This institute is the successor of the institute underneath Laboratoire de Glaciologie Polaire (ULB), more
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English name: Laboratoire de Glaciologie Parent institute: Université Libre de Bruxelles; Faculté des Sciences; Département Géosciences, Environnement et Société (ULB-DSTE), more
Thesaurus terms (11) : Chemical oceanography; Climatology; Geochemistry; Glacial geology; Glacier ice; Ice caps; Ice-water interface; Isotopes; Physical oceanography; Sea ice; Water circulating systems MRG keywords (3) : Climate change; Geochemistry; Geophysics Geographical terms (2) : Antarctica [Marine Regions]; Greenland [Marine Regions]
Address: Campus du Solbosch, Bât. D niv. 4 CP 160/03 Avenue F.D. Roosevelt, 50 1050 Bruxelles Belgium | | Tel.: +32-(0)2-650 22 27 Fax: +32-(0)2-650 22 26 E-mail: |
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1 Director: Head of the department 2 Marine scientist: Works in this research group and acts as (co-)author in at least one marine publication in the last 5 years. 3 Specialized personnel: Provides administrative or technical support to marine scientific research.
Persons formerly associated with this organization (42) | - Berger, Sophie 2
- Blard, Pierre-Henri
- Boereboom, Thierry
- Brabant, Frédéric 2
- Callens, Denis 2
- Carnat, Gauthier 2
- Crabeck, Odile
- Delcourt, Charlotte
- Depoorter, Mathieu 2
- Dierckx, Marie 2
- Docquier, David 2
- Drews, Reinhard 2
- Favier, Lionel 2
- Fjøsne, Karen
| - Glaude, Quentin
- Goossens, Thomas 2
- Hartley, Thomas
- Haubner, Konstanze
- Inoue, Mana
- Jacques, Caroline
- Khazendar, Ala
- Kotovich, Marie
- Lorrain, Réginald
- Middleton, Ceri 2
- Nick, Faezeh 2
- Olmos, Carlos
- Perichon, Laura 2
- Philippe, Morgane
| - Remy, Jean-Philippe
- Samyn, Denis
- Sapart, Célia 2
- Schoemann, Véronique 2
- Sleewagen, Suzanne
- Souchez, Roland
- Sun, Sainan
- Thonnard, Nicolas
- Van der Linden, Fanny
- Van Liefferinge, Brice
- Verbeke, Véronique
- Witrant, Emmanuel
- Wittek, Boris
- Zhou, Jiayun 2
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Abstract: | The Glaciology unit focuses on the study of glaciers and ice caps and their relationship with the climate system. The laboratory has expertise in the development of numerical ice cap models. Validation of these models is performed using land and airborne geophysics, including radio-echo sounding. The field work concentrates on polythermal glaciers and Antarctica. The group also focuses on properties of ice, such as the physicochemical properties of 'interface ice' (ice - bedrock; ice - ocean; ice - atmosphere). This expertise is based on polar expeditions and on the development of analytical techniques for the multiparametric study of ice rich in solid or liquid impurities.
The marine component of the research is related to the study of the dynamics of calving ice caps and the contribution of their melting to the sea level rise. Furthermore, the unit also investigates biogeochemical cycles in sea ice and polar oceans (interaction with atmosphere).
The research group has several publications in the renowned journal 'Nature' and was involved in several national and international marine projects such as the Ice2sea project (to assess the contribution of continental ice to the rising sea level) and the SIBClim project, which focuses on how ice in polar seas influences the Earth's climate. |
Publications (231) | Top | Persons | Projects | ( 203 peer reviewed ) split up filter- Marschalek, J.W.; Blard, P.-H.; Sarigulyan, E.; Ehrmann, W.; Hemming, S.R.; Thomson, S.N.; Hillenbrand, C.D.; Licht, K.; Tison, J.-L.; Ardoin, L.; Fripiat, F.; Allen, C.S.; Marrocchi, Y.; Siegert, M.J.; van de Flierdt, T. (2024). Byrd ice core debris constrains the sediment provenance signature of Central West Antarctica. Geophys. Res. Lett. 51(5): e2023GL106958. https://dx.doi.org/10.1029/2023GL106958, more
- Tollenaar, V.; Zekollari, H.; Pattyn, F.; Russwurm, M.; Kellenberger, B.; Lhermitte, S.; Izeboud, M.; Tuia, D. (2024). Where the white continent Is blue: deep learning locates bare ice in Antarctica. Geophys. Res. Lett. 51(3): e2023GL106285. https://dx.doi.org/10.1029/2023GL106285, more
- Wauthy, S.; Tison, J.-L.; Inoue, M.; El Amri, S.; Sun, S.A.; Fripiat, F.; Claeys, P.; Pattyn, F. (2024). Spatial and temporal variability of environmental proxies from the top 120 m of two ice cores in Dronning Maud Land (East Antarctica). ESSD 16(1): 35-58. https://dx.doi.org/10.5194/essd-16-35-2024, more
- Aflenzer, H.; Hoffmann, L.; Holmes, T.; Wuttig, K.; Genovese, C.; Bowie, A.R. (2023). Effect of dissolved iron (II) and temperature on growth of the Southern Ocean phytoplankton species Fragilariopsis cylindrus and Phaeocystis antarctica. Polar Biol. 46(11): 1163-1173. https://dx.doi.org/10.1007/s00300-023-03191-z, more
- Bekaert, D.V.; Blard, P.-H.; Raoult, Y.; Pik, R.; Kipfer, R.; Seltzer, A.M.; Legrain, E.; Marty, B. (2023). Last glacial maximum cooling of 9°C in continental Europe from a 40 kyr-long noble gas paleothermometry record. Quat. Sci. Rev. 310: 108123. https://dx.doi.org/10.1016/j.quascirev.2023.108123, more
- Blard, P.-H.; Protin, M.; Tison, J.-L.; Fripiat, F.; Dahl-Jensen, D.; Steffensen, J.P.; Mahaney, W.C.; Bierman, P.R.; Christ, A.J.; Corbett, L.B.; Debaille, V.; Rigaudier, T.; Claeys, P.; ASTER Team (2023). Basal debris of the NEEM ice core, Greenland: a window into sub-ice-sheet geology, basal ice processes and ice-sheet oscillations. J. Glaciol. 69(276): 1011-1029. https://dx.doi.org/10.1017/jog.2022.122, more
- Cavitte, M.G.P.; Goosse, H.; Matsuoka, K.; Wauthy, S.; Goel, V.; Dey, R.; Pratap, B.; Van Liefferinge, B.; Meloth, T.; Tison, J.-L. (2023). Investigating the spatial representativeness of East Antarctic ice cores: a comparison of ice core and radar-derived surface mass balance over coastal ice rises and Dome Fuji. Cryosphere 17(11): 4779-4795. https://dx.doi.org/10.5194/tc-17-4779-2023, more
- Christ, A.J.; Rittenour, T.M.; Bierman, P.R.; Keisling, B.A.; Knutz, P.C.; Thomsen, T.B.; Keulen, N.; Fosdick, J.C.; Hemming, S.R.; Tison, J.-L.; Blard, P.-H.; Steffensen, J.P.; Caffee, M.W.; Corbett, L.B.; Dahl-Jensen, D.; Dethier, D.P.; Hidy, A.J.; Perdrial, N.; Peteet, D.M.; Steig, E.J.; Thomas, E.K. (2023). Deglaciation of northwestern Greenland during Marine Isotope Stage 11. Science (Wash.) 381(6655): 330-335. https://dx.doi.org/10.1126/science.ade4248, more
- Corkill, M.; Moreau, S.; Janssens, J.; Fraser, A.D.; Heil, P.; Tison, J.-L.; Cougnon, E.A.; Genovese, C.; Kimura, N.; Meiners, K.M.; Wongpan, P.; Lannuzel, D. (2023). Physical and biogeochemical properties of Rotten East Antarctic summer sea ice. JGR: Oceans 128(2): e2022JC018875. https://dx.doi.org/10.1029/2022JC018875, more
- Frémand, A.C.; Fretwell, P.; Bodart, J.A.; Pritchard, H.D.; Aitken, A.; Bamber, J.L.; Bell, R.; Bianchi, C.; Bingham, R.G.; Blankenship, D.D.; Casassa, G.; Catania, G.; Christianson, K.; Conway, H.; Corr, H.F.J.; Cui, X.; Damaske, D.; Damm, V.; Drews, R.; Eagles, G.; Eisen, O.; Eisermann, H.; Ferraccioli, F.; Field, E.; Forsberg, R.; Franke, S.; Fujita, S.; Gim, Y.; Goel, V.; Gogineni, S.P.; Greenbaum, J.; Hills, B.; Hindmarsh, R.C.A.; Hoffman, A.O.; Holmlund, P.; Holschuh, N.; Holt, J.W.; Horlings, A.N.; Humbert, A.; Jacobel, R.W.; Jansen, D.; Jenkins, A.; Jokat, W.; Jordan, T.; King, E.; Kohler, J.; Krabill, W.; Kusk Gillespie, M.; Langley, K.; Lee, J.; Leitchenkov, G.; Leuschen, C.; Luyendyk, B.; MacGregor, J.; MacKie, E.; Matsuoka, K.; Morlighem, M.; Mouginot, J.; Nitsche, F.O.; Nogi, Y.; Nost, O.; Paden, J.; Pattyn, F.; Popov, S.; Rignot, E.; Rippin, D.M.; Rivera, A.; Roberts, J.; Ross, N.; Ruppel, A.; Schroeder, D.M.; Siegert, M.J.; Smith, A.M.; Steinhage, D.; Studinger, M.; Sun, B.; Tabacco, I.; Tinto, K.; Urbini, S.; Vaughan, D.; Welch, B.C.; Wilson, D.S.; Young, D.A.; Zirizzotti, A. (2023). Antarctic Bedmap data: Findable, Accessible, Interoperable, and Reusable (FAIR) sharing of 60 years of ice bed, surface, and thickness data. ESSD 15(7): 2695-2710. https://dx.doi.org/10.5194/essd-15-2695-2023, more
- Geilfus, N.-X.; Delille, B.; Tison, J.-L.; Lemes, M.; Rysgaard, S. (2023). Gas dynamics within landfast sea ice of an Arctic fjord (NE Greenland) during the spring–summer transition. Elem. Sci. Anth. 11(1): 00056. https://dx.doi.org/10.1525/elementa.2022.00056, more
- Gregov, T.; Pattyn, F.; Arnst, M. (2023). Grounding-line flux conditions for marine ice-sheet systems under effective-pressure-dependent and hybrid friction laws. J. Fluid Mech. 975: A6. https://dx.doi.org/10.1017/jfm.2023.760, more
- Jordan, J.R.; Miles, B.W.J.; Gudmundsson, G.H.; Jamieson, S.S.R.; Jenkins, A.; Stokes, C.R. (2023). Increased warm water intrusions could cause mass loss in East Antarctica during the next 200 years. Nature Comm. 14(1): 1825. https://dx.doi.org/10.1038/s41467-023-37553-2, more
- Koch, I.; Drews, R.; Franke, S.; Jansen, D.; Oraschewski, F.M.; Muhle, L.S.; Visnjevic, V.; Matsuoka, K.; Pattyn, F.; Eisen, O. (2023). Radar internal reflection horizons from multisystem data reflect ice dynamic and surface accumulation history along the Princess Ragnhild Coast, Dronning Maud Land, East Antarctica. J. Glaciol. First View: 19. https://dx.doi.org/10.1017/jog.2023.93, more
- Lannuzel, D.; Fourquez, M.; de Jong, J.; Tison, J.-L.; Delille, B.; Schoemann, V. (2023). First report on biological iron uptake in the Antarctic sea-ice environment. Polar Biol. 46(4): 339-355. https://dx.doi.org/10.1007/s00300-023-03127-7, more
- Legrain, E.; Blard, P.-H.; Kageyama, M.; Charreau, J.; Leduc, G.; Bourdin, S.; Bekaert David, D. (2023). Moisture amplification of the high-altitude deglacial warming. Quat. Sci. Rev. 318: 108303. https://dx.doi.org/10.1016/j.quascirev.2023.108303, more
- Miles, B.W.J.; Stokes, C.R.; Jenkins, A.; Jordan, J.R.; Jamieson, S.S.R.; Gudmundsson, G.H. (2023). Slowdown of Shirase Glacier, East Antarctica, caused by strengthening alongshore winds. Cryosphere 17(1): 445-456. https://dx.doi.org/10.5194/tc-17-445-2023, more
- Seroussi, H.; Verjans, V.; Nowicki, S.; Payne, A.J.; Goelzer, H.; Lipscomb, W.H.; Abe-Ouchi, A.; Agosta, C.; Albrecht, T.; Asay-Davis, X.; Barthel, A.; Calov, R.; Cullather, R.; Dumas, C.; Galton-Fenzi, B.K.; Gladstone, R.; Golledge, N.R.; Gregory, J.M.; Greve, R.; Hattermann, T.; Hoffman, M.J.; Humbert, A.; Huybrechts, P.; Jourdain, N.C.; Kleiner, T.; Larour, E.; Leguy, G.R.; Lowry, D.P.; Little, C.M.; Morlighem, M.; Pattyn, F.; Pelle, T.; Price, S.F.; Quiquet, A.; Reese, R.; Schlegel, N.J.; Shepherd, A.; Simon, E.; Smith, R.S.; Straneo, F.; Sun, S.A.; Trusel, L.D.; Van Breedam, J.; Van Katwyk, P.; van de Wal, R.S.W.; Winkelmann, R.; Zhao, C.; Zhang, T.; Zwinger, T. (2023). Insights into the vulnerability of Antarctic glaciers from the ISMIP6 ice sheet model ensemble and associated uncertainty. Cryosphere 17(12): 5197-5217. https://dx.doi.org/10.5194/tc-17-5197-2023, more
- Smith, M.M.; Angot, H.; Chamberlain, E.J.; Droste, E.S.; Karam, S.; Muilwijk, M.; Webb, A.L.; Archer, S.D.; Beck, I.; Blomquist, B.W.; Bowman, J.; Boyer, M.; Bozzato, D.; Chierici, M.; Creamean, J.; 'Angelo, A.; Delille, B.; Fer, I.; Fong, A.A.; Fransson, A.; Fuchs, N.; Gardner, J.; Granskog, M.A.; Hoppe, C.J.M.; Hoppema, M.; Hoppmann, M.; Mock, T.; Muller, S.; Muller, O.; Nicolaus, M.; Nomura, D.; Petaja, T.; Salganik, E.; Schmale, J.; Schmidt, K.; Schulz, K.M.; Shupe, M.D.; Stefels, J.; Thielke, L.; Tippenhauer, S.; Ulfsbo, A.; van Leeuwe, M.; Webster, M.; Yoshimura, M.; Zhan, L.Y. (2023). Thin and transient meltwater layers and false bottoms in the Arctic sea ice pack-Recent insights on these historically overlooked features. Elem. Sci. Anth. 11(1): 00025. https://dx.doi.org/10.1525/elementa.2023.00025, more
- Thomas, E.R.; Vladimirova, D.O.; Tetzner, D.R.; Emanuelsson, B.D.; Chellman, N.; Dixon, D.A.; Goosse, H.; Grieman, M.M.; King, A.C.F.; Sigl, M.; Udy, D.G.; Vance, T.R.; Winski, D.A.; Winton, V.H.L.; Bertler, N.A.N.; Hori, A.; Laluraj, C.M.; McConnell, J.R.; Motizuki, Y.; Takahashi, K.; Motoyama, H.; Nakai, Y.; Schwanck, F.; Simões, J.C.; Lindau, F.G.L.; Severi, M.; Traversi, R.; Wauthy, S.; Xiao, C.; Yang, J.; Mosely-Thompson, E.; Khodzher, T.V.; Golobokova, L.P.; Ekaykin, A.A. (2023). Ice core chemistry database: an Antarctic compilation of sodium and sulfate records spanning the past 2000 years. ESSD 15(6): 2517-2532. https://dx.doi.org/10.5194/essd-15-2517-2023, more
- Van Achter, G.; Fichefet, T.; Goosse, H.; Pelletier, C.; Haubner, K.; Pattyn, F. (2023). Ocean–ice sheet coupling in the Totten Glacier Area, East Antarctica: analysis of the feedbacks and their response to a sudden ocean warming. Geosciences 13(4): 106. https://dx.doi.org/10.3390/geosciences13040106, more
- Vanderstraeten, A.; Mattielli, N.; Laruelle, G.G.; Gili, S.; Bory, A.; Gabrielli, P.; Boxho, S.; Tison, J.-L.; Bonneville, S. (2023). Identifying the provenance and quantifying the contribution of dust sources in EPICA Dronning Maud Land ice core (Antarctica) over the last deglaciation (7-27 kyr BP): A high-resolution, quantitative record from a new Rare Earth Element mixing model. Sci. Total Environ. 881: 163450. https://dx.doi.org/10.1016/j.scitotenv.2023.163450, more
- Willis, M.D.; Lannuzel, D.; Else, B.; Angot, H.; Campbell, K.; Crabeck, O.; Delille, B.; Hayashida, H.; Lizotte, M.; Loose, B.; Meiners, K.M.; Miller, L.; Moreau, S.; Nomura, D.; Prytherch, J.; Schmale, J.; Steiner, N.; Tedesco, L.; Thomas, J. (2023). Polar oceans and sea ice in a changing climate. Elem. Sci. Anth. 11(1): 00056. https://dx.doi.org/10.1525/elementa.2023.00056, more
- Bolibar, J.; Rabatel, A.; Gouttevin, I.; Zekollari, H.; Galiez, C. (2022). Nonlinear sensitivity of glacier mass balance to future climate change unveiled by deep learning. Nature Comm. 13(1): 409. https://dx.doi.org/10.1038/s41467-022-28033-0, more
- Cavitte, M.G.P.; Goosse, H.; Wauthy, S.; Kausch, T.; Tison, J.-L.; Van Liefferinge, B.; Pattyn, F.; Lenaerts, J.T.M.; Claeys, P. (2022). From ice core to ground-penetrating radar: representativeness of SMB at three ice rises along the Princess Ragnhild Coast, East Antarctica. J. Glaciol. 68(272): 1221-1233. https://dx.doi.org/10.1017/jog.2022.39, more
- Desmond, D.S.; Saltymakova, D.; Crabeck, O.; Schreckenbach, G.; Xidos, J.D.; Barber, D.G.; Isleifson, D.; Stern, G.A. (2022). Methods for interpreting the partitioning and fate of petroleum hydrocarbons in a sea ice environment. Journal of Physical Chemistry A 126(5): 772-786. https://dx.doi.org/10.1021/acs.jpca.1c08357, more
- Durand, G.; van den Broeke, M.R.; Le Cozannet, G.; Edwards, T.L.; Holland, P.R.; Jourdain, N.C.; Marzeion, B.; Mottram, R.; Nicholls, R.J.; Pattyn, F.; Paul, F.; Slangen, A.B.A.; Winkelmann, R.; Burgard, C.; van Calcar, C.J.; Barré, J.-B.; Bataille, A.; Chapuis, A. (2022). Sea-level rise: From global perspectives to local services. Front. Mar. Sci. 8: 709595. https://dx.doi.org/10.3389/fmars.2021.709595, more
- Glaude, Q.; Pattyn, F.; Barbier, C.; Orban, A. (2022). Recent high spatiotemporal-resolution observations and evolution of ice-flow fields over the Roi Baudouin Ice Shelf, East Antarctica, in: IGARSS 2022 - 2022 IEEE International Geoscience and Remote Sensing Symposium: Proceedings. IEEE International Symposium on Geoscience and Remote Sensing IGARSS, : pp. 3892-3895. https://dx.doi.org/10.1109/IGARSS46834.2022.9884587, more
- Jomelli, V.; Swingedouw, D.; Vuille, M.; Favier, V.; Goehring, B.; Shakun, J.; Braucher, R.; Schimmelpfennig, I.; Menviel, L.; Rabatel, A.; Martin, L.C.P.; Blard, P.-H.; Condom, T.; Lupker, M.; Christl, M.; He, Z.; Verfaillie, D.; Gorin, A.; Aumaître, G.; Bourlès, D.L.; Keddadouche, K. (2022). In-phase millennial-scale glacier changes in the tropics and North Atlantic regions during the Holocene. Nature Comm. 13(1): 1419. https://dx.doi.org/10.1038/s41467-022-28939-9, more
- Kazmierczak, E.; Sun, S.; Coulon, V.; Pattyn, F. (2022). Subglacial hydrology modulates basal sliding response of the Antarctic ice sheet to climate forcing. Cryosphere 16(10): 4537-4552. https://dx.doi.org/10.5194/tc-16-4537-2022, more
- Materic, D.; Kjaer, A.; Vallelonga, P.; Tison, L.; Rockmann, T.; Holzinger, R. (2022). Nanoplastics measurements in Northern and Southern polar ice. Environ. Res. 208: 112741. https://dx.doi.org/10.1016/j.envres.2022.112741, more
- Middleton, C.A.; Gopalakrishnan, S.S.; Berenstein, I.; Knaepen, B.; Tison, J.-L.; De Wit, A. (2022). Relative role of short interfacial fingers and long internally driven streamers in convective flows below growing sea ice. Physical Review Fluids 7(4): 043503. https://dx.doi.org/10.1103/PhysRevFluids.7.043503, more
- Miles, B.W.J.; Stokes, C.R.; Jamieson, S.S.R.; Jordan, J.R.; Gudmundsson, G.H.; Jenkins, A. (2022). High spatial and temporal variability in Antarctic ice discharge linked to ice shelf buttressing and bed geometry. NPG Scientific Reports 12(1): 10968. https://dx.doi.org/10.1038/s41598-022-13517-2, more
- Pelletier, C.; Fichefet, T.; Goosse, H.; Haubner, K.; Helsen, S.; Huot, P.-V.; Kittel, C.; Klein, F.; Le Clec'h, S.; van Lipzig, N.P.M.; Marchi, S.; Massonnet, F.; Mathiot, P.; Moravveji, E.; Moreno-Chamarro, E.; Ortega, P.; Pattyn, F.; Souverijns, N.; Van Achter, G.; Vanden Broucke, S.; Vanhulle, A.; Verfaillie, D.; Zipf, L. (2022). PARASO, a circum-Antarctic fully coupled ice-sheet-ocean-sea-ice-atmosphere-land model involving f.ETISh1.7, NEMO3.6, LIM3.6, COSM05.0 and CLM4.5. Geosci. Model Dev. 15(2): 553-594. https://dx.doi.org/10.5194/gmd-15-553-2022, more
- Silyakova, A.; Nomura, D.; Kotovitch, M.; Fransson, A.; Delille, B.; Chierici, M.; Granskog, M.A. (2022). Methane release from open leads and new ice following an Arctic winter storm event. Polar Science 33: 100874. https://dx.doi.org/10.1016/j.polar.2022.100874, more
- Tollenaar, V.; Zekollari, H.; Lhermitte, S.; Tax, D.M.J.; Debaille, V.; Goderis, S.; Claeys, P.; Pattyn, F. (2022). Unexplored Antarctic meteorite collection sites revealed through machine learning. Science Advances 8(4): eabj8138. https://dx.doi.org/10.1126/sciadv.abj8138, more
- Van Achter, G.; Fichefet, T.; Goosse, H.; Pelletier, C.; Sterlin, J.; Huot, P.-V.; Lemieux, J.-F.; Fraser, A.D.; Haubner, K.; Porter-Smith, R. (2022). Modelling landfast sea ice and its influence on ocean-ice interactions in the area of the Totten Glacier, East Antarctica. Ocean Modelling 169: 101920. https://dx.doi.org/10.1016/j.ocemod.2021.101920, more
- van de Wal, R.S.W.; Nicholls, R.J.; Behar, D.; McInnes, K.; Stammer, D.; Lowe, J.A.; Church, J.A.; Deconto, R.; Fettweis, X.; Goelzer, H.; Haasnoot, M.; Haigh, I.D.; Hinkel, J.; Horton, B.P.; James, T.S.; Jenkins, A.; LeCozannet, G.; Levermann, A.; Lipscomb, W.H.; Marzeion, B.; Pattyn, F.; Payne, A.J.; Pfeffer, W.T.; Price, S.F.; Seroussi, H.; Sun, S.; Veatch, W.; White, K. (2022). A high-end estimate of sea level rise for practitioners. Earth's Future 10(11): e2022EF002751. https://dx.doi.org/10.1029/2022EF002751, more
- Zekollari, H.; Huss, M.; Farinotti, D.; Lhermitte, S. (2022). Ice-dynamical glacier evolution modeling - A review. Rev. Geophys. 60(2): e2021RG000754. https://dx.doi.org/10.1029/2021RG000754, more
- Berends, C.J.; Goelzer, H.; van de Wal, R.S.W. (2021). The Utrecht Finite Volume Ice-Sheet Model: UFEMISM (version 1.0). Geosci. Model Dev. 14(5): 2443-2470. https://dx.doi.org/10.5194/gmd-14-2443-2021, more
- Christ, A.J.; Bierman, P.R.; Schaefer, J.M.; Dahl-Jensen, D.; Steffensen, J.P.; Corbett, L.B.; Peteet, D.M.; Thomas, E.K.; Steig, E.J.; Rittenour, T.M.; Tison, J.-L.; Blard, P.-H.; Perdrial, N.; Dethier, D.P.; Lini, A.; Hidy, A.J.; Caffee, M.W.; Southon, J. (2021). A multimillion-year-old record of Greenland vegetation and glacial history preserved in sediment beneath 1.4 km of ice at Camp Century. Proc. Natl. Acad. Sci. U.S.A. 118(13): e2021442118. https://dx.doi.org/10.1073/pnas.2021442118, more
- Christiansen, J.R.; Röckmann, T.; Popa, M.E.; Sapart, C.J.; Jørgensen, C.J. (2021). Carbon emissions from the edge of the Greenland Ice Sheet reveal subglacial processes of methane and carbon dioxide turnover. JGR: Biogeosciences 126(11): e2021JG006308. https://dx.doi.org/10.1029/2021JG006308, more
- Compagno, L.; Zekollari, H.; Huss, M.; Farinotti, D. (2021). Limited impact of climate forcing products on future glacier evolution in Scandinavia and Iceland. J. Glaciol. 67(264): 727-743. https://dx.doi.org/10.1017/jog.2021.24, more
- Coulon, V.; Bulthuis, K.; Whitehouse, P.L.; Sun, S.; Haubner, K.; Zipf, L.; Pattyn, F. (2021). Contrasting response of west and east Antarctic ice sheets to glacial isostatic adjustment. JGR: Earth Surface 126(7): e2020JF006003. https://dx.doi.org/10.1029/2020JF006003, more
- Desmond, D.S.; Crabeck, O.; Lemes, M.; Harasyn, M.L.; Mansoori, A.; Saltymakova, D.; Fuller, M.C.; Rysgaard, S.; Barber, D.G.; Isleifson, D.; Stern, G.A. (2021). Investigation into the geometry and distribution of oil inclusions in sea ice using non-destructive X-ray microtomography and its implications for remote sensing and mitigation potential. Mar. Pollut. Bull. 173(Part A): 112996. https://dx.doi.org/10.1016/j.marpolbul.2021.112996, more
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- Docquier, D.; Pattyn, F. (2012). Grounding line migration on unstable bedrock slopes: The example of Thwaites Glacier, Antarctica, in: Devleeschouwer, X. et al. Abstract Book. 4th International Geologica Belgica Meeting 2012, September 11-14, Brussels, Belgium. pp. 3, more
- Drews, R.; Eisen, O.; Martin, C.; Steinhage, D.; Pattyn, F. (2012). Ice rises: the double role of imprinting and archiving ice-dynamics at the sheet-shelf boundary of Antarctica, in: Devleeschouwer, X. et al. Abstract Book. 4th International Geologica Belgica Meeting 2012, September 11-14, Brussels, Belgium. pp. 4, more
- Van Liefferinge, B.; Pattyn, F. (2012). A revised evaluation of Antarctic subglacial conditions and the contribution of basal melt to present day sea-level rise, in: Devleeschouwer, X. et al. Abstract Book. 4th International Geologica Belgica Meeting 2012, September 11-14, Brussels, Belgium. pp. 8, more
- Dehairs, F.; Jacquet, S.; Fripiat, F.; Cardinal, D.; Hoppema, M.; Jeandel, C.; Monnin, C.; Navez, J.; Cavagna, A.-J.; Speich, S.; Boyé, M.; Fahrbach, E.; Blain, S.; Rutgers van der Loeff, M.; De Baar, H.; Rintoul, S. (2011). Differential retention of dissolved barium and silicon in the Atlantic, Indian and Australian sectors of the Southern Ocean, in: 43rd international Liège colloquium on ocean dynamics "Tracers of physical and biogeochemical processes, past changes and ongoing anthropogenic impacts" - May 2-6, 2011. pp. 1, more
- Zhou, J.; Tison, J.-L.; Eicken, H.; Petrich, C.; Geilfus, N.-X.; Brabant, F.; Carnat, G.; Papakyriakou, T.; Heinesch, B.; Laing, R.; Delille, B. (2011). Dynamic processes in sea ice captured by the temporal evolution of its biogeochemical properties, in: Mees, J. et al. (Ed.) VLIZ Young Marine Scientists' Day, Brugge, Belgium 25 February 2011: book of abstracts. VLIZ Special Publication, 48: pp. 111, more
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Projects (7) | Top | Persons | Publications | - AMICS: Antarctic ice-sheet dynamics and climatic change: modelling and ice composition studies, more
- ASPI: Antarctic Subglacial Processes and Interactions: the role of transition zones in ice sheet stability, more
- BE_POLES: Belgian Polar Research Cluster, more
- Epica basal ice - Eastern Antarctica, more
- Ice2sea: Estimating the future contribution of continental ice to sea-level rise, more
- Isotopic and chemical composition of Antarctic shelf ice: implications for global changes, more
- SIBClim: Sea Ice Biogeochemistry in a CLimate change perspective, more
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