IMAU publications 2025
Reviewed Scientific Publications
- Adnew, G. A., Röckmann, T., Blunier, T., Jørgensen, C. J., Sapper, S. E., van der Veen, C., Sivan, M., Popa, M. E., & Christiansen, J. R. (2025). Clumped isotope measurements reveal aerobic oxidation of methane below the Greenland ice sheet. Geochimica et Cosmochimica Acta, 389, 249-264. https://doi.org/10.1016/j.gca.2024.11.009
https://research-portal.uu.nl/ws/files/251713057/1-s2.0-S0016703724005799-main.pdf - Biemond, B., Kranenburg, W. M., Huismans, Y., De Swart, H. E., & Dijkstra, H. A. (2025). Dynamics of salt intrusion in complex estuarine networks: an idealised model applied to the Rhine-Meuse Delta. Ocean Science, 21(1), 261-281. https://doi.org/10.5194/os-21-261-2025
https://research-portal.uu.nl/ws/files/255703007/os-21-261-2025.pdf - Boot, A., & Dijkstra, H. (2025). Observation-based temperature and freshwater noise over the Atlantic Ocean. Earth System Dynamics, 16(1), 115-150. https://doi.org/10.5194/esd-16-115-2025
https://research-portal.uu.nl/ws/files/252015794/esd-16-115-2025.pdf - Boot, A., Steenbeek, J., Coll, M., von der Heydt, A., & Dijkstra, H. (2025). Global Marine Ecosystem Response to a Strong AMOC Weakening Under Low and High Future Emission Scenarios. Earth's Future, 13(1), Article e2024EF004741. https://doi.org/10.1029/2024EF004741
https://research-portal.uu.nl/ws/files/252015740/Earth_s_Future_-_2025_-_Boot_-_Global_Marine_Ecosystem_Response_to_a_Strong_AMOC_Weakening_Under_Low_and_High_Future.pdf - Bracco, A., Brajard, J., Dijkstra, H. A., Hassanzadeh, P., Lessig, C., & Monteleoni, C. (2025). Machine learning for the physics of climate. Nature Reviews Physics, 7(1), 6-20. Article e535. https://doi.org/10.1038/s42254-024-00776-3
- Dekker, M. M., Von Der Heydt, A. S., & Dijkstra, H. A. (2018). Cascading transitions in the climate system. Earth System Dynamics, 9(4), 1243-1260. https://doi.org/10.5194/esd-9-1243-2018
https://dspace.library.uu.nl/bitstream/handle/1874/386052/esd_9_1243_2018.pdf?sequence=1 - Elbertsen, M. V., Van Sebille, E., & Bijl, P. K. (2025). Possible provenance of IRD by tracing late Eocene Antarctic iceberg melting using a high-resolution ocean model. Climate of the Past, 21(2), 441-464. https://doi.org/10.5194/cp-21-441-2025
https://research-portal.uu.nl/ws/files/258847591/cp-21-441-2025.pdf - Fry, J. L., Ooms, P., Krol, M., Kerckhoffs, J., Vermeulen, R., Wesseling, J., & van den Elshout, S. (2025). Effect of street trees on local air pollutant concentrations (NO2, BC, UFP, PM2.5) in Rotterdam, the Netherlands. Environmental Science: Atmospheres, 5(3), 394-404. https://doi.org/10.1039/d4ea00157e
https://research-portal.uu.nl/ws/files/259279613/d4ea00157e_1_.pdf - Hakkarainen, J., Ialongo, I., Varon, D. J., Kuhlmann, G., & Krol, M. C. (2025). Linear integrated mass enhancement: A method for estimating hotspot emission rates from space-based plume observations. Remote Sensing of Environment, 319, Article 114623. https://doi.org/10.1016/j.rse.2025.114623
https://research-portal.uu.nl/ws/files/255295817/1-s2.0-S0034425725000276-main.pdf - Haywood, A. M., Valdes, P. J., Aze, T., Barlow, N., Burke, A., Dolan, A. M., von der Heydt, A. S., Hill, D. J., Jamieson, S. S. R., Otto-bliesner, B. L., Salzmann, U., Saupe, E., & Voss, J. (2019). What can Palaeoclimate Modelling do for you? Earth Systems and Environment, 3(1), 1-18. https://doi.org/10.1007/s41748-019-00093-1
https://dspace.library.uu.nl/bitstream/handle/1874/380555/Haywood2019_Article_WhatCanPalaeoclimateModellingD.pdf?sequence=1 - Hermans, T. H. J., Hammouda, C. B., Treu, S., Tiggeloven, T., Couasnon, A., Busecke, J. J. M., & van de Wal, R. S. W. (2025). Computing Extreme Storm Surges in Europe Using Neural Networks. (pp. 1-27). EGUsphere [preprint]. https://doi.org/10.5194/egusphere-2025-196
https://research-portal.uu.nl/ws/files/254465378/egusphere-2025-196.pdf - Huai, B., Ding, M., van den Broeke, M. R., Reijmer, C. H., Noel, B., Sun, W., & Wang, Y. (2025). Future large-scale atmospheric circulation changes and Greenland precipitation. npj Climate and Atmospheric Science, 8(1), Article 10. https://doi.org/10.1038/s41612-025-00899-z
https://research-portal.uu.nl/ws/files/255625733/s41612-025-00899-z.pdf - Iturrate-Garcia, M., Salameh, T., Schlauri, P., Baldan, A., Vollmer, M. K., Stratigou, E., Dusanter, S., Li, J., Persijn, S., Claude, A., Holzinger, R., Sutour, C., Macé, T., Elshorbany, Y., Ackermann, A., Pascale, C., & Reimann, S. (2025). Towards a high-quality in situ observation network for oxygenated volatile organic compounds (OVOCs) in Europe: transferring metrological traceability to the field. Atmospheric Measurement Techniques, 18(2), 371-403. https://doi.org/10.5194/amt-18-371-2025
https://research-portal.uu.nl/ws/files/254249348/amt-18-371-2025.pdf - Jurkschat, L., Gill, A. J., Milner, R., Holzinger, R., Evangeliou, N., Eckhardt, S., & Materić, D. (2025). Using a citizen science approach to assess nanoplastics pollution in remote high-altitude glaciers. Scientific Reports, 15(1), Article 1864. https://doi.org/10.1038/s41598-024-84210-9
https://research-portal.uu.nl/ws/files/252573156/s41598-024-84210-9.pdf - Liu, S., Xu, S., Guo, W., Fan, Y., Zhou, L., Landy, J., Johansson, M., Zhu, W., & Petty, A. (2025). On the Statistical Relationship between Sea Ice Freeboard and C-Band Microwave Backscatter – A Study with Sentinel-1 and Operation IceBridge. (pp. 1-31). EGU. https://doi.org/10.5194/egusphere-2025-1069
https://research-portal.uu.nl/ws/files/259068102/egusphere-2025-1069.pdf - Maazallahi, H., Stavropoulou, F., Sutanto, S. J., Steiner, M., Brunner, D., Mertens, M., Jöckel, P., Visschedijk, A., Denier Van Der Gon, H., Dellaert, S., Velandia Salinas, N., Schwietzke, S., Zavala-Araiza, D., Ghemulet, S., Pana, A., Ardelean, M., Corbu, M., Calcan, A., Conley, S. A., ... Röckmann, T. (2025). Airborne in situ quantification of methane emissions from oil and gas production in Romania. Atmospheric chemistry and physics, 25(3), 1497-1511. https://doi.org/10.5194/acp-25-1497-2025
https://research-portal.uu.nl/ws/files/258844772/acp-25-1497-2025.pdf - Nisbet, E., Manning, M. R., Lowry, D., Fisher, R. E., Lan, X., Michel, S. E., France, J., Nisbet, R. E. R., Bakkaloglu, S., Leitner, S., Brooke, C., Röckmann, T., Allen, G., van der Gon, H. A. C. D., Merbold, L., Scheutz, C., Maisch, C. W., Nisbet-Jones, P., Alshalan, A., ... Dlugokencky, E. (2025). Practical paths towards quantifying and mitigating agricultural methane emissions. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 481(2309), Article 20240390. https://doi.org/10.1098/rspa.2024.0390
https://research-portal.uu.nl/ws/files/259343059/nisbet-et-al-2025-practical-paths-towards-quantifying-and-mitigating-agricultural-methane-emissions.pdf - Pennacchio, L., Liasi, Z., Hillers-Bendtsen, A. E., Röckmann, T., Mikkelsen, K. V., & Johnson, M. S. (2025). Extreme Isotopic Fractionation in CO and H2 Formed in Formaldehyde Photolysis: Theory and Experiment. Journal of Physical Chemistry A, 129(9), 2286-2295. https://doi.org/10.1021/acs.jpca.4c07516
https://research-portal.uu.nl/ws/files/259784098/pennacchio-et-al-2025-extreme-isotopic-fractionation-in-co-and-h2-formed-in-formaldehyde-photolysis-theory-and.pdf - Rohling, E. J., Sluijs, A., Dijkstra, H. A., van de Wal, R. S. W., von der Heydt, A. S., Bijl, P. K., & Zeebe, R. (2012). Making sense of palaeoclimate sensitivity. Nature, 491(7426), 683-691. Article 11574. https://doi.org/10.1038/nature11574
https://dspace.library.uu.nl/bitstream/handle/1874/385699/Making_sense.pdf?sequence=1 - Rühs, S., van den Bremer, T., Clementi, E., Denes, M. C., Moulin, A., & van Sebille, E. (2025). Non-negligible impact of Stokes drift and wave-driven Eulerian currents on simulated surface particle dispersal in the Mediterranean Sea. Ocean Science, 21(1), 217-240. https://doi.org/10.5194/os-21-217-2025
https://research-portal.uu.nl/ws/files/253831751/os-21-217-2025.pdf - Sherwood, S., Webb, M. J., Annan, J. D., Armour, K. C., Forster, P. M., Hargreaves, J. C., Hegerl, G., Klein, S. A., Marvel, K. D., Rohling, E. J., Watanabe, M., Andrews, T., Braconnot, P., Bretherton, C. S., Foster, G. L., Hausfather, Z., Heydt, A. S. V. D., Knutti, R., Mauritsen, T., ... Zelinka, M. D. (2020). An assessment of Earth's climate sensitivity using multiple lines of evidence. Reviews of Geophysics, 58(4), Article e2019RG000678. https://doi.org/10.1029/2019rg000678
https://research-portal.uu.nl/ws/files/234721221/Reviews_of_Geophysics_-_2020_-_Sherwood_-_An_Assessment_of_Earth_s_Climate_Sensitivity_Using_Multiple_Lines_of_Evidence.pdf - Shi, C., Wang, N., Wu, Y., Zhang, Q., Tijm - Reijmer, C., & Smeets, P. (2025). Assessment of MODIS and VIIRS Ice Surface Temperature Products over the Antarctic Ice Sheet. Remote Sensing, 17(6), 1-20. Article 955. https://doi.org/10.3390/rs17060955
https://research-portal.uu.nl/ws/files/259068348/remotesensing-17-00955.pdf - Van Den Akker, T., Lipscomb, W. H., Leguy, G. R., Bernales, J., Berends, C. J., Van De Berg, W. J., & Van De Wal, R. S. W. (2025). Present-day mass loss rates are a precursor for West Antarctic Ice Sheet collapse. Cryosphere, 19(1), 283-301. https://doi.org/10.5194/tc-19-283-2025
https://research-portal.uu.nl/ws/files/254249779/tc-19-283-2025.pdf - Vermeulen, D. H. A., Baatsen, M. L. J., & Von Der Heydt, A. S. (2025). Sustainability of regional Antarctic ice sheets under late Eocene seasonal atmospheric conditions. Climate of the Past, 21(1), 95-114. https://doi.org/10.5194/cp-21-95-2025
https://research-portal.uu.nl/ws/files/252906017/cp-21-95-2025.pdf - Versluis, M., Schmitz, B., von der Heydt, A., & Lohse, D. (2000). How snapping shrimp snap: Through cavitating bubbles. Science, 289(5487), 2114-2117. https://doi.org/10.1126/science.289.5487.2114
- von der Heydt, A. S., Ashwin, P., Camp, C. D., Crucifix, M., Dijkstra, H. A., Ditlevsen, P., & Lenton, T. M. (2021). Quantification and interpretation of the climate variability record. Global and Planetary Change, 197, 1-20. Article 103399. https://doi.org/10.1016/j.gloplacha.2020.103399
https://dspace.library.uu.nl/bitstream/handle/1874/410745/1_s2.0_S0921818120302903_main.pdf?sequence=1 - von der Heydt, A. S., Dijkstra, H., van de Wal, R. S. W., Caballero, R., Crucifix, M., Foster, G. L., Huber, M., Köhler, P., Rohling, E. J., Valdes, P. J., Ashwin, P., Bathiany, S., Berends, T., van Bree, L., Ditlevsen, P., Ghil, M., Haywood, A., Katzav, J., Lohmann, G., ... Ziegler, M. (2016). Lessons on Climate Sensitivity From Past Climate Changes. Current Climate Change Reports, 1-11. https://doi.org/10.1007/s40641-016-0049-3
https://dspace.library.uu.nl/bitstream/handle/1874/341106/Lessons.pdf?sequence=1 - Wegman, T. M., Pietrzak, J. D., Horner-Devine, A. R., Dijkstra, H. A., & Ralston, D. K. (2025). Observations of Estuarine Salt Intrusion Dynamics During a Prolonged Drought Event in the Rhine-Meuse Delta. Journal of Geophysical Research: Oceans, 130(1), Article e2024JC021655. https://doi.org/10.1029/2024JC021655
https://research-portal.uu.nl/ws/files/250866026/JGR_Oceans_-_2024_-_Wegman_-_Observations_of_Estuarine_Salt_Intrusion_Dynamics_During_a_Prolonged_Drought_Event_in_the.pdf - de Wit, K., Cohen, K. M., & Van de Wal, R. S. W. (2025). HOLSEA-NL: a Holocene water level and sea level indicator dataset for the Netherlands. Earth System Science Data, 17(2), 545–577. https://doi.org/10.5194/essd-17-545-2025
https://research-portal.uu.nl/ws/files/254953130/essd-17-545-2025.pdf - Zhang, N., Prokhorov, I., Kueter, N., Li, G., Tuzson, B., Magyar, P. M., Ebert, V., Sivan, M., Nakagawa, M., Gilbert, A., Ueno, Y., Yoshida, N., Röckmann, T., Bernasconi, S. M., Emmenegger, L., & Mohn, J. (2025). Rapid High-Sensitivity Analysis of Methane Clumped Isotopes (Δ13CH3D and Δ12CH2D2) Using Mid-Infrared Laser Spectroscopy. Analytical Chemistry, 97(2), 1291-1299. https://doi.org/10.1021/acs.analchem.4c05406
https://research-portal.uu.nl/ws/files/252088507/zhang-et-al-2025-rapid-high-sensitivity-analysis-of-methane-clumped-isotopes-_13ch3d-and-_12ch2d2_-using-mid-infrared.pdf - Zhou, L., Ayres, H., Gülk, B., Narayanan, A., de Lavergne, C., Ödalen, M., Silvano, A., Wang, X., Lindeman, M., & Steiger, N. (2025). Review article: Weddell Sea polynya Formation, Cessation and Climatic Impacts. (pp. 1-32). EGU. https://doi.org/10.5194/egusphere-2025-999
https://research-portal.uu.nl/ws/files/259068833/egusphere-2025-999.pdf