The impact of land use and climate change on late Holocene and future suspended sediment yield of the Meuse catchment
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Ashagrie, 2006, Detecting the influence of land use changes on discharges and floods in the Meuse River Basin — the predictive power of a ninety-year rainfall–runoff relation?, Hydrology and Earth System Sciences, 10, 691, 10.5194/hess-10-691-2006
Asselman, N.E.M., 1997. Suspended sediment in the River Rhine. The impact of climate change on erosion, transport, and deposition. Ph.D. Thesis, Universiteit Utrecht, Utrecht, The Netherlands.
Asselman, 1995, Floodplain sedimentation: quantities, patterns, and processes, Earth Surface Processes and Landforms, 20, 481, 10.1002/esp.3290200602
Bakker, 2008, The response of soil erosion and sediment export to land-use change in four areas of Europe: the importance of landscape pattern, Geomorphology, 98, 213, 10.1016/j.geomorph.2006.12.027
Beets, 2000, The Holocene evolution of the barrier and the back-barrier basins of Belgium and the Netherlands as a function of late Weichselian morphology, relative sea-level rise and sediment supply, Geologie en Mijnbouw, 79, 3, 10.1017/S0016774600021533
Berger, H.E.J., 1992. Flow forecasting for the River Meuse. Ph.D. Thesis, Technische Universiteit Delft, Delft, The Netherlands.
Boardman, 1993, Climate change and soil erosion in Britain, The Geographical Journal, 159, 179, 10.2307/3451408
Boers, 1996, Nutrient emissions from agriculture in the Netherlands: causes and remedies, Water, Science and Technology, 33, 183, 10.1016/0273-1223(96)00229-6
Bollinne, 1979, L'érosivité des précipitations à Florennes. Révision de la carte des isohyètes et de la carte d'érosivité de la Belgique, Bulletin de la Société Géographique de Liège, 15, 77
Box, 1981, The effects of surface salty fragments on soil erosion by water, Soil Science Society of America Journal, 45, 111, 10.2136/sssaj1981.03615995004500010024x
Brovkin, 2002, Carbon cycle, vegetation, and climate dynamics in the Holocene: experiments with the CLIMBER-2 model, Global Biogeochemical Cycles, 16, 1139, 10.1029/2001GB001662
Bunnik, 1995, Pollenanalytische Ergebnisse zur Vegetations- und Land-wirtschaftsgeschichte der Jülicher Lößbörde von der Bronzezeit bis in die frühe Neuzeit, Bonner Jahrbücher, 195, 313
Close-Lecocq, 1982, Les transports en suspension et en solution de la Meuse à Liege et à Tailfer (amont de Namur), Bulletin de la Société Géographique de Liège, 18, 5
De Moor, 2008, Alluvial and colluvial sediment storage in the Geul River catchment (The Netherlands) — combining field and modelling data to construct a Late Holocene sediment budget, Geomorphology, 95, 487, 10.1016/j.geomorph.2007.07.012
De Moor, 2008, Human and climate impact on catchment development during the Holocene–Geul River, the Netherlands, Geomorphology, 98, 316, 10.1016/j.geomorph.2006.12.033
Desmet, 1996, A GIS procedure for automatically calculating the USLE LS factor on topographically complex landscape units, Journal of Soil and Water Conservation, 51, 427
De Wit, 1999, Nitrogen and phosphorus emissions from soil to surface water in the Rhine and Elbe basins, Water Science and Technology, 39, 109, 10.1016/S0273-1223(99)00325-X
De Wit, 2007, Floods in the Meuse basin: event descriptions and an international view on ongoing measures, International Journal of River Basin Management, 5, 279, 10.1080/15715124.2007.9635327
Doomen, 2008, Predicting suspended sediment concentrations in the Meuse River using a supply-based sediment rating curve, Hydrological Processes, 22, 1846, 10.1002/hyp.6767
Erkens, 2006, Holocene sediment budgets of the Rhine Delta (The Netherlands): a record of changing sediment delivery, 406
Favis-Mortlock, 1995, Nonlinear responses of soil erosion to climate change: a modelling study on the UK South Downs, Catena, 25, 365, 10.1016/0341-8162(95)00018-N
Giorgi, 2007, European climate-change oscillation (ECO), Geophysical Research Letters, 34, L21703, 10.1029/2007GL031223
Goosse, 1999, Importance of ice-ocean interactions for the global ocean circulation: a model study, Journal of Geophysical Research — Oceans, 104, 23337, 10.1029/1999JC900215
Goosse, 2005, Internal and forced climate variability during the last millennium: a model-data comparison using ensemble simulations, Quaternary Science Reviews, 24, 1345, 10.1016/j.quascirev.2004.12.009
Gotjé, 1990, A palynological study of a Holocene deposit from Grand-Bongard (Hautes-Fagnes, Belgium), Geologie en Mijnbouw, 69, 227
Goudie, 1992
Houben, 2006, Land use and climatic impacts on the Rhine system (RheinLUCIFS): quantifying sediment fluxes and human impact with available data, Catena, 66, 42, 10.1016/j.catena.2005.07.009
IPCC, 1992
IPCC, 2000
IPCC, 2007
Ito, 2007, Simulated impacts of climate and land-cover change on soil erosion and implication for the carbon cycle, 1901 to 2100, Geophysical Research Letters, 34, L09403, 10.1029/2007GL029342
Jarvis, 2006
Keesstra, 2005, Evolution of the morphology of the river Dragonja (SW Slovenia) due to land-use changes, Geomorphology, 69, 191, 10.1016/j.geomorph.2005.01.004
Kettner, 2007, Modeling suspended sediment discharge from the Waipaoa River system, New Zealand: The last 3000 years, Water Resources Research, 43, W07411, 10.1029/2006WR005570
Kirkby, 2004, Pan-European soil erosion risk assessment: the PESERA Map, Version 1 October 2003
Lang, 2006, Past soil erosion in Europe, 465
Lang, 2003, Changes in sediment flux and storage within a fluvial system: some examples from the Rhine catchment, Hydrological Processes, 17, 3321, 10.1002/hyp.1389
Lefevre, 1993, Evolution des environnements sedimentaires et biologiques a l'Holocene dans la plaine alluviale de la Meuse (Ardennes, France): premiers resultats, Quaternaire, 4, 17, 10.3406/quate.1993.1987
Lemin, 1987, Les transports en suspension de la Meuse, l'Ourthe et la Höegne, Bulletin de la Société Géographique de Liège, 22–23, 39
Nearing, 2005, Modeling response of soil erosion and runoff to changes in precipitation and cover, Catena, 61, 131, 10.1016/j.catena.2005.03.007
Notebaert, B., Verstraeten, G., 2008. Holocene alluvial sediment deposition in contrasting environments in northwestern Europe. Sediment dynamics in a changing environment. IAHS Publication 325.
Opsteegh, 1998, ECBILT: a dynamic alternative to mixed boundary conditions in ocean models, Tellus, 50A, 348, 10.1034/j.1600-0870.1998.t01-1-00007.x
Pongratz, J., Reick, C., Raddatz, T., Claussen, M., 2007. Reconstruction of global land use and land cover AD 800 to 1992. WDCC, Hamburg, Germany, available from http://tws.gbv.de/DB=2.63/SET=1/TTL=21/CMD?ACT=SRCHA&IKT=1016&SRT=YOP&TRM=WDCC.
Pruski, 2002, Runoff and soil loss responses to changes in precipitation: a computer simulation study, Journal of Soil and Water Conservation, 57, 7
Renard, 1991, RUSLE-revised universal soil loss equation, Journal of Soil and Water Conservation, 46, 30
Renssen, 2005, Simulating the Holocene climate evolution at northern high latitudes using a coupled atmosphere–sea–ice–ocean–vegetation model, Climate Dynamics, 24, 23, 10.1007/s00382-004-0485-y
Richards, 2002, Geomorphic dynamics of floodplains: ecological implications and a potential modelling strategy, Freshwater Biology, 47, 559, 10.1046/j.1365-2427.2002.00920.x
Rommens, 2006, Holocene alluvial sediment storage in a small river catchment in the loess area of central Belgium, Geomorphology, 77, 187, 10.1016/j.geomorph.2006.01.028
Ruddiman, 2003, The anthropogenic greenhouse era began thousands of years ago, Climatic Change, 61, 261, 10.1023/B:CLIM.0000004577.17928.fa
RWS Limburg/IWACO, 2000. Internationale ecologische verkenning Maas (EVIM). Historisch ecologische oriëntatie op het stroomgebied (fase 2a). Rijkswaterstaat Directie Limburg, Afdeling Integraal Waterbeleid, Maastricht, The Netherlands.
S.P.I.04.73, 2004, The PESERA Map: Pan-European Soil Erosion Risk Assessment
Spring, 1883, Étude sur les eaux de la Meuse, Annales de la Société Géologique de la Belgique, 11, 123
Tallis, 1990
Toy, 2002
Trimble, 1999, Decreased rates of alluvial sediment storage in the Coon Creek Basin, Wisconsin, 1975–93, Science, 285, 1244, 10.1126/science.285.5431.1244
Van der Knijff, 2000
Van Liedekerke, 2006
Van Oost, 2000, Evaluating the effects of changes in landscape structure on soil erosion by water and tillage, Landscape Ecology, 15, 577, 10.1023/A:1008198215674
Van Rompaey, 2001, Modelling mean annual sediment yield using a distributed approach, Earth Surface Processes and Landforms, 26, 1221, 10.1002/esp.275
Van Rompaey, 2001, The impacts of land use policy on the soil erosion risk: a case study in central Belgium, Agriculture, Ecosystems and Environment, 83, 83, 10.1016/S0167-8809(00)00173-0
Van Rompaey, 2002, Modelling land use changes and their impact on soil erosion and sediment supply to rivers, Earth Surface Processes and Landforms, 27, 481, 10.1002/esp.335
Van Rompaey, 2003, Validation of soil erosion estimates at European scale
Van Rompaey, 2005, Modeling sediment yields in Italian catchments, Geomorphology, 65, 157, 10.1016/j.geomorph.2004.08.006
Verburg, 2006, Simulating feedbacks in land use and land cover models, Landscape Ecology, 21, 1171, 10.1007/s10980-006-0029-4
Verburg, 2006, Downscaling of land use change scenarios to assess the dynamics of European landscapes, Agriculture, Ecosystems and Environment, 114, 39, 10.1016/j.agee.2005.11.024
Verburg, 2008, A multi-scale, multi-model approach for analyzing the future dynamics of European land use, The Annals of Regional Science, 10.1007/s00168-007-0136-4
Verstraeten, 2006, Regional scale modelling of hillslope sediment delivery with SRTM elevation data, Geomorphology, 81, 128, 10.1016/j.geomorph.2006.04.005
Verstraeten, 1999, The nature of small-scale flooding, muddy floods and retention pond sedimentation in central Belgium, Geomorphology, 29, 275, 10.1016/S0169-555X(99)00020-3
Verstraeten, 2001, Factors controlling sediment yield from small intensively cultivated catchments in a temperate humid climate, Geomorphology, 40, 123, 10.1016/S0169-555X(01)00040-X
Verstraeten, 2002, Regional scale variability in sediment and nutrient delivery from small agricultural watersheds, Journal of Environmental Quality, 31, 870, 10.2134/jeq2002.0870
Verstraeten, 2002, Evaluating an integrated approach to catchment management to reduce soil loss and sediment pollution through modelling, Soil Use and Management, 19, 386
Verstraeten, 2003, Thema 2.20 Kwaliteit Bodem: erosie, 345
Verstraeten, 2006, Long-term (105 years) variability in rain erosivity as derived from 10-min rainfall depth data for Ukkel (Brussels, Belgium): Implications for assessing soil erosion rates, Journal of Geophysical Research, 111, D22109, 10.1029/2006JD007169
Verstraeten, 2006, The use of riparian vegetated filter strips to reduce river sediment loads: an overestimated control measure?, Hydrological Processes, 20, 2797, 10.1002/hyp.6155
Ward, 2008, Revised estimate of River Meuse suspended sediment yield in the 20th Century: decreasing rather than increasing?, Netherlands Journal of Geosciences, 87, 189, 10.1017/S0016774600023222
Ward, 2008, Strong increases in flood frequency and discharge of the River Meuse over the late Holocene: impacts of long-term anthropogenic land use change and climate variability, Hydrology and Earth System Sciences, 12, 159, 10.5194/hess-12-159-2008
Westhoek, 2006, Scenario development to explore the future of Europe's rural areas, Agriculture, Ecosystems & Environment, 114, 7, 10.1016/j.agee.2005.11.005
WUR/MNP, 2007
Yang, 2003, Global potential soil erosion with reference to land use and climate changes, Hydrological Processes, 17, 2913, 10.1002/hyp.1441