Dit instituut is de voortzetting van onderstaande Departement Geografie-Geologie (KULeuven), meer
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Engelse naam: Department of Earth and Environmental Sciences
Overkoepelend instituut: KU Leuven (KULeuven), meer
Vorige naam: Katholieke Universiteit Leuven; Departement Geografie-Geologie (KULeuven), meer
Adres: Celestijnenlaan 200 E
3001 Heverlee België
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Type: Wetenschappelijk Niveau: Departement
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1 Directeur: Hoofd van de onderzoeksgroep/afdeling 2 Mariene onderzoeker: Is werkzaam in deze groep en treedt op als (co)auteur in minstens één mariene publicatie in de laatste 5 jaar. 3 Gespecialiseerd personeel: Levert administratieve of technische ondersteuning aan het zeewetenschappelijk onderzoek.
Geassocieerd aan een deelinstituut (16) |
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Deelinstituten (8) |
Top | Personen | Publicaties | Project | Datasets |
- Katholieke Universiteit Leuven; Departement Aard- en Omgevingswetenschappen; Afdeling fysico-chemische geologie (KULeuven), meer
- Katholieke Universiteit Leuven; Departement Aard- en Omgevingswetenschappen; Afdeling Fysische en regionale geografie (KULeuven), meer
- Katholieke Universiteit Leuven; Departement Aard- en Omgevingswetenschappen; Afdeling Geologie (KULeuven), meer
- Katholieke Universiteit Leuven; Departement Aard- en Omgevingswetenschappen; Afdeling Historische Geologie (KULeuven), meer
- Katholieke Universiteit Leuven; Departement Aard- en Omgevingswetenschappen; Centre for Archaeological Sciences (KULeuven), meer
- KU Leuven; Afdeling Bodem- en Waterbeheer (KULeuven), meer
- KU Leuven; Afdeling Bos, Natuur en Landschap (KULeuven-aBNL), meer
- KU Leuven; Departement Aard- en Omgevingswetenschappen; Afdeling Geografie en Toerisme (KULeuven), meer
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Abstract: |
Het departement Aard- en Omgevingswetenschappen (Earth and Environmental Sciences) heeft als belangrijkste missie het uitvoeren van hoogstaand wetenschappelijk onderzoek m.b.t. het functioneren van geo- en ecosystemen op verschillende tijds- en ruimteschalen, inclusief mens-omgevingsinteracties, en het duurzaam beheer van natuurlijke hulpbronnen. De leden van het departement verzorgen kwalitatief hoogstaand onderwijs binnen de domeinen geografie, geologie en bio-ingenieurswetenschappen. Het departement wil een belangrijke rol spelen in maatschappelijke thema’s zoals milieuverontreiniging, voedselproductie, klimaatsveranderingen, bos-, groen- en natuurbeheer, bodem- en waterbeheer, exploitatie van de ondergrond, stedelijke en plattelandsproblematiek, en ontwikkelingssamenwerking. |
Publicaties (295) |
Top | Personen | Instituten | Project | Datasets |
( 258 peer reviewed ) opsplitsen filter
Vellekoop, J.; Vanhove, D.; Jelu, I.; Claeys, P.; Ivany, L.C.; de Winter, N.J.; Speijer, R.P.; Steurbaut, E. (2025). Making sense of variation in sclerochronological stable isotope profiles of mollusks and fish otoliths from the early Eocene southern North Sea Basin. Palaeogeogr. Palaeoclimatol. Palaeoecol. 659: 112627. https://dx.doi.org/10.1016/j.palaeo.2024.112627, meer
Heijlen, W.; Vos, K.; Kartalis, N.; Boyce, A.J.; Muchez, P. (2024). The formation of vein-type barite (± base metal, gold) deposits in northern Madagascar and its link with Mesozoic Pangean rifting. Mineralium Deposita 59(2): 255-273. https://dx.doi.org/10.1007/s00126-023-01205-8, meer
Husman, S.D.; Lhermitte, S.; Bolibar, J.; Izeboud, M.; Hu, Z.Y.; Shukla, S.; van der Meer, M.; Long, D.; Wouters, B. (2024). A high-resolution record of surface melt on Antarctic ice shelves using multi-source remote sensing data and deep learning. Remote Sens. Environ. 301: 113950. https://dx.doi.org/10.1016/j.rse.2023.113950, meer
Kniest, J.F.; Evans, D.; Gerdes, A.; Cantine, M.; Todd, J.A.; Sigwart, J.D.; Vellekoop, J.; Müller, W.; Voigt, S.; Raddatz, J. (2024). Spatiotemporal changes in riverine input into the Eocene North Sea revealed by strontium isotope and barium analysis of bivalve shells. NPG Scientific Reports 14(1): 28806. https://dx.doi.org/10.1038/s41598-024-79779-0, meer
Panagos, P.; Matthews, F.; Patault, E.; De Michele, C.; Quaranta, E.; Bezak, N.; Kaffas, K.; Patro, E.R.; Auel, C.; Schleiss, A.J.; Fendrich, A.; Liakos, L.; Van Eynde, E.; Vieira, D.; Borrelli, P. (2024). Understanding the cost of soil erosion: an assessment of the sediment removal costs from the reservoirs of the European Union. J. Clean. Prod. 434: 140183. https://dx.doi.org/10.1016/j.jclepro.2023.140183, meer
The Firn Symposium team (2024). Firn on ice sheets. Nat. Rev. Earth Environ. 5: 79–99. https://dx.doi.org/10.1038/s43017-023-00507-9, meer
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, meer
Van Neer, W.; Fuller, B.; Fahy, G.E.; De Cupere, B.; Bouillon, S.; Uytterhoeven, I.; Richards, M.P. (2024). Early Byzantine fish consumption and trade revealed by archaeoichthyology and isotopic analysis at Sagalassos, Turkey. Journal of Archaeological Science: Reports 53: 104322. https://dx.doi.org/10.1016/j.jasrep.2023.104322, meer
Andradi-Brown, D.A.; Veverka, L.; Amkieltiela, A.; Crane, N.L.; Estradivari; Fox, H.E.; Gill, D.; Goetze, J.; Gough, C.; Krueck, N.C.; Lester, S.E.; Mahajan, S.L.; Rulmal Jr., J.; Teoh, M.; Ahmadia, G.N. (2023). Diversity in marine protected area regulations: protection approaches for locally appropriate marine management. Front. Mar. Sci. 10: 1099579. https://dx.doi.org/10.3389/fmars.2023.1099579, meer
Belliard, J.-P.; Gourgue, O.; Govers, G.; Kirwan, M.L.; Temmerman, S. (2023). Coastal wetland adaptability to sea level rise: the neglected role of semi-diurnal vs. diurnal tides. Limnology and Oceanography Letters 8(2): 340-349. https://dx.doi.org/10.1002/lol2.10298, meer
Francis, D.; Fonseca, R.; Mattingly, K.S.; Lhermitte, S.; Walker, C. (2023). Foehn winds at Pine Island Glacier and their role in ice changes. Cryosphere 17(7): 3041-3062. https://dx.doi.org/10.5194/tc-17-3041-2023, meer
Goosse, H.; Contador, S.A.; Bitz, C.M.; Blanchard-Wrigglesworth, E.; Eayrs, C.; Fichefet, T.; Himmich, K.; Huot, P.-V.; Klein, F.; Marchi, S.; Massonnet, F.; Mezzina, B.; Pelletier, C.; Roach, L.; Vancoppenolle, M.; van Lipzig, N.P.M. (2023). Modulation of the seasonal cycle of the Antarctic sea ice extent by sea iceprocesses and feedbacks with the ocean and the atmosphere. Cryosphere 17(1): 407-425. https://dx.doi.org/10.5194/tc-17-407-2023, meer
Hulskamp, R.; Luijendijk, A.; van Maren, B.; Moreno-Rodenas, A.; Calkoen, F.; Kras, E.; Lhermitte, S.; Aarninkhof, S. (2023). Global distribution and dynamics of muddy coasts. Nature Comm. 14(1): 8259. https://dx.doi.org/10.1038/s41467-023-43819-6, meer
Jamaer, S.; Allaerts, D.; Meyers, J.; van Lipzig, N.P.M. (2023). A novel framework for spatiotemporal analysis of temperature profiles applied to Europe. Journal of Applied Meteorology and Climatology 62(12): 1855-1873. https://dx.doi.org/10.1175/JAMC-D-22-0205.1, meer
Jones, H.L.; Westerhold, T.; Birch, H.; Hull, P.; Negra, M.H.; Roehl, U.; Sepulveda, J.; Vellekoop, J.; Whiteside, J.H.; Alegret, L.; Henehan, M.; Robinson, L.; Van Dijk, J.; Bralower, T. (2023). Stratigraphy of the Cretaceous/Paleogene (K/Pg) boundary at the Global Stratotype Section and Point (GSSP) in El Kef, Tunisia: New insights from the El Kef Coring Project. Geol. Soc. Am. Bull. 135(9-10): 2451-2477. https://dx.doi.org/10.1130/B36487.1, meer
Jones, H.L.; Westerhold, T.; Birch, H.; Hull, P.; Negra, M.H.; Roehl, U.; Sepulveda, J.; Vellekoop, J.; Whiteside, J.H.; Alegret, L.; Henehan, M.; Robinson, L.; Van Dijk, J.; Bralower, T. (2023). Erratum: Stratigraphy of the Cretaceous/Paleogene (K/Pg) boundary at the Global Stratotype Section and Point (GSSP) in El Kef, Tunisia: New insights from the El Kef Coring Project. Geol. Soc. Am. Bull. 135(9-10): 1, meer
Lwanga, E.H.; van Roshum, I.; Munhoz, D.R.; Meng, K.; Rezaei, M.; Goossens, D.; Bijsterbosch, J.; Alexandre, N.; Oosterwijk, J.; Krol, M.; Peters, P.; Geissen, V.; Ritsema, C. (2023). Microplastic appraisal of soil, water, ditch sediment and airborne dust: the case of agricultural systems. Environ. Pollut. 316(Part 1): 120513. https://dx.doi.org/10.1016/j.envpol.2022.120513, meer
Noël, B.; Van Wessem, J.M.; Wouters, B.; Trusel, L.; Lhermitte, S.; van den Broeke, M.R. (2023). Higher Antarctic ice sheet accumulation and surface melt rates revealed at 2 km resolution. Nature Comm. 14(1): 7949. https://dx.doi.org/10.1038/s41467-023-43584-6, meer
Reithmaier, G.M.S.; Cabral, A.; Akhand, A.; Bogard, M.J.; Borges, A.V.; Bouillon, S.; Burdige, D.J.; Call, M.; Chen, N.; Chen, X.; Cotovicz, L.C.; Eagle, M.J.; Kristensen, E.; Kroeger, K.D.; Lu, Z.; Maher, D.T.; Pérez Lloréns, J.L.; Ray, R.; Taillardat, P.; Tamborski, J.J.; Upstill-Goddard, R.C.; Wang, F.; Wang, Z.A.; Xiao, K.; Yau, Y.Y.Y.; Santos, I.R. (2023). Carbonate chemistry and carbon sequestration driven by inorganic carbon outwelling from mangroves and saltmarshes. Nature Comm. 14(1): 8196. https://dx.doi.org/10.1038/s41467-023-44037-w, meer
Saeed, S.; Kucharski, F.; Almazroui, M. (2023). Impacts of mid-latitude circulation on winter temperature variability in the Arabian Peninsula: the explicit role of NAO. Clim. Dyn. 60: 147-164. https://dx.doi.org/10.1007/s00382-022-06313-1, meer
Van Wessem, J.M.; van den Broeke, M.R.; Wouters, B.; Lhermitte, S. (2023). Variable temperature thresholds of melt pond formation on Antarctic ice shelves. Nat. Clim. Chang. 13(2): 161-166. https://dx.doi.org/10.1038/s41558-022-01577-1, meer
Xie, D.H.; Schwarz, C.; Kleinhans, M.G.; Bryan, K.R.; Coco, G.; Hunt, S.; van Maanen, B. (2023). Mangrove removal exacerbates estuarine infilling through landscape-scale bio-morphodynamic feedbacks. Nature Comm. 14(1): 7310. https://dx.doi.org/10.1038/s41467-023-42733-1, meer
Zhang, M.; Schwarz, C.; Lin, W.; Naing, H.; Cai, H.; Zhu, Z. (2023). A new perspective on the impacts of Spartina alterniflora invasion on Chinese wetlands in the context of climate change: A case study of the Jiuduansha Shoals, Yangtze Estuary. Sci. Total Environ. 868: 161477. https://dx.doi.org/10.1016/j.scitotenv.2023.161477, meer
Zinck, A.S.P.; Wouters, B.; Lambert, E.; Lhermitte, S. (2023). Unveiling spatial variability within the Dotson Melt Channel through high-resolution basal melt rates from the Reference Elevation Model of Antarctica. Cryosphere 17(9): 3785-3801. https://dx.doi.org/10.5194/tc-17-3785-2023, meer
Amkieltiela, A.; Handayani, C.N.; Andradi-Brown, D.A.; Estradivari*; Ford, A.K.; Beger, M.; Hakim, A.; Muenzel, D.K.; Carter, E.; Agung, F.; Veverka, L.; Iqbal, M.; Lazuardi, M.E.; Fauzi, M.N.; Tranter, S.N.; Ahmadia, G.N. (2022). The rapid expansion of Indonesia's marine protected area requires improvement in management effectiveness. Mar. Policy 146: 105257. https://dx.doi.org/10.1016/s.marpol.2022.105257, meer
Babila, T.L.; Penman, D.E.; Standish, C.D.; Doubrawa, M.; Bralower, T.J.; Robinson, M.M.; Self-Trail, J.M.; Speijer, R.P.; Stassen, P.; Foster, G.L.; Zachos, J.C. (2022). Surface ocean warming and acidification driven by rapid carbon release precedes Paleocene-Eocene Thermal Maximum. Science Advances 8(11): eabg1025. https://dx.doi.org/10.1126/sciadv.abg1025, meer
Bashri, M.; Kaminski, M.A.; Abdullatif, O.; Humphrey, J.; Makkawi, M.; Swennen, R.; Ali, O.; Adam, A.; Salih, M.; Babiker, J. (2022). Facies analysis and depositional model for the Oxfordian Hanifa Formation, Central Saudi Arabia. Mar. Pet. Geol. 146: 105940. https://dx.doi.org/10.1016/j.marpetgeo.2022.105940, meer
Belliard, J.-P.; Hernandez, S.; Temmerman, S.; Suello, R.H.; Dominguez-Granda, L.E.; Rosado-Moncayo, A.M.; Ramos-Veliz, J.A.; Parra-Narera, R.N.; Pollete-Ramirez, K.; Govers, G.; Borges, A.V.; Bouillon, S. (2022). Carbon dynamics and CO2 and CH4 exchange in the mangrove dominated Guayas river delta, Ecuador. Est., Coast. and Shelf Sci. 267: 107766. https://dx.doi.org/10.1016/j.ecss.2022.107766, meer
Clark, A.J.; Vellekoop, J.; Speijer, R.P. (2022). Hydrological differences between the Lutetian Paris and Hampshire basins revealed by stable isotopes of conid gastropods. Bull. Soc. Géol. Fr. 193: 3. https://dx.doi.org/10.1051/bsgf/2022002, meer
Cox, J.R.; Paauw, M.; Nienhuis, J.H.; Dunn, F.E.; van der Deijl, E.; Esposito, C.; Goichot, M.; Leuven, J.R.F.W.; van Maren, D.S.; Middelkoop, H.; Naffaa, S.; Rahman, M.; Schwarz, C.; Sieben, E.; Triyanti, A.; Yuill, B. (2022). A global synthesis of the effectiveness of sedimentation-enhancing strategies for river deltas and estuaries. Global Planet. Change 214: 103796. https://dx.doi.org/10.1016/j.gloplacha.2022.103796, meer
De Clercq, W.; Taelman, D.; Antonelli, F.; Briguglio, A.; de Ruijsscher, D.; Dreesen, R.; Dumolyn, J.; Fieremans, N.; Speijer, R.P.; Trachet, J.; Vermeersch, J. (2022). Two odd ones out: Mediterranean ballast stones and Italian maritime connections in the Medieval Bruges' harbor system. J. Marit. Archaeol. 17(4): 579-602. https://dx.doi.org/10.1007/s11457-022-09344-1, meer
Doubrawa, M.; Stassen, P.; Robinson, M.M.; Babila, T.L.; Zachos, J.C.; Speijer, R.P. (2022). Shelf ecosystems along the US Atlantic Coastal Plain prior to and during the Paleocene-Eocene Thermal Maximum: insights into the stratigraphic architecture. Paleoceanography and Paleoclimatology 37(10): e2022PA004475. https://dx.doi.org/10.1029/2022PA004475, meer
Estradivari; Andradi-Brown, D.A.; Amkieltiela; Handayani, C.N.; Sjahruddin, F.F.; Agung, M.F.; Campbell, S.J.; Claborn, K.; De Nardo, M.; Fox, H.E.; Glew, L.; Hakim, A.; Lazuardi, M.E.; Nanlohy, H.; Sanjaya, W.; Setyawan, E.; Timisela, N.R.; Veverka, L.; Wiwardhana, N.W.; Welly, M.; Zainudin, I.M.; Ahmadia, G.N. (2022). Marine conservation in the Sunda Banda Seascape, Indonesia. Mar. Policy 138: 104994. https://dx.doi.org/10.1016/j.marpol.2022.104994, meer
Fidler, R.Y.; Ahmadia, G.N.; Amkieltiela; Awaludinnoer; Cox, C.; Estradivari; Glew, L.; Handayani, C.; Mahajan, S.L.; Mascia, M.B.; Pakiding, F.; Andradi-Brown, D.A.; Campbell, S.J.; Claborn, K.; De Nardo, M.; Fox, H.E.; Gill, D.; Hidayat, N.I.; Jakub, R.; Le, D.T.; Purwanto; Valdivia, A.; Harborne, A.R. (2022). Participation, not penalties: Community involvement and equitable governance contribute to more effective multiuse protected areas. Science Advances 8(18): eabl8929. https://dx.doi.org/10.1126/sciadv.abl8929, meer
Goolaerts, S.; Christiaens, Y.; Mollen, F.H.; Mottequin, B.; Steurbaut, E. (2022). Applying micro-CT imaging in the study of historically and newly collected specimens of Belosaepia (Sepiida, Coleoidea, Cephalopoda) from the Early Eocene (Ypresian) of Belgium. Riv. ital. paleontol. stratigr. (Testo stamp.) 128(3): 585-606. https://dx.doi.org/10.54103/2039-4942/16617, meer
Hamd, J.; Cerepi, A.; Swennen, R.; Loisy, C.; Galaup, S.; Pigot, L. (2022). Sedimentary and diagenetic effects on reservoir properties of Upper Cretaceous Ionian Basin and Kruja platform carbonates, Albania. Mar. Pet. Geol. 138: 105549. https://dx.doi.org/10.1016/j.marpetgeo.2022.105549, meer
Hansen, N.; Simonsen, S.B.; Boberg, F.; Kittel, C.; Orr, A.; Souverijns, N.; Van Wessem, J.M.; Mottram, R. (2022). Brief communication: Impact of common ice mask in surface mass balance estimates over the Antarctic ice sheet. Cryosphere 16(2): 711-718. https://dx.doi.org/10.5194/tc-16-711-2022, meer
Hien, L.T.T.; Gobin, A.; Lim, D.T.; Quan, D.T.; Hue, N.T.; Thang, N.N.; Binh, N.T.; Dung, V.T.K.; Linh, P.H. (2022). Soil moisture influence on the FTIR spectrum of salt-affected soils. Remote Sens. 14(10): 2380. https://dx.doi.org/10.3390/rs14102380, meer
Khan, N.; Weltje, G.J.; Jan, I.U.; Swennen, R. (2022). Depositional and diagenetic constraints on the quality of shale-gas reservoirs: a case study from the Late Palaeocene of the Potwar Basin (Pakistan, Eastern Tethys). Geol. J. 57(7): 2770-2787. https://dx.doi.org/10.1002/gj.4439, meer
Martens, L.; Stassen, P.; Steurbaut, E.; Speijer, R.P. (2022). Assessing Nummulites geochemistry as a proxy for early Eocene palaeotemperature evolution in the North Sea Basin. J. Geol. Soc. Lond. 179(4): jgs2021-102. https://dx.doi.org/10.1144/jgs2021-102, meer
Mohammadi, Z.; Mehrabi, H.; Gharechelou, S.; Jalali, M.; Swennen, R. (2022). Stratigraphic architecture and depositional-diagenetic evolution of Oligocene-Miocene carbonate-evaporite platform in the southern margin of the Neo-Tethys Ocean, Lurestan zone of Zagros, Iran. J. Asian Earth Sci. 233: 105249. https://dx.doi.org/10.1016/j.jseaes.2022.105249, meer
Neave, D.A.; Namur, O. (2022). Plagioclase archives of depleted melts in the oceanic crust. Geology (Boulder Colo.) 50(7): 848-852. https://dx.doi.org/10.1130/G49840.1, meer
O'Hora, H.E.; Petersen, S.V.; Vellekoop, J.; Jones, M.M.; Scholz, S.R. (2022). Clumped-isotope-derived climate trends leading up to the end-Cretaceous mass extinction in northwestern Europe. Clim. Past 18(9): 1963-1982. https://dx.doi.org/10.5194/cp-18-1963-2022, meer
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, meer
Porchetta, S.; Carlesi, T.; Vetrano, M.R.; van Beeck, J.; Laboureur, D. (2022). Experimental investigation of the airflow structure above mechanically generated regular waves for both aligned and opposed wind-wave directions. Experimental Thermal and Fluid Science 133: 110578. https://dx.doi.org/10.1016/j.expthermflusci.2021.110578, meer
Schwarz, C.; van Rees, F.; Xie, D.; Kleinhans, M.G.; van Maanen, B. (2022). Salt marshes create more extensive channel networks than mangroves. Nature Comm. 13(1): 2017. https://dx.doi.org/10.1038/s41467-022-29654-1, meer
Tranter, S.N.; Estradivari; Ahmadia, G.N.; Andradi-Brown, D.A.; Muenzel, D.; Agung, F.; Amkieltiela, A.; Ford, A.K.; Habibi, A.; Handayani, C.N.; Iqbal, M.; Krueck, N.C.; Lazuardi, M.E.; Muawanah, U.; Papilaya, R.L.; Razak, T.B.; Sapari, A.; Sjahruddin, F.F.; Veverka, L.; Yusri, S.; Beger, M. (2022). The inclusion of fisheries and tourism in marine protected areas to support conservation in Indonesia. Mar. Policy 146: 105301. https://dx.doi.org/10.1016/j.marpol.2022.105301, meer
Xie, D.; Schwarz, C.; Kleinhans, M.G.; Zhou, Z.; van Maanen, B. (2022). Implications of coastal conditions and sea-level rise on mangrove vulnerability: a bio-morphodynamic modeling study. JGR: Earth Surface 127(3): e2021JF006301. https://dx.doi.org/10.1029/2021JF006301, meer
Yang, Z.; Finotello, A.; Goodwin, G.; Gao, C.; Mudd, S.M.; Lague, D.; Schwarz, C.; Tian, B.; Ghinassi, M.; D'Alpaos, A. (2022). Seaward expansion of salt marshes maintains morphological self-similarity of tidal channel networks. J. Hydrol. (Amst.) 615(Part A): 128733. https://dx.doi.org/10.1016/j.jhydrol.2022.128733, meer
Baatz, R.; Hendricks Franssen, H.J.; Euskirchen, E.; Sihi, D.; Dietze, M.; Ciavatta, S.; Fennel, K.; Beck, H.; De Lannoy, G.; Pauwels, V.R.N.; Raiho, A.; Montzka, C.; Williams, M.; Mishra, U.; Poppe, C.; Zacharias, S.; Lausch, A.; Samaniego, L.; Van Looy, K.; Bogena, H.; Adamescu, M.; Mirtl, M.; Fox, A.; Goergen, K.; Naz, B.S.; Zeng, Y.; Vereecken, H. (2021). Reanalysis in earth system science: toward terrestrial ecosystem reanalysis. Rev. Geophys. 59(3): e2020RG000715. https://dx.doi.org/10.1029/2020RG000715, meer
Belliard, J.-P.; Dominguez-Granda, L.E.; Ramos-Veliz, J.A.; Rosado-Moncayo, A.M.; Nath, J.; Govers, G.; Gourgue, O.; Temmerman, S. (2021). El Niño driven extreme sea levels in an Eastern Pacific tropical river delta: Landward amplification and shift from oceanic to fluvial forcing. Global Planet. Change 203: 103529. https://dx.doi.org/10.1016/j.gloplacha.2021.103529, meer
Bornemann, A.; Jehle, S.; Lägel, F.; Deprez, A.; Petrizzo, M.R.; Speijer, R.P. (2021). Planktic foraminiferal response to an early Paleocene transient warming event and biostratigraphic implications. Int. J. Earth Sci. 110(2): 583-594. https://hdl.handle.net/10.1007/s00531-020-01972-z, meer
Claes, H.; Miranda, T.; Falcão, T.C.; Soete, J.; Mohammadi, Z.; Zieger, L.; Erthal, M.M.; Aguillar, J.; Schmatz, J.; Busch, A.; Swennen, R. (2021). Model for calcite spherulite formation in organic, clay-rich, lacustrine carbonate shales (Barbalha Formation, Aptian, Araripe Basin, NE Brazil). Mar. Pet. Geol. 128: 104988. https://dx.doi.org/10.1016/j.marpetgeo.2021.104988, meer
Deirmendjian, L.; Descy, J.-P.; Morana, C.; Okello, W.; Stoyneva-Gartner, M.P.; Bouillon, S.; Borges, A.V. (2021). Limnological changes in Lake Victoria since the mid‐20th century. Freshwat. Biol. 66(8): 1630-1647. https://dx.doi.org/10.1111/fwb.13780, meer
Graniero, L.E.; Gillikin, D.P.; Surge, D.; Kelemen, Z.; Bouillon, S. (2021). Assessing δ15N values in the carbonate-bound organic matrix and periostracum of bivalve shells as environmental archives. Palaeogeogr. Palaeoclimatol. Palaeoecol. 564: 110108. https://dx.doi.org/10.1016/j.palaeo.2020.110108, meer
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Datasets (3) |
Top | Personen | Instituten | Publicaties | Project |
- Projekt Zee - Analyse van suspentiemateriaal in in het Belgisch Deel van de Noordzee 1970-197, meer
- Projekt Zee - Datasets voor het Belgisch Deel van de Noordzee 1970-1976, meer
- Projekt Zee - Waterkwaliteit datasets van het Belgisch Deel van de Noordzee 1970-1976, meer
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