( 94 peer reviewed ) split up filter- 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
- Shao, Z.B.; Xu, Y.C.; Wang, H.; Luo, W.C.; Wang, L.C.; Huang, Y.H.; Agawin, N.S.R.; Ahmed, A.; Benavides, M.; Bentzon-Tilia, M.; Berman-Frank, I.; Berthelot, H.; Biegala, I.C.; Bif, M.B.; Bode, A.; Bonnet, S.; Bronk, D.A.; Brown, M.V.; Campbell, L.; Capone, D.G.; Carpenter, E.J.; Cassar, N.; Chang, B.X.; Chappell, D.; Chen, Y.L.L.; Church, M.J.; Cornejo-Castillo, F.M.; Detoni, A.M.S.; Doney, S.C.; Dupouy, C.; Estrada, M.; Fernandez, C.; Fernandez-Castro, B.; Fonseca-Batista, D.; Foster, R.A.; Furuya, K.; Garcia, N.; Goto, K.; Gago, J.; Gradoville, M.R.; Hamersley, M.R.; Henke, B.A.; Horstmann, C.; Jayakumar, A.; Jiang, Z.B.; Kao, S.J.; Karl, D.M.; Kittu, L.R.; Knapp, A.N.; Kumar, S.; LaRoche, J.; Liu, H.B.; Liu, J.X.; Lory, C.; Loscher, C.R.; Maranon, E.; Messer, L.F.; Mills, M.M.; Mohr, W.; Moisander, P.H.; Mahaffey, C.; Moore, R.; Mourino-Carballido, B.; Mulholland, M.R.; Nakaoka, S.; Needoba, J.A.; Raes, E.J.; Rahav, E.; Ramirez-Cardenas, T.; Reeder, C.F.; Riemann, L.; Riou, V.; Robidart, J.C.; Sarma, V.V.S.S.; Sato, T.; Saxena, H.; Selden, C.; Seymour, J.R.; Shi, D.L.; Shiozaki, T.; Singh, A.; Sipler, R.E.; Sun, J.; Suzuki, K.; Takahashi, K.; Tan, Y.H.; Tang, W.Y.; Tremblay, J.??.; Turk-Kubo, K.; Wen, Z.Z.; White, A.E.; Wilson, S.T.; Yoshida, T.; Zehr, J.P.; Zhang, R.; Zhang, Y.; Luo, Y.W. (2023). Global oceanic diazotroph database version 2 and elevated estimate of globaloceanic N2 fixation. ESSD 15(8): 3673-3709. https://dx.doi.org/10.5194/essd-15-3673-2023, more
- Van Breedam, J.; Huybrechts, P.; Crucifix, M. (2023). Hysteresis and orbital pacing of the early Cenozoic Antarctic ice sheet. Clim. Past 19(12): 2551-2568. https://dx.doi.org/10.5194/cp-19-2551-2023, 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
- Van Breedam, J.; Huybrechts, P.; Crucifix, M. (2022). Modelling evidence for late Eocene Antarctic glaciations. Earth Planet. Sci. Lett. 586: 117532. https://dx.doi.org/10.1016/j.epsl.2022.117532, more
- Edwards, T.L.; Nowicki, S.; Marzeion, B.; Hock, R.; Goelzer, H.; Seroussi, H.; Jourdain, N.C.; Slater, D.A.; Turner, F.E.; Smith, C.J.; McKenna, C.M.; Simon, E.; Abe-Ouchi, A.; Gregory, J.M.; Larour, E.; Lipscomb, W.H.; Payne, A.J.; Shepherd, A.; Agosta, C.; Alexander, P.; Albrecht, T.; Anderson, B.; Asay-Davis, X.; Aschwanden, A.; Barthel, A.; Bliss, A.; Calov, R.; Chambers, C.; Champollion, N.; Choi, Y.; Cullather, R.; Cuzzone, J.; Dumas, C.; Felikson, D.; Fettweis, X.; Fujita, K.; Galton-Fenzi, B.K.; Gladstone, R.; Golledge, N.R.; Greve, R.; Hattermann, T.; Hoffman, M.J.; Humbert, A.; Huss, M.; Huybrechts, P.; Immerzeel, W.; Kleiner, T.; Kraaijenbrink, P.; Le Clec'h, S.; Lee, V.; Leguy, G.R.; Little, C.M.; Lowry, D.P.; Malles, J.-H.; Martin, D.F.; Maussion, F.; Morlighem, M.; O’Neill, J.F.; Nias, I.; Pattyn, F.; Pelle, T.; Price, S.F.; Quiquet, A.; Radic, V.; Reese, R.; Rounce, D.R.; Rückamp, M.; Sakai, A.; Shafer, C.; Schlegel, N.-J.; Shannon, S.; Smith, R.S.; Straneo, F.; Sun, S.; Tarasov, L.; Trusel, L.D.; Van Breedam, J.; van de Wal, R.; van den Broeke, M.; Winkelmann, R.; Zekollari, H.; Zhao, C.; Zhang, T.; Zwinger, T. (2021). Projected land ice contributions to twenty-first-century sea level rise. Nature (Lond.) 593(7857): 74-82. https://hdl.handle.net/10.1038/s41586-021-03302-y, more
- Payne, A.J.; Nowicki, S.; Abe-Ouchi, A.; Agosta, C.; Alexander, P.; Albrecht, T.; Asay-Davis, X.; Aschwanden, A.; Barthel, A.; Bracegirdle, T.J.; Calov, R.; Chambers, C.; Choi, Y.; Cullather, R.; Cuzzone, J.; Dumas, C.; Edwards, T.L.; Felikson, D.; Fettweis, X.; Galton-Fenzi, B.K.; Goelzer, H.; Gladstone, R.; Golledge, N.R.; Gregory, J.M.; Greve, R.; Hattermann, T.; Hoffman, M.J.; Humbert, A.; Huybrechts, P.; Jourdain, N.C.; Kleiner, T.; Kuipers Munneke, P.; Larour, E.; Le Clec'h, S.; Lee, V.; Leguy, G.; Lipscomb, W.H.; Little, C.M.; Lowry, D.P.; Morlighem, M.; Nias, I.; Pattyn, F.; Pelle, T.; Price, S.F.; Quiquet, A.; Reese, R.; Rückamp, M.; Schlegel, N.-J.; Seroussi, H.; Shepherd, A.; Simon, E.; Slater, D.; Smith, R.S.; Straneo, F.; Sun, S.; Tarasov, L.; Trusel, L.D.; Van Breedam, J.; van de Wal, R.; van den Broeke, M.; Winkelmann, R.; Zhao, C.; Zhang, T.; Zwinger, T. (2021). Future sea level change under coupled model intercomparison project phase 5 and phase 6 scenarios from the Greenland and Antarctic ice sheets. Geophys. Res. Lett. 48(16): e2020GL091741. https://dx.doi.org/10.1029/2020GL091741, more
- Van Breedam, J.; Huybrechts, P.; Crucifix, M. (2021). A Gaussian process emulator for simulating ice sheet–climate interactions on a multi-million-year timescale: CLISEMv1.0. Geosci. Model Dev. 14(10): 6373-6401. https://dx.doi.org/10.5194/gmd-14-6373-2021, more
- Fettweis, X.; Hofer, S.; Krebs-Kanzow, U.; Amory, C.; Aoki, T.; Berends, C.J.; Born, A.; Box, J.E.; Delhasse, A.; Fujita, K.; Gierz, P.; Goelzer, H.; Hanna, E.; Hashimoto, A.; Huybrechts, P.; Kapsch, M.-L.; King, M.D.; Kittel, C.; Lang, C.; Langen, P.L.; Lenaerts, J.T.M.; Liston, G.E.; Lohmann, G.; Mernild, S.H.; Mikolajewicz, U.; Modali, K.; Mottram, R.H.; Niwano, M.; Noël, B.; Ryan, J.C.; Smith, A.; Streffing, J.; Tedesco, M.; van de Berg, W.J.; van den Broeke, M.; van de Wal, R.S.W.; van Kampenhout, L.; Wilton, D.; Wouters, B.; Ziemen, F.; Zolles, T. (2020). GrSMBMIP: intercomparison of the modelled 1980–2012 surface mass balance over the Greenland Ice Sheet. Cryosphere 14(11): 3935-3958. https://dx.doi.org/10.5194/tc-14-3935-2020, more
- Goelzer, H.; Nowicki, S.; Payne, A.; Larour, E.; Seroussi, H.; Lipscomb, W.H.; Gregory, J.; Abe-Ouchi, A.; Shepherd, A.; Simon, E.; Agosta, C.; Alexander, P.; Aschwanden, A.; Barthel, A.; Calov, R.; Chambers, C.R.; Choi, Y.; Cuzzone, J.; Dumas, C.; Edwards, T.; Felikson, D.; Fettweis, X.; Golledge, N.R.; Greve, R.; Humbert, A.; Huybrechts, P.; Le Clec'h, S.; Lee, V.; Leguy, G.; Little, C.; Lowry, D.P.; Morlighem, M.; Nias, I.; Quiquet, A.; Rückamp, M.; Schlegel, N.-J.; Slater, D.A.; Smith, R.S.; Straneo, F.; Tarasov, L.; van de Wal, R.; van den Broeke, M. (2020). The future sea-level contribution of the Greenland ice sheet: a multi-model ensemble study of ISMIP6. Cryosphere 14(9): 3071-3096. https://hdl.handle.net/10.5194/tc-14-3071-2020, more
- Levermann, A.; Winkelmann, R.; Albrecht, T.; Goelzer, H.; Golledge, N.R.; Greve, R.; Huybrechts, P.; Jordan, J.; Leguy, G.; Martin, D.; Morlighem, M.; Pattyn, F.; Pollard, D.; Quiquet, A.; Rodehacke, C.; Seroussi, H.; Sutter, J.; Zhang, T.; Van Breedam, J.; Calov, R.; DeConto, R.; Dumas, C.; Garbe, J.; Gudmundsson, G.H.; Hoffman, M.J.; Humbert, A.; Kleiner, T.; Lipscomb, W.H.; Meinshausen, M.; Ng, E.; Nowicki, S.M.J.; Perego, M.; Price, S.F.; Saito, F.; Schlegel, N.-J.; Sun, S.; van de Wal, R.S.W (2020). Projecting Antarctica's contribution to future sea level rise from basal ice shelf melt using linear response functions of 16 ice sheet models (LARMIP-2). Earth System Dynamics 11(1): 35-76. https://dx.doi.org/10.5194/esd-11-35-2020, more
- Seroussi, H.; 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.; Trusel, L.D.; Van Breedam, J.; van de Wal, R.S.W; Winkelmann, R.; Zhao, C.; Zhang, T.; Zwinger, T. (2020). ISMIP6 Antarctica: a multi-model ensemble of the Antarctic ice sheet evolution over the 21st century. Cryosphere 14(9): 3033-3070. https://hdl.handle.net/10.5194/tc-14-3033-2020, more
- Van Breedam, J.; Goelzer, H.; Huybrechts, P. (2020). Semi-equilibrated global sea-level change projections tor the next 10 000 years. Earth System Dynamics 11(4): 953-976. https://hdl.handle.net/10.5194/esd-11-953-2020, more
- Le Clec'h, S.; Quiquet, A.; Charbit, S.; Dumas, C.; Kageyama, M.; Ritz, C. (2019). A rapidly converging initialisation method to simulate the present-day Greenland ice sheet using the GRISLI ice sheet model (version 1.3). Geosci. Model Dev. 12(6): 2481-2499. https://dx.doi.org/10.5194/gmd-12-2481-2019, more
- Le Clec'h, S.; Charbit, S.; Quiquet, A.; Fettweis, X.; Dumas, C.; Kageyama, M.; Wyard, C.; Ritz, C. (2019). Assessment of the Greenland ice sheet–atmosphere feedbacks for the next century with a regional atmospheric model coupled to an ice sheet model. Cryosphere 13(1): 373-395. https://dx.doi.org/10.5194/tc-13-373-2019, more
- Plach, A.; Nisancioglu, K.H.; Langebroek, P.M.; Born, A.; Le Clec'h, S. (2019). Eemian Greenland ice sheet simulated with a higher-order model shows strong sensitivity to surface mass balance forcing. Cryosphere 13(8): 2133-2148. https://hdl.handle.net/10.5194/tc-13-2133-2019, more
- Roukaerts, A.; Nomura, D.; Deman, F.; Hattori, H.; Dehairs, F.; Fripiat, F. (2019). The effect of melting treatments on the assessment of biomass and nutrients in sea ice (Saroma-ko lagoon, Hokkaido, Japan). Polar Biol. 42(2): 347-356. https://dx.doi.org/10.1007/s00300-018-2426-y, more
- Seroussi, H.; Nowicki, S.; Simon, E.; Abe-Ouchi, A.; Albrecht, T.; Brondex, J.; Cornford, S.; Dumas, C.; Gillet-Chaulet, F.; Goelzer, H.; Golledge, N.R.; Gregory, J.M.; Greve, R.; Hoffman, M.J.; Humbert, A.; Huybrechts, P.; Kleiner, T.; Larour, E.; Leguy, G.; Lipscomb, W.H.; Lowry, D.; Mengel, M.; Morlighem, M.; Pattyn, F.; Payne, A.J.; Pollard, D.; Price, S.F.; Quiquet, A.; Reerink, T.J.; Reese, R.; Rodehacke, C.B.; Schlegel, N.-J.; Shepherd, A.; Sun, S.; Sutter, J.; Van Breedam, J.; van de Wal, R.S.W; Winkelmann, R.; Zhang, T. (2019). initMIP-Antarctica: an ice sheet model initialization experiment of ISMIP6. Cryosphere 13(5): 1441-1471. https://dx.doi.org/10.5194/tc-13-1441-2019, more
- Genge, M.J.; Van Ginneken, M. (2018). Comment on "Unmelted cosmic metal particles in the Indian Ocean" by Prasad et al. Meteorit. Planet. Sci. 53(2): 326-332. https://dx.doi.org/10.1111/maps.13013, more
- Plach, A.; Nisancioglu, K.H.; Le Clec'h, S.; Born, A.; Langebroek, P.M.; Guo, C.; Imhof, M.; Stocker, T.F. (2018). Eemian Greenland SMB strongly sensitive to model choice. Clim. Past 14(10): 1463-1485. https://dx.doi.org/10.5194/cp-14-1463-2018, more
- Quaijtaal, W.; Tesseur, S.; Donders, T.H.; Claeys, P.; Louwye, S. (2018). A revised and improved age model for the middle Miocene part of IODP Site U1318 (Porcupine Basin, offshore southwestern Ireland). Geol. Mag. 155(5): 1105-1116. https://dx.doi.org/10.1017/S0016756816001278, more
- Kristensen, E.; Lee, S.Y.; Mangion, P.; Quintana, C.O.; Valdemarsen, T. (2017). Trophic discrimination of stable isotopes and potential food source partitioning by leaf-eating crabs in mangrove environments. Limnol. Oceanogr. 62(5): 2097-2112. https://dx.doi.org/10.1002/lno.10553, more
- Lecavalier, B.S.; Fisher, D.A.; Milne, G.A.; Vinther, B.M.; Tarasov, L.; Huybrechts, P.; Lacelle, D.; Main, B.; Zheng, J.; Bourgeois, J. (2017). High Arctic Holocene temperature record from the Agassiz ice cap and Greenland ice sheet evolution. Proc. Natl. Acad. Sci. U.S.A. 114(23): 5952-5957. https://dx.doi.org/10.1073/pnas.1616287114, more
- Lecomte, O.; Goosse, H.; Fichefet, T.; de Lavergne, C.; Barthélemy, A.; Zunz, V. (2017). Vertical ocean heat redistribution sustaining sea-ice concentration trends in the Ross Sea. Nature Comm. 8(1): 8 pp. https://dx.doi.org/10.1038/s41467-017-00347-4, more
- Li, X.; Roevros, N.; Dehairs, F.; Chou, L. (2017). Biological responses of the marine diatom Chaetoceros socialis to changing environmental conditions: a laboratory experiment. PLoS One 12(11): e0188615. https://dx.doi.org/10.1371/journal.pone.0188615, more
- Meire, L.; Mortensen, J.; Meire, P.; Juul-Pedersen, T.; Sejr, M.K.; Rysgaard, S.; Nygaard, R.; Huybrechts, P.; Meysman, F.J.R. (2017). Marine-terminating glaciers sustain high productivity in Greenland fjords. Glob. Chang. Biol. 23(12): 5344-5357. https://dx.doi.org/10.1111/gcb.13801, more
- Montanari, A.; Farley, K.; Claeys, P.; De Vleeschouwer, D.; de Winter, N.; Vansteenberge, S.; Sinnesael, M.; Koeberl, C. (2017). Stratigraphic record of the asteroidal Veritas breakup in the Tortonian Monte dei Corvi section (Ancona, Italy). Geol. Soc. Am. Bull. 129(9-10): 1357-1376. https://dx.doi.org/10.1130/B31476.1, more
- Turney, C.S.M.; Fogwill, C.J.; Palmer, J.G.; van Sebille, E.; Thomas, Z.; McGlone, M.; Richardson, S.; Wilmshurst, J.M.; Fenwick, P.; Zunz, V.; Goosse, H.; Wilson, K.-J.; Carter, L.; Lipson, M.; Jones, R.T.; Harsch, M.; Clark, G.; Marzinelli, E.; Rogers, T.; Rainsley, E.; Ciasto, L.; Waterman, S.; Thomas, E.R.; Visbeck, M. (2017). Tropical forcing of increased Southern Ocean climate variability revealed by a 140-year subantarctic temperature reconstruction. Clim. Past 13(3): 231-248. https://dx.doi.org/10.5194/cp-13-231-2017, more
- Zekollari, H.; Huybrechts, P.; Noël, B.; van de Berg, W.J.; van den Broeke, M.R. (2017). Sensitivity, stability and future evolution of the world's northernmost ice cap, Hans Tausen Iskappe (Greenland). Cryosphere 11(2): 805-825. https://dx.doi.org/10.5194/tc-11-805-2017, more
- Batenburg, S.J.; De Vleeschouwer, D.; Sprovieri, M.; Hilgen, F.J.; Gale, A.S.; Singer, B.S.; Koeberl, C.; Coccioni, R.; Claeys, P.; Montanari, A. (2016). Orbital control on the timing of oceanic anoxia in the Late Cretaceous. Clim. Past 12(10): 1995-2009. https://dx.doi.org/10.5194/cp-12-1995-2016, more
- Charette, M.A.; Lam, P.J.; Lohan, M.C.; Kwon, E.Y.; Hatje, V.; Jeandel, C.; Shiller, A.M.; Cutter, G.A.; Thomas, A.; Boyd, P.W.; Homoky, W.B.; Milne, A.; Thomas, H.; Andersson, P.S.; Porcelli, D.; Tanaka, T.; Geibert, W.; Dehairs, F.; Garcia-Orellana, J. (2016). Coastal ocean and shelf-sea biogeochemical cycling of trace elements and isotopes: lessons learned from GEOTRACES. Philos. Trans. - Royal Soc., Math. Phys. Eng. Sci. 374(2081): 19 pp. https://dx.doi.org/10.1098/rsta.2016.0076, more
- Goelzer, H.; Huybrechts, P.; Loutre, M.-F.; Fichefet, T. (2016). Last Interglacial climate and sea-level evolution from a coupled ice sheet-climate model. Clim. Past 12(12): 2195-2213. https://dx.doi.org/10.5194/cp-12-2195-2016, more
- Goelzer, H.; Huybrechts, P.; Loutre, M.-F.; Fichefet, T. (2016). Impact of ice sheet meltwater fluxes on the climate evolution at the onset of the Last Interglacial. Clim. Past 12(8): 1721-1737. https://dx.doi.org/10.5194/cp-12-1721-2016, more
- Riou, V.; Fonseca-Batista, D.; Roukaerts, A.; Biegala, I.; Prakya, S.; Loureiro, C.; Santos, M.; Muniz-Piniella, A.; Schmiing, M.; Elskens, M.; Brion, N.; Martins, M.; Dehairs, F. (2016). Importance of N2-fixation on the productivity at the north-western Azores current/front system, and the abundance of diazotrophic unicellular cyanobacteria. PLoS One 11(3): e0150827. https://dx.doi.org/10.1371/journal.pone.0150827, more
- Roukaerts, A.; Cavagna, A.-J.; Fripiat, F.; Lannuzel, D.; Meiners, K.M.; Dehairs, F. (2016). Sea-ice algal primary production and nitrogen uptake rates off East Antarctica. Deep-Sea Res., Part II, Top. Stud. Oceanogr. 131: 140-149. https://dx.doi.org/10.1016/j.dsr2.2015.08.007, more
- de Boer, B.; Dolan, A.M.; Bernales, J.; Gasson, E.; Goelzer, H.; Golledge, N.R.; Sutter, J.; Huybrechts, P.; Lohmann, G.; Rogozhina, I.; Abe-Ouchi, A.; Saito, F.; van de Wal, R.S.W. (2015). Simulating the Antarctic ice sheet in the late-Pliocene warm period: PLISMIP-ANT, an ice-sheet model intercomparison project. Cryosphere 9(3): 881-903. https://dx.doi.org/10.5194/tc-9-881-2015, more
- Deprez, A.; Tesseur, S.; Stassen, P.; D'haenens, S.; Steurbaut, E.; King, C.; Claeys, P.; Speijer, R.P. (2015). Early Eocene environmental development in the northern Peri-Tethys (Aktulagay, Kazakhstan) based on benthic foraminiferal assemblages and stable isotopes (O, C). Mar. Micropaleontol. 115: 59-71. https://dx.doi.org/10.1016/j.marmicro.2014.11.003, more
- Fürst, J.J.; Goelzer, H.; Huybrechts, P. (2015). Ice-dynamic projections of the Greenland ice sheet in response to atmospheric and oceanic warming. Cryosphere 9(3): 1039-1062. https://dx.doi.org/10.5194/tc-9-1039-2015, more
- Jeandel, C.; van der Loeff, M.; Lam, P.; Roy-Barman, M.; Sherrell, R.; Kretschmer, S.; German, C.; Dehairs, F. (2015). What did we learn about ocean particle dynamics in the GEOSECS-JGOFS era? Prog. Oceanogr. 133: 6-16. https://dx.doi.org/10.1016/j.pocean.2014.12.018, more
- Korbar, T.; Montanari, A.; Fucek, V.; Fucek, L.; Coccioni, R.; McDonald, I.; Claeys, P.; Schulz, T.; Koeberl, C. (2015). Potential Cretaceous-Paleogene boundary tsunami deposit in the intra-Tethyan Adriatic carbonate platform section of Hvar (Croatia). Geol. Soc. Am. Bull. 127(11-12): 1666-1680. https://dx.doi.org/10.1130/B31084.1, more
- Larsen, N.; Kjaer, K.; Lecavalier, B.; Bjork, A.; Colding, S.; Huybrechts, P.; Jakobsen, K.; Kjeldsen, K.; Knudsen, K.; Odgaard, B.; Olsen, J. (2015). The response of the southern Greenland ice sheet to the Holocene thermal maximum. Geology (Boulder Colo.) 43(4): 291-294. https://dx.doi.org/10.1130/G36476.1, more
- Planchon, F.; Ballas, D.; Cavagna, A.-J.; Bowie, A.; Davies, D.; Trull, T.; Laurenceau-Cornec, E.; Van Der Merwe, P.; Dehairs, F. (2015). Carbon export in the naturally iron-fertilized Kerguelen area of the Southern Ocean based on the 234Th approach. Biogeosciences 12(12): 3831-3848. dx.doi.org/10.5194/bg-12-3831-2015, more
- van der Merwe, P; Bowie, R; Queroue, F; Armand, L; Blain, S; Chever, F; Davies, D; Dehairs, F.; Planchon, F; Sarthou, G; Townsend, T; Trull, W (2015). Sourcing the iron in the naturally fertilised bloom around the Kerguelen Plateau: particulate trace metal dynamics. Biogeosciences 12(3): 739-755. dx.doi.org/10.5194/bg-12-739-2015, more
- Carnat, G.; Zhou, J.; Papakyriakou, T.; Delille, B.; Goossens, T.; Haskell, T.; Schoemann, V.; Fripiat, F.; Rintala, J.-M.; Tison, J.-L. (2014). Physical and biological controls on DMS,P dynamics in ice shelf-influenced fast ice during a winter-spring and a spring-summer transitions. J. Geophys. Res. Oceans(119): 2882-2905. https://doi.org/10.1002/2013JC009381, more
- Closset, I; Lasbleiz, M; Leblanc, K; Queguiner, B; Cavagna, A.J.; Elskens, M.; Navez, J.; Cardinal, D. (2014). Seasonal evolution of net and regenerated silica production around a natural Fe-fertilized area in the Southern Ocean estimated with Si isotopic approaches. Biogeosciences 11(20): 5827-5846. dx.doi.org/10.5194/bg-11-5827-2014, more
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