, M.; Thakur, R. C.; Yu, W.; Zhang, J.; Zheng, Z.; Kirkby, J.; Tost, H.; Christoudias, T.; Sander, R.; Pozzer, A.: Oxidation mechanisms for volatile methylated sulfur compounds and the major contribution of methanesulfonic acid to Southern Ocean aerosol particles. EGUsphere (2026)
50.
Preprint
Martin, A.; Klingmüller, K.; Steil, B.; Gromov, S.; Lee, Y.-R.; Chang, D. Y.; Surawski, N.; Lelieveld, J.; Jeong, S.; Pozzer, A.: Interactive Simulation of Methane and Hydrogen Soil Deposition in ECHAM5/MESSy Atmospheric Chemistry Model (EMAC) v2.55 with the new Submodel BIODEP (v1.0). EGUsphere (2026)
51.
Preprint
Kleinen, T.; Gromov, S.; Steil, B.; Brovkin, V.: Atmospheric methane since the LGM was driven by wetland sources. Climate of the past discussions 18 (2022)
52.
Preprint
Ringsdorf, A.; Edtbauer, A.; Vilà-Guerau de Arellano, J.; Pfannerstill, E.; Gromov, S.; Kumar, V.; Pozzer, A.; Wolff, S.; Tsokankunku, A.; Sörgel, M. et al.; Sá, M.; de Araujo , A.; Ditas, F.; Pöhlker, C.; Lelieveld, J.; Williams, J.: Inferring the diurnal variability of OH radical concentrations over the Amazon from BVOC measurements. Research Square (2022)
53.
Preprint
Prud'homme, C.; Fisher, P.; Jöris, O.; Gromov, S.; Vinnepand, M.; Hatté, C.; Vonhof, H.; Moine, O.; Vött, A.; Fitzsimmons, K.: Millennial-scale Land-surface Temperature and Soil Moisture Reconstruction Derived From Last Glacial European Loess Sequences. (2022)
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