Univ.-Prof. Dr. Andreas Stohl


All Publications

Showing entries 1 - 20 out of 159

2025


Vojta M, Plach A, Thompson RL, Purohit P, Stanley K, O'Doherty S et al. Quantifying European SF <sub>6</sub> emissions from 2005 to 2021 using a large inversion ensemble. Atmospheric Chemistry and Physics. 2025 Nov 7. doi: 10.5194/acp-25-15197-2025

Meixner K, Wagenhäuser T, Schuck TJ, Alber S, Manning AJ, Redington AL et al. Characterization of German SF <sub>6</sub> Emissions. ACS ES&T air. 2025 Nov 6. doi: 10.1021/acsestair.5c00234

Thompson RL, Krishnankutty N, Pisso I, Schneider P, Stebel K, Sasakawa M et al. Efficient use of a Lagrangian particle dispersion model for atmospheric inversions using satellite observations of column mixing ratios. Atmospheric Chemistry and Physics. 2025 Oct 10;25:12737–12751. 25. doi: 10.5194/acp-25-12737-2025

Stohl A, Bakels L, Blaschek M, Dütsch M, Plach A, Lechner V et al. LARA: a Lagrangian Reanalysis based on ERA5 spanning from 1940 to 2023. Earth System Science Data. 2025 Sept 18;17:4569-4585. 4569. doi: 10.5194/essd-17-4569-2025

Stohl A, Tatsii D, Reininger A, Bhowmick T, Bagheri G. The atmospheric settling of commercially sold microplastics. Atmospheric Chemistry and Physics. 2025 Sept 18;25(10691):10691-10705. doi: 10.5194/acp-25-10691-2025

Ukhov A, Stohl A, Stenchikov G, Hoteit I. Inverse modeling of SO2 point source emissions in the Middle East. Journal of Geophysical Research: Atmospheres. 2025 Jul 1;130.

Bakels L, Blaschek M, Dütsch M, Plach A, Lechner V, Brack G et al. Supplementary material to "LARA: a Lagrangian Reanalysis based on ERA5 spanning from 1940 to 2023". 2025. doi: 10.5194/essd-2025-26-supplement

Legrand M, Vorobyev M, Bokuchava D, Kutuzov S, Plach A, Stohl A et al. Measurement Report: Changes in ammonia emissions since the 18th century in south-eastern Europe inferred from an Elbrus (Caucasus, Russia) ice-core record. Atmospheric Chemistry and Physics. 2025 Jan 31;25(2):1385-1399. doi: 10.5194/acp-25-1385-2025

Tatsii D, Gasparini B, Evangelou I, Bucci S, Stohl A. Do Microplastics Contribute to the Total Number Concentration of Ice Nucleating Particles? Journal of Geophysical Research: Atmospheres. 2025 Jan 28;130(2):e2024JD042827. Epub 2025 Jan 23. doi: 10.1029/2024JD042827

Raju A, Wittig S, Vojta M, Nabavi O, Redl P, Hoheisel A et al. Constraining CO2 fluxes over Europe using FLEXINVERT and in-situ measurements. 2025. doi: 10.5194/egusphere-egu24-12156

McConnell JR, Chellman NJ, Plach A, Wensman SM, Plunkett G, Stohl A et al. Pan-European atmospheric lead pollution, enhanced blood lead levels, and cognitive decline from Roman-era mining and smelting. Proceedings of the National Academy of Sciences. 2025 Jan 6;122(3):e2419630121. doi: 10.1073/pnas.2419630121

Frank Y, Tatsii D, Rednikin A, Plach A, Rakhmatulina S, Vorobiev D et al. It is snowing microplastics in Western Siberia. Environmental Pollution. 2025 Jan 1;364(1):125293. doi: 10.1016/j.envpol.2024.125293

Jia M, Jiang F, Evangeliou N, Eckhardt S, Stohl A, Huang X et al. Anthropogenic carbon monoxide emissions during 2014-2020 in China constrained by in-situ ground observations. Journal of Geophysical Research: Atmospheres. 2025;130.

2024


Cassiani M, Ardeshiri H, Pisso I, Salizzoni P, Stohl A, Marro M et al. The dynamics of concentration fluctuations within passive scalar plumes in a turbulent neutral boundary layer. Journal of Fluid Mechanics. 2024 Dec 9;1001(A18):A18. doi: 10.1017/jfm.2024.861

Boyer M, Aliaga D, Quelever LLJ, Bucci S, Angot H, Dada L et al. The annual cycle and sources of relevant aerosol precursor vapors in the central Arctic during the MOSAiC expedition. Atmospheric Chemistry and Physics. 2024 Nov 14;24(22):12595–12621. doi: 10.5194/acp-24-12595-2024

Showing entries 1 - 20 out of 159