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References

  • Abdul Rahim N (1988) Water yield changes after forest conversion to agricultural land use in Peninsular Malaysia. J Trop Forest Sei 1:67–82

    Google Scholar 

  • Abdul Rahim N (1992) Impact of forest conversion on water yield in Peninsular Malaysia. Malays For 50(3)1258–273

    Google Scholar 

  • Acocks JPH (1988) Veld types of South Africa. Botanical Research Institute, Pretoria, South Africa. Mem Bot Surv S Afr 57, 146 p Acreman MC (ed)(2000) The hydrology of the UK. Routledge, London, 303 p

    Google Scholar 

  • Acreman MC, Adams B (1998) Low flows, groundwater and wetlands interactions — a scoping study, Part 1. Report to Environment Agency (W6-013), UKWIR (98/WR/09/1) and NERC (BGS WD/98/II), 97P

    Google Scholar 

  • Acreman MC, José P (2000) Wetlands. In: Acreman MC (ed) The hydrology of the UK. Routledge, London, pp 204–224

    Google Scholar 

  • Acreman MC, Barbier EG, Birley MH, Campbell K, Farquharson FAK, Hodgson N, Lazenby J, McCartney MP, Morton J, Smith D, Sullivan CA (1999) Managed flood releases from dams — a review of current problems and future prospects. Institute of Hydrology, Wallingford, UK, Report to DFID-Project R7344, 57 p

    Google Scholar 

  • Acreman MC, Farquharson FAK, McCartney MP, Sullivan CA, Campbell K, Hodgson N, Morton J, Smith D, Birley MH, Knott D, Lazenby J, Wingfield R, Barbier EG (2000) Managed flood releases from reservoirs: issues and guidance. Centre for Ecology and Hydrology, Wallingford, UK, Report to DFID and World Commission on Dams, 88 p

    Google Scholar 

  • Adewale A (2001) River Channel dynamics in response to elimatic variations in the Sudano-Sahelian zone (SSZ). In: IGBP, IHDP, WCRP (eds) Challenges of a changing Earth. Global Change Open Science Conference, Poster P.3.0.021, Amsterdam

    Google Scholar 

  • Ahnert F (1970) Functional relationships between denudation, relief and uplift in large mid latitude drainage basins. Am J Sei 268:243–263

    Google Scholar 

  • Aitkenhead JA, McDowell WH (2000) Soil C:N ratio as a predictor of annual riverine DOC flux at local and global scales. Global Biogeochem Cy 14:127–138

    Google Scholar 

  • Albergel J (1987) Genèse et prédétermination des crues au Burkina Faso. Du m2 au km2: etude des parametres hydrologiques et de leur evolution. PhD, University of Paris

    Google Scholar 

  • Alexander RB, Murdoch PS, Smith RA (1996) Streamflow-induced variations in nitrate flux in tributaries to the Atlantic coastal zone. Biogeochemistry 33:149–177

    Google Scholar 

  • Alexander RB, Smith RA, Schwarz GE (2000) Effect of stream channel size on the delivery of nitrogen to the Gulf of Mexico. Nature 403:758–761

    Google Scholar 

  • Alfonso S, Grousset F, Masse L, Tastet J-P (2001) A European 1ead isotope signal recorded from 6 000 to 3 000 years B.P. in coastal marshes (SW France). Atmos Environ 35(21):3595–3605

    Google Scholar 

  • Amarasekera KN, Lee RF, William ER, Eltahir EAB (1997) ENSO and the natural variability in the flow of tropical rivers. J Hydrol 200:24–39

    Google Scholar 

  • Amiotte-Suchet P, Probst JL (1995) A global model for present-day atmospheric/soil CO2 consumption by chemical erosion of continental rocks (GEM-CO2). Tellus 476:273–280

    Google Scholar 

  • Amon RMW, Benner R (1996) Bacterial utilization of different size classes of dissolved organic matter. Limnol Oceanogr 41:41–51

    Google Scholar 

  • Anderson MG, Burt TP (1990) Subsurface runoff. In: Anderson MG, Burt TP (eds) Process studies in hillslope hydrology. John Wiley & Sons, New York, pp 365–400

    Google Scholar 

  • Anderson SP, Dietrich WE, Montgomery DR, Torres R, Loague K (1997) Subsurface flow paths in a steep, unchanneled catchment. Water Resour Res 33(12):2637–2653

    Google Scholar 

  • Andrews JA, Schlesinger WH (2001) Soil CO2 dymamics, acidification and chemical weathering in a temperate forest with experimental CO2 enrichment. Global Biogeochem Cy 15:149–162

    Google Scholar 

  • Araüjo-Lima CARM, Forsberg BR, Victoria R, Martinelli L (1986) Energy sources for detritivorous fishes in the Amazon. Science 234:1256–1258

    Google Scholar 

  • Arheimer B, Wittgren HB (1994) Modelling the effects of wetlands on regional nitrogen transport. Ambio 23:378–386

    Google Scholar 

  • Arnell NW (1999) The effect of climate change on hydrological regimes in Europe: a Continental perspective. Global Environ Chang 9:5–23 Arnell NW, C Liu (eds)(2001) Hydrology and water resource. In: McCarthy JJ, Canziani OF, Leary NA, Dokken DJ, White KS (eds) Climate change 2001: impacts, adaptation, and vulnerability. Cambridge University Press, Cambridge

    Google Scholar 

  • Artemyev VR (1996) Geochemistry of organic matter in river-sea Systems. Kluwer Academic Publishers, Dordrecht, 190 p

    Google Scholar 

  • Ashton P (2000) Integrated catchment management: balancing resource utilisation and conservation. CSIR, Pretoria, RSA, Aquatic Biomonitoring Course Notes, 11 p

    Google Scholar 

  • Aumont O, Orr JC, Monfray P, Ludwig W, Amiotte-Suchet P, Probst JL (2001) Riverine-driven interhemispheric transport of carbon. Global Biogeochem Cy 15:393–405

    Google Scholar 

  • Avissar R, Liu Y (1996) A three-dimensional numerical study of shallow convective clouds and preeipitation induced by landsurface forcing. J Geophys Res 101:7499–7518

    Google Scholar 

  • Bach M, Behrendt H, Huber A, Freude H-G (1999) Input paths and water load of nutrients and plant protection produets in Germany. In Van der Kraats JA (ed) Farming without harming: the impact of agricultural pollution on water Systems. Drukkerij Belser, Lelystad, Netherlands, pp 71–82

    Google Scholar 

  • Baker VR, Benito G, Rudoy A (1993) Paleohydrology of late Pleistocene superflooding. Altay mountains. Science 259: 348–350

    Google Scholar 

  • Banasik K (1989) Estimation of the effect of land-use changes on storm-event Sediment yield from a small watershed. In: Sediment transport modeling. American Society of Civil Engineers; New York; USA, pp 741–746

    Google Scholar 

  • Bartlett KB, Crill PM, Banasi JA, Richey JE, Harriss RC (1990) Methane flux from the Amazon River floodplain: emissions during rising water. J Geophys Res 95:16733–16738

    Google Scholar 

  • Bazemore DE, Eshleman KN, Hollenbeck KJ (1994) The role of soil water in stormflow generation in a forested headwater catchment: synthesis of natural tracer and hydrometric evidence. J Hydrol 162:47–75

    Google Scholar 

  • Bear J (1979) Hydraulics of groundwater. McGraw-Hill, New York

    Google Scholar 

  • Becker A (1989) Specific aspects of runoff formation. In: Proc. Int. Symp. on Headwater Control (Prague, November 1989), Vol. I. Prague University, Prague

    Google Scholar 

  • Becker A (1995) Problems and progress in macroscale hydrological modelling In: Feddes (ed) Space and time scale variability and interdependencies in hydrological processes. Internat. Hydrology Series, Cambridge University Press, pp 1351–1443

    Google Scholar 

  • Becker A, Braun P (1999) Disaggregation, aggregation and spatial scaling in hydrological modelling. J Hydrol 217:239–252

    Google Scholar 

  • Becker A, McDonnell J (1998) Topographical and ecological controls of runoff generation and lateral flows in mountain catchments. In: Kovar K, Tappeiner U, Peters NE, Craig RG (eds) Hydrology, water resources and ecology in headwaters. Proc. HeadWater’ 98 Conf., Merano, April 1998, IAHS Publ. No. 248, pp 199–206

    Google Scholar 

  • Becker A, Pfützner B (1986) Identification and modeling of river flow reductions caused by evapotranspiration losses from shallow groundwater areas. Proc. of the Budapest Symp., July 1986. IAHS Publ. No. 156

    Google Scholar 

  • Becker A, Güntner A, Katzenmaier D (1999a) Required integrated approach to understand runoff generation and flow-path dynamics in catchments. In: Leibundgut C, McDonnell J, Schultz G (eds) Integrated methods in catchment hydrology. Proc. Int. Symp. at Birmingham, UK, July 1999, IAHS Publ. No. 258, pp 3–9

    Google Scholar 

  • Becker A, Wenzel F, Krysanova V, Lahmer W (1999b) Regional analysis of global change impacts: concepts, tools and first results. Environ Model Assess 4(4):243–257

    Google Scholar 

  • Becker A, Klöcking B, Lahmer W, Pfützner B (2002) The hydrological modelling System ARC/EGMO. In: Singh VP, Frevert DK (eds) Mathematical models of large watershed hydrology. Water Resources Publications, Colorado/USA

    Google Scholar 

  • Behrendt H, Huber P, Ley M, Opitz D, Schmoll O, Scholz G, Uebe R (1999) Nährstoffbilanzierung der Flussgebiete Deutschlands. Institute for Freshwater Ecology and Inland Fisheries, Berlin, Germany, Report, 288 p

    Google Scholar 

  • Belmans C, Wesseling JG, Feddes RA (1983) Simulation model of the water balance of a cropped soil: SWATRE. J Hydrol 63(3/4): 271–286

    Google Scholar 

  • Bencala KE (2000) Hyporheic zone hydrological processes. Hydrol Process 14:2797–2798 Benito G, Baker VR, Gregory KJ (eds) (1998) Paleohydrology and environmental change. John Wiley & Sons, Chichester, pp 215–264

    Google Scholar 

  • Benner R, Osphal S, Chin-Leo G, Richey JE, Forsberg BR (1995) Bacterial carbon metabolism in the Amazon River System. Limnol Oceanogr 40:1252–1270

    Google Scholar 

  • Beven KJ (1996) A discussion of distributed hydrological modeling. In: Abbott MB, Refsgaard JCH (eds) Distributed hydrological modelling. Kluwer Academic Publishers, Dordrecht Boston London, pp 255–278

    Google Scholar 

  • Beven K (2001) How far can we go in distributed hydrological modelling? Hydrol Earth Syst Sc 5:1–12

    Google Scholar 

  • Beven K, Freer J (2001) A dynamic TOPMODEL. Hydrol Process 15: 1993–2011

    Google Scholar 

  • Beven KJ, Germann PF (1982) Macropores and water flow in soils. Water Resour Res 18:1311–1325

    Google Scholar 

  • Beven K, Lamb R, Quinn P, Romanowicz R, Freer J (1995) TOPMODEL. In: Singh VP (ed) Computer models of watershed hydrology. Water Resources Publications, Boulder, USA, pp 627–668

    Google Scholar 

  • Bichet V, Campy M, Buonchristiani JF, Digiovanni C, Meybeck M, Richard H (1998) Variations in sediment yield from the upper Doubs River (Jura, France) since the late glacial period. Quaternary Res 51:267–279

    Google Scholar 

  • Billen G, Garnier J (1999) Nitrogen transfers through the Seine drainage network: a budget based on the application of the “Riverstrahler” model. Hydrobiologia 410:139–150

    Google Scholar 

  • Birkett CM (1995) The contribution of TOPEX/POSEIDON to the global monitoring of climatically sensitive lakes. J Geophys ResOceans 100(C12):25179–25204

    Google Scholar 

  • Birkett CM (1998) The contribution of the TOPEX (NRA) radar altimeter to the global monitoring of large rivers and wetlands. Water Resour Res 34:1223–1239

    Google Scholar 

  • Birkett CM, Murtugudde R, Allan T (1999) Indian Ocean climate event brings floods to East Africa’s lakes and the Sudd Marsh. Geophys Res Lett 26(8):1031–1034

    Google Scholar 

  • Birkhead AL, James CS, Olbrich BW (1996) Developing an integrated approach to predicting the water use of riparian Vegetation. Water Research Commission, Pretoria, RSA. Report No. 474/1/97

    Google Scholar 

  • Blais JM, France RL, Kimpe LE, Cornett RJ (1998) Climatic changes in northwestern Ontario have had a greater effect on erosion and sediment accumulation than logging and fire: evidence from 210Pb chronology in lake Sediments. Biogeochemistry 43:235–252

    Google Scholar 

  • Bluth GJS, Kump LR (1994) Lithologic and climatologic controls of river chemistry. Geochim Cosmochim Ac 58:2341–2359

    Google Scholar 

  • Boardman J, Ligneau L, de Roo A, Vandaele K (1994) Flooding of property by runoff from agricultural land in northwestern Europe. Geomorphology 10:183–196

    Google Scholar 

  • Bonell M (1998a) Selected challenges in runoff generation research in forests from the hillslope to headwater drainage basin scale J Am Water Resour As 34(4)765–785

    Google Scholar 

  • Bonell M (1998b) Possible impacts of climate variability and change on tropical forest hydrology. Climatic Change 39(2-3): 215–272

    Google Scholar 

  • Bonell M, Williams J (1986a) The two parameters of the Philip infiltration equation: their properties and the spatial and temporal heterogeneity in a red earth of tropical semiarid Queensland. J Hydrol 87:9–31

    Google Scholar 

  • Bonell M, Williams J (1986b) The generation and redistribution of overland flow in a massive oxic soil in a eucalypt woodland within the semiarid tropics in north Australia. Hydrol Process 1:31–46

    Google Scholar 

  • Bonell M, Barnes CJ, Grant CR, Howard A, Burns J (1998) High rainfall response-dominated catchments: a comparative study of experiments in tropical north-east Queensland with temperate New Zealand. In: Kendali C, McDonnell JJ (eds) Isotope tracers in catchment hydrology. Elsevier, pp 347–390

    Google Scholar 

  • Boorman DB, Sefton CEM (1997) Recognising the uncertainty in the quantification of the effects of climate change on hydrological response. Climatic Change 35:415–434

    Google Scholar 

  • Bosch JH, Hewlett JD (1982) A review of catchment experiments to determine the effect of Vegetation changes on water yield and evapotranspiration. J Hydrol 55:3–23

    Google Scholar 

  • Bouwer H (1966) Rapid field measurements of air entry value and hydraulic conductivity of soils as signifikant parameters in flow System analysis. Water Resour Res 2:729–738

    Google Scholar 

  • Breen CM, Akhurst EGJ, Walmsley RD (1985) Water quality management in the Umgeni catchment. Natal Town and Regional Planning Commission, Pietermaritzburg, South Africa. Supplementary Report 12

    Google Scholar 

  • Bricker SB, Clement CG, Pirhalla DE, Orlando SP, Farrow DRG (1999) National estuarine eutrophication assessment: effects of nutrient enrichment in the nation’s estuaries. National Oceanic and Atmospheric Administration

    Google Scholar 

  • Brierley GJ, Murn CP (1997) European impacts on downstream sediment transfer and bank erosion in Cobargo catchment/New South Wales, Australia. Catena 31:119–136

    Google Scholar 

  • Broecker WS, Sanyal A (1998) Does atmospheric C02 police the rate of chemical weathering? Global Biogeochem Cy 12:403–408

    Google Scholar 

  • Bronstert A (1999) Capabilities and limitations of detailed hillslope hydrological modelling. Hydrol Process 13:21–48

    Google Scholar 

  • Bronswijk JJB, Hamminga W, Oostindie K (1995) Field-scale solute transport in a heavy clay soil. Water Resour Res 31:517–526

    Google Scholar 

  • Brooks A (1987) River Channel adjustments downstream of channelisation works in England and Wales. Earth Surf Proc Land 12:337–351

    Google Scholar 

  • Brooks A, Shields FF (1996) River Channel restoration: guiding principles for sustainable projects. John Wiley & Sons, Chichester

    Google Scholar 

  • Brown VA, McDonnell JJ, Burns DA, Kendali C (1999) The role of event water, rapid shallow flowpaths and catchment size in summer stormflow. J Hydrol 217:171–190

    Google Scholar 

  • Bunyard P (1987) Dam building in the tropics: some environmental and social consequences. In: Dickinson RE (ed) The geophysiology of Amazonia. John Wiley & Sons, Chichester, pp 63–68

    Google Scholar 

  • Burns D, Hooper RP, McDonnell JJ, Freer J, Kendall C, Beven K (1998) Base cation concentrations in subsurface flow from a forested hillslope: the role of flushing frequency. Water Resour Res 34: 3535–3544

    Google Scholar 

  • Buttle J (1998) Fundamentals of watershed hydrology. In: Kendall C, McDonnell JJ (eds) Isotope tracers in catchment hydrology. Elsevier Science Publishers, p 816

    Google Scholar 

  • Buttle J, Turcotte D (1999) Runoff processes on a forested slope on the Canadian shield. Nord Hydrol 30:1–20

    Google Scholar 

  • Calder IR (1999) The blue revolution: land use and integrated water resources management. Earthscan, London, UK, 192 p

    Google Scholar 

  • Canadell J, Jackson RB, Ehleringer JR, Mooney HA, Sala OE, Schulze ED (1996) Maximum rooting depth for Vegetation types at the global scale. Oecologia 108:583–595

    Google Scholar 

  • Caraco NF (1994) Influence of humans on P transfers to aquatic Systems: a regional scale study using large rivers. In: Tiessen H (ed) Phosphorus cycles in terrestrial and aquatic ecosystems. SCOPE. John Wiley & Sons, Chichester

    Google Scholar 

  • Caraco NF, Cole JJ (1999) Human impact on nitrate export: an analysis using world major rivers. Ambio 28:167–170

    Google Scholar 

  • Carpenter SR, Caraco NF, Correll DL, Howarth RW, Sharpley AN, Smith VH (1998) Non-point pollution of surface waters with phosphorus and nitrogen. Ecol Appl 8:559–568

    Google Scholar 

  • Carvalho NO, Baptista da Cunha S (1998) Estimativá da carga sólida do Rio Amazonas e seus principais tributários para a foz e oceano: uma retrospectiva. A Agua em Revista 6(10):44–58

    Google Scholar 

  • Casenave A, Valentin C (1992) A runoff capability classification System based on surface features criteria in semi-arid areas of West Africa. J Hydrol 130:231–249

    Google Scholar 

  • Cerda A (1997) Soil erosion after land abandonment in a semiarid environment of southeastern Spain. Arid Soil Res Rehab 11:163–176

    Google Scholar 

  • Cerda A (1998) Soil aggregate stability under different Mediterranean Vegetation types. Catena 32:73–86

    Google Scholar 

  • Changnon SA, Demissie M (1996) Detection of changes in streamflow and floods resulting from climate fluctuations and land use-drainage changes. Climatic Change 32:411–421

    Google Scholar 

  • Chappell NA, Franks SW, Larenus J (1998) Multi-scale permeability estimation for tropical catchment. Hydrol Process 12:1507–1523

    Google Scholar 

  • Chase TN, Pielke RA, Kittel TGF, Nemani RR, Running SW (1996) Sensitivity of a general circulation model to global changes in 1eaf area index. J Geophys Res 101(03)7393–7408

    Google Scholar 

  • Chase TN, Pielke RA, Kittel TGF, Nemani RR, Running SW (2000) Simulated impacts of historical land-cover changes on global climate in northern winter. Clim Dynam 16:93–105

    Google Scholar 

  • Chen C-TA (2002) The impact of dams on fisheries: case of the Three Gorges Dam. In: Steffen W, Jäger J, Carson DC, Bradshaw C: Challenges of a changing Earth. Springer, Berlin, pp 97–99

    Google Scholar 

  • Chiew FHS, Whetton PH, McMahon TA, Pittock AB (1995) Simulation of the impacts of climate change on runoff and soil moisture in Australian catchments. J Hydrol 167:121–147

    Google Scholar 

  • Church TM (1996) An Underground route for the watercycle. Nature 380:579–580

    Google Scholar 

  • Cirmo C, McDonnell JJ (1997) Hydrological controls of nitrogen biogeochemistry and transport in wetland/near-stream zones of forested watersheds. J Hydrol 199:88–120

    Google Scholar 

  • Clair TA, Ehrman JM, Higuchi K (1999) Changes in freshwater carbon exports from Canadian terrestrial basins to lakes and estuaries under a 2 ß CO2 atmospheric scenario. Global Biogeochem Cy 13:1091–1097

    Google Scholar 

  • Claussen M, Gayler V (1997) The greening of Sahara during the mid-Holocene: results of an interactive atmosphere-biome model. Global Ecol Biogeogr 6:369–377

    Google Scholar 

  • Clothier BE (2002) Rapid and far-reaching transport through structured soils. Hydrol Process 16(6):1321–1323

    Google Scholar 

  • Cluis D (1998) Analysis of long runoff series of selected rivers of the Asia-Pacific region in relation with climate change and El Nino effects, GRDC-Report No. 21, WMO-Global Runoff Data Center, Koblenz, Germany, 58 p

    Google Scholar 

  • Coe MT (1998) A linked global model of terrestrial hydrologic processes: Simulation of rivers, lakes, and wetlands. J Geophys Res 103(D8):8885–8899

    Google Scholar 

  • Cole JJ, Peierls BL, Caraco NF, Pace ML (1993) Human influence on river nitrogen. In: McDonnell M, Pickett S (eds) Humans as components of ecosystems: the ecology of subtle human effects and populated areas. Springer-Verlag, Berlin, pp 141–157

    Google Scholar 

  • Costa MH, Foley J, J (1997) Water balance of the Amazon basin: dependence on Vegetation cover and canopy conductance. J Geophys Res 102:23973–23989

    Google Scholar 

  • Costa MH, Foley JA (2000) Combined effects of deforestation and doubled atmospheric CO2 concentrations on the climate of Amazonia. J Climate 13:35–58

    Google Scholar 

  • Covich AP (1993) Water and ecosystems. In: Gleick PH (ed) Water in crisis: a guide to the world’s fresh water resources. Oxford University Press, Oxford, pp 40–55

    Google Scholar 

  • Creed IF, Band LE, Foster NW, Morrison IK, Nicolson JA, Semkin RS, Jeffries DS (1996) Regulation of nitrate-N release from temperate forests: a test of the N flushing hypothesis. Water Resour Res 32:3337–3354

    Google Scholar 

  • Crutzen PJ, Stoermer EF (2000) The anthropocene. IGBP Newsletter 41:17–18

    Google Scholar 

  • Dawdy DR (1991) Problems of runoff modeling which are particular to the area or climate being modeled. In: Bowles DS, O’Connell PE (eds) Recent advances in the modeling of hydrologic Systems. Kluwer Academic Publishers, Dordrecht, pp 541–547

    Google Scholar 

  • Dawson TE (1996) Determining water use by trees and forests from isotopic, energy balance, and transpiration analyses: the role of tree size and hydraulic lift. Tree Physiol 16:263–272

    Google Scholar 

  • Dearing JA, Alstrom K, Bergman A, Regneil J, Sandgreen P (1990) Recent and long-term records of soil erosion from southern Sweden. In: Boardman J, Foster IDL, Dearing JA (eds) Soil erosion on agricultural land. John Wiley & Sons, Chichester, pp 173–191 Degens ET, Kempe S, Richey JE (eds) (1991) Biogeochemistry of major world rivers. John Wiley & Sons, New York, 356 p

    Google Scholar 

  • Depetris PJ, Kempe S, Latif M, Mook WG (1996) ENSO-controlled flooding of the Parana River (1904-1991) Naturwissenschaften 83:127–129

    Google Scholar 

  • De Rosnay P, Polcher J (1998) Modelling root water uptake in a complex land surface scheme coupled to a GCM. Hydrol Earth Syst Sc 2:239–255

    Google Scholar 

  • De Rosnay P, Bruen M, Polcher J (2000) Sensitivity of surface fluxes to the number of layers in the soil model used in GCMs. Geophys Res Lett 27(20):3329–3332

    Google Scholar 

  • Desborough CE (1997) The impact of root-weighting on the response of transpiration to moisture stress in land surface schemes. Mon Weather Rev 125:1920–1930

    Google Scholar 

  • Devol AH, Hedges JI (2001) The biogeochemistry of the Amazon River mainstem. In: McClain ME, Victoria RL, Richey JE (eds) The biogeochemistry of the Amazon Basin. Oxford University Press, New York, 365 p

    Google Scholar 

  • Devol AH, Richey JE, Forsberg BR, Martinelli LA (1990) Seasonal dynamics in methane emissions from the Amazon River floodplain to the troposphere. J Geophys Res 950:16417–16426

    Google Scholar 

  • Devol AH, Forsberg BR, Richey JE, Pimentel TP (1995) Seasonal Variation in chemical distributions in the Amazon (Solimões) River: a multiyear time series. Global Biogeochem Cy 9:307–328

    Google Scholar 

  • Dickinson RE, Henderson-Sellers A (1988) Modeling tropical deforestation: a study of GCM land-surface parameterizations. Q J Roy Meteor Soc 114:439–462

    Google Scholar 

  • Dickinson RE, Henderson-Sellers A, Kennedy PJ (1993) Biosphere Atmosphere Transfer Scheme (BATS) Version iE as coupled to the NCAR Community climate model. Tech. Note NCAR/TN-387+STR, 72 p

    Google Scholar 

  • DiGiovanni C, Disnar JR, Macaire JJ (2001) Initial estimations of the annual organic productions of carbonated rocks. Eur. Union Geosci. Conf. Abst. J. Conf. Abstracts 4,1,187

    Google Scholar 

  • Dillon PJ, Kirchner WB (1975) The effects of geology and land use on the export of phosphorus from watersheds. Water Res 9: 135–148

    Google Scholar 

  • Dingman SL (1981) Planning level estimates of the value of reservoirs for water supply and flow augmentation in New Hampshire. Water Resour Bull 17:684–690

    Google Scholar 

  • Dingman SL (2001) Physical hydrology, 2nd edn. Englewood Cliffs (NJ), Prentice-Hall

    Google Scholar 

  • Dirmeyer PA, Zeng FJ (1997) A two-dimensional implementation of the Simple Biosphere (SiB) model. COLA Report 48, Center for Ocean-Land-Atmosphere Studies, Calverton, MD, USA, 30 p

    Google Scholar 

  • Dirmeyer PA, Zeng FJ, Ducharne A, Morrill JC, Koster RD (2000) The sensitivity of surface fluxes to soil water content in three land surface schemes. J Hydrometeorol i(2):m–i34

    Google Scholar 

  • DOE-UK (1993) Countryside survey, 1990 summary report. Department of the Environment, HMSO, London, UK

    Google Scholar 

  • Donkin AD, Smithers JC, Lorentz SA, Lorentz RE (1995) Direct estimation of total evaporation from a southern African wetland. In: Campbell KL (ed) Versatility of wetlands in the agricultural landscape. American Society of Agricultural Engineers, St Joseph MI, USA, pp 501–513

    Google Scholar 

  • Douglas I (1967) Man, Vegetation and the sediment yield of rivers. Nature 215:925–928

    Google Scholar 

  • Douglas I (1994) Human Settlements. In: Meyer WB, Turner BL (eds) Changes in land use and land cover. Cambridge University Press, Cambridge, pp 149–170

    Google Scholar 

  • Douglas EM, Vogel RM, Kroll CN (2000) Trends in floods and low flows in the US: impact of spatial correlation. J Hydrol 240: 90–105

    Google Scholar 

  • Ducharne A, Koster RD, Suarez MJ, Stieglitz M, Kumar P (2000) A catchment-based approach to modeling land surface processes in a general circulation model. 2: Parameter estimation and model demonstration. J Geophys Res 105:24823–24838

    Google Scholar 

  • Dunne T, Black RD (1970) Partial area contributions to storm runoff in a small New England watershed. Water Resour Res 6(5): 1296–1311.

    Google Scholar 

  • Dunne KA, Willmott CJ (1996) Global distribution of plant-extractable water capacity of soil. Int J Climatol 16:841–859

    Google Scholar 

  • Dunne T, Mertes LAK, Meade RH, Richey JE, Forsberg BR (1998) Exchanges of sediment between the floodplain and Channel of the Amazon River in Brazil. Geol Soc Am Bull 110:450–467

    Google Scholar 

  • Durand P, Robson A, Neal C (1992) Modelling the hydrology of submediterranean montane catchments. J Hydrol 139:1–14

    Google Scholar 

  • DVWK (Deutscher Verband für Wasserwirtschaft und Kulturbau e.V.) (1985) Bodennutzung und Nitrataustrag — Literaturauswertung über die Situation bis 1984 in der Bundesrepublik Deutschland. Bonn

    Google Scholar 

  • DWAF (Department of Water Affairs and Forestry) (1996) The philosophy and practice of integrated catchment management: implications for water resource management in South Africa. Water Research Commission, Pretoria, RSA, WRC Report, TT81/96, 140 p

    Google Scholar 

  • DWAF (Department of Water Affairs and Forestry) (1998) Water law implementation process: a Strategie plan for the department of water affairs and forestry to facilitate in the implementation of catchment management in South Africa. Water Research Commission, Pretoria, RSA, WRC Report, KV107/98, 66 p

    Google Scholar 

  • Dyck S, Peschke G (1995) Grundlagen der Hydrologie. VEB Verlag für Bauwesen, Berlin

    Google Scholar 

  • Dye PJ, Bosch JM (2000) Sustained water yield in afforested catchments — the South African experience. In: Von Gadow K, Putkala T, Tomé M (eds) Sustainable forest management. Kluwer Academic Publishers, Dordrecht, pp 99–120

    Google Scholar 

  • Dynesius M, Nilsson C (1994) Fragmentation and flow regulation of river Systems in the northern third of the world. Science 266: 753–762

    Google Scholar 

  • Easmus D (1991) The interaction of rising CO2 and temperatures with water use efficiency: commissioned review. Plant Cell Environ, Special issue: Elevated CO2 levels, 14(8)1843–852

    Google Scholar 

  • Easterling DR, Evans JL, Groisman PY, Karl TR, Kunkel KE, Ambenje P (2000) Observed variability and trends in extreme climate events: a brief overview. B Am Meteorol Soc 81(3): 417–425

    Google Scholar 

  • Eheart JW, Tornil DW (1999) Low-flow frequency exaeerbation by irrigation withdrawals in the agricultural midwest under various climate change scenarios. Water Resour Res 35(7):2237–2246 Ehlers E, Krafft T (eds) (2001) Understanding the Earth System. Compartments, processes interactions. Springer-Verlag, Heidelberg, 290 p

    Google Scholar 

  • English Nature (1997) Wildlife and fresh water — An agenda for sustainable management. English Nature, Peterborough, UK

    Google Scholar 

  • Environment Agency (1998) River habitat quality: the physical character of rivers and streams in the UK and the Isle of Man. Environment Agency, Bristol, UK

    Google Scholar 

  • Ertel JR, Hedges JI, Devol AH, Richey JE, Ribeiro N (1986) Dissolved humic substances of the Amazon River System. Limnol Oceanogr 31739–754

    Google Scholar 

  • Fahey BD, Watson AJ (1991) Hydrological impacts of converting tussock grassland to pine plantation, Otago, New Zealand. J Hydrol New-Zealand 30:1–15

    Google Scholar 

  • Falkenmark M (1997) Society’s interaction with the water cycle: a conceptual framework for a more holistic approach. Hydrolog Sei J 42:451–466

    Google Scholar 

  • Falkenmark M, Chapman T (1989) Comparative hydrology. UNESCO, Paris, France, 479 p

    Google Scholar 

  • Falkenmark M, Andersson L, Carstensson R, Sundblad K (1999) Water: a reflection of land use. Swedish Natural Science Research Council, Stockholm, Sweden, 128 p

    Google Scholar 

  • FAO (1999) State of the world’s forests. UN Food and Agriculture Organization, Rome

    Google Scholar 

  • Farrington J, Lobo C (1997) Scaling up partieipatory watershed development in India: lessons from the Indo-German Watershed Development Programme. Overseas Development Institute, London, UK. Natural Resource Perspectives 17

    Google Scholar 

  • Favis-Mortlock D, Boardman J (1995) Nonlinear responses of soil erosion to climate change: a modelling study on the UK South Downs. Catena 25:365–387

    Google Scholar 

  • Feddes RA, Kowalik PJ, Zaradny H (1978) Simulation of field water use and crop yield. Simulation Monographs, Pudoc. Wageningen, 189 p

    Google Scholar 

  • Feddes RA, Menenti M, Kabat P, Bastiaanssen WGM (1993a) Is large-scale inverse modelling of unsaturated flow with areal average evaporation and surface soil moisture as estimated from remote sensing feasable? J Hydrol 143:125–152

    Google Scholar 

  • Feddes RA, de Rooij GH, van Dam JC, Kabat P, Droogers P, Stricker JNM (1993b) Estimation of regional effective soil hydraulic Parameters by inverse modelling. In: Russo D, Dagan G (eds) Water flow and solute transport in soils. Adv. Series in Agric. Sciences 20, Springer Verlag, Berlin, pp 211–231

    Google Scholar 

  • Feddes RA, Hoff H, Bruen M, Dawson TE, de Rosnay P, Dirmeyer P, Jackson RB, Kabat P, Kleidon A, Lilly A, Pitman AJ (2001) Modelling root water uptake in hydrological and climate models. B Am Meteorol Soc 82:2797–2809

    Google Scholar 

  • Federer CA, Vörösmarty CJ, Fekete B (1996) Intercomparison of methods for potential evapotranspiration in regional or global water balance models. Water Resour Res 32:2315–2321

    Google Scholar 

  • Fekete BM, Vörösmarty CJ, Grabs W (1999) Global, composite runoff fields based on observed river discharge and simulated water balances. WMO-Global Runoff Data Center Report No. 22. Koblenz, Germany

    Google Scholar 

  • Fekete BM, Vörösmarty CJ, Lammers RB (2001) Scaling gridded river networks for macroscale hydrology: development, analysis, and control of error. Water Resour Res 37(7):1955–1967

    Google Scholar 

  • Fekete BM, Vörösmarty CJ, Grabs W (2002) High resolution fields of global runoff combining observed river discharge and simulated water balances. Global Biogeochem Cy 16(3): Art. No. 1042

    Google Scholar 

  • Feller C, Beare MH (1997) Physical control of soil organic matter dynamics in the tropics. Geoderma 79:69–116

    Google Scholar 

  • Fernald S, Wiggington P, Landers D (2001) Transient storage and hyporheic flow along the Willamette River, Oregon: field measurements and model estimates. Water Resour Res 37:1681–1694

    Google Scholar 

  • Fetter CW (1988) Applied hydrogeology. Prentice Hall, Englewood Cliffs NJ, 691 p

    Google Scholar 

  • Field CB, Jackson RB, Mooney HA (1995) Stomatal responses to increased CO2: implications from the plant to the global scale. Plant Cell Environ 18:1214–1225

    Google Scholar 

  • Fisher TRJ, Parsley PE (1979) Amazon lakes: water storage and nutrient stripping by algae. Limnol Oceanogr 24:547–553

    Google Scholar 

  • Flint RF (1971) Glacial and quaternary geology. John Wiley & Sons, Chichester, 892 p

    Google Scholar 

  • Flint EP, Richards JF (1991) Historical analysis of changes in land use and carbon stock of Vegetation in south and South-east Asia. Can J Forest Res 2(i):9i-no

    Google Scholar 

  • Flügel WA (1995) Delineating hydrological response units by GIS analyses. In: Kalma JD, Sivapalan M (eds) Scale issues in hydrological modelling. John Wiley & Sons, Chichester, pp 181–194

    Google Scholar 

  • Forsberg BR, Devol AH, Richey JE, Martinelli LA, dos Santos H (1988) Factors Controlling nutrient concentrations in Amazon floodplain lakes. Limnol Oceanogr 33:41–56

    Google Scholar 

  • Fournier F (1960) Climat et erosion. Presses Universitares Paris, 201 p

    Google Scholar 

  • Fräser AS, Meybeck M, Ongley ED (1995) Water quality of world river basins. UNEP Environment Library 14, UNEP, Nairobi, 40 p

    Google Scholar 

  • Freer J, Beven KJ, Ambroise B (1996) Bayesian estimation of uncertainty in runoff prediction and the value of data: an application of the GLUE approach. Water Resour Res 32(7):2161–2173

    Google Scholar 

  • Freer J, McDonnell JJ, Brammer D, Beven K, Hooper R, Burns D (1997) Topographie controls on subsurface stormflow at the hillslope scale for two hydrologically distinet catchments. Hydrol Process 11(9):1347–1352

    Google Scholar 

  • Freer J, McDonnell JJ, Beven KJ, Peters NE, Burns DA, Hooper RP, Aulenbach B (2002) The role of bedrock topography on subsurface storm flow. Water Resour Res 38(12):1269, doi:1210.1029/ 2001WR000872

    Google Scholar 

  • Freeze RA (1972) Role of subsurface flow in generating surface runoff; 2. Upstream source areas. Water Resour Res 8:1272–1283

    Google Scholar 

  • Freeze RA, Witherspoon PA (1967) Theoretical analysis of regional groundwater flow; 2. Effect on water table configuration and subsurface permeability Variation. Water Resour Res 3:623–634

    Google Scholar 

  • Frenzel B (1992) Atlas of paleoclimates and paleoenvironments of the Northern Hemisphere: Late Pleistocene, Holocene. Geographical Res Inst, Hungarian Academy Sei., Budapest

    Google Scholar 

  • Frink CR (1991) Estimating nutrient exports to estuaries. J Environ Qual 20:717–724

    Google Scholar 

  • Fritsch JM (1994) The hydrological effects of Clearing tropical rain forest and of the implementation of alternative land uses. IAHS Press, Wallingford, IAHS Publication No. 216, pp 53–66

    Google Scholar 

  • Frost PGH (2001) Reflections on integrated land and water management. In: Gash JHC, Odada EO, Oyebande L, Schulze RE (eds) Freshwater resources in Africa. BAHC International Project Office, PIK, Potsdam, Germany, pp 49–56

    Google Scholar 

  • Gale MR, Grigal DF (1987) Vertical root distributions of northern tree species in relation to successional Status. Can J Forest Res 17:829–834

    Google Scholar 

  • Galea G, Breil P, Ahmad A (1993) Influence du couvert vegetal sur l’hydrologie des crues, modelisation à validations multiples. Hydrologie Continentale 8:17–33

    Google Scholar 

  • Galloway JN, Schlesinger WH, Levy HI, Michaels A, Schnoor JL (1995) Nitrogen fixation: anthropogenic enhancement-environmental response. Global Biogeochem Cy 9:235–252

    Google Scholar 

  • Gash JHC, Nobre CA (1997) Climatic effects of Amazonian deforestation: some results from ABRACOS. B Am Meteorol Soc 78(5): 823–830

    Google Scholar 

  • Gataullin V, Mangerud J, Svendsen JI (2001) The extent of the late Weichselian ice sheet in the south eastern Barents Sea. Global Planet Change 31:453–474

    Google Scholar 

  • Gellens D, Roulin E (1999) Streamflow response of Belgian catchments to IPCC climate change scenarios. J Hydrol 210:242–258

    Google Scholar 

  • Genereux D (1998) Quantifying uncertainty in tracer-based hydrograph separations. Water Resour Res 34(4):915–919 Gerasimov IP (ed) (1964) Fiziko-geograficheskiy atlas mira (physico-geographical atlas of the world). Soviet Acad of Science Moscow, 298 p

    Google Scholar 

  • Gibbs MT, Kump LR (1994) Global chemical erosion during the last glacial maximum and the present: sensitivity to changes in lithology and hydrology. Paleoceanography 9:529–543

    Google Scholar 

  • Giovannini G, Luccchesi S (1992) Effects of fire on soil physicochemical characteristics and erosion dynamics. In: Tabaud L, Prodon R (eds) Fire in Mediterranean ecosystems. Ecosystems Research Report No.°5, Commission of the European Communities, Brussels, Belgium, pp 403–412

    Google Scholar 

  • Gleick PH (1987) Regional hydrologic consequences of increases in atmospheric C02 and other trace gases. Climatic Change 10:137–131

    Google Scholar 

  • Gleick PH (1998) The world’s water: the biennial report on freshwater resources (1998-1999). Island Press, Washington DC

    Google Scholar 

  • Gleick PH (2000) Water futures: a review of global water resources projeetions. In: Rijsberman FR (ed) World water scenarios. Earthscan Pages, London, pp 27–45

    Google Scholar 

  • Goolsby DA, Battaglin W (2001) Long-term changes in concentrations and flux of nitrogen in the Mississippi River basin, USA. Hydrol Process 15:1209–1226

    Google Scholar 

  • Goudrian J, Ketner P (1984) A Simulation study of the global carbon cycle including man’s impact on the biosphere. Climatic Change 6:167–192

    Google Scholar 

  • Gouy V, Jannot P, Laplana R, Male, J-M, Turpin N (1999) Country paper of France. In: Van der Kraats JA (ed) Farming without harming: the impact of agricultural pollution on water Systems. Drukkerij Belser, Lelystad, Netherlands, pp 57–70

    Google Scholar 

  • Graham D, House A, Hudson J, Leeks G, Williams R (1999a) Impact of agricultural pollution on water Systems: country paper of the UK. In: Van der Kraats JA (ed) Farming without harming: the impact of agricultural pollution on water Systems. Drukkerij Belser, Lelystad, Netherlands, pp 209–227

    Google Scholar 

  • Graham ST, Famiglietti FS, Maidment DR (1999b) Five minute, 1/2° and 1° datasets of Continental watersheds and river networks for use in regional and global hydrologic and climate System modeling studies. Water Resour Res 35:583–587 GRASS (1993) GRASS 4.1 Reference Manual. US Army Corps of Engineers. Construction Engineering Research Laboratories, Champaign, Illinois, 556 p

    Google Scholar 

  • Green PA, Vörösmarty CJ, Meybeck M, Galloway JN, Peterson BJ, Boyer EW (2003) Pre-industrial and contemporary fluxes of nitrogen through rivers: a global assessmant based on typology. Biogeochemistry (in press)

    Google Scholar 

  • Grigg NS (1999) Integrated water resources management: who should 1ead, who should pay? J Am Water Resour As 35:527–534

    Google Scholar 

  • Grosbois CA, Horowitz AJ, Smith JJ, Febric KA (2001) The effect of mining and related activities on the sediment-trace element geochemistry of the Lake Coeur d’Alene, Idaho, USA. Part III: Downstream effects: the Spokane River basin. Hydrol Process 15:855–875

    Google Scholar 

  • Groisman PY, Knight RW, Karl TR (2001) Heavy preeipitation and high streamflow in the contiguous United States: trends in the twentieth Century. Bull Am Meteorol Soc 82(2):219–246

    Google Scholar 

  • Grosswald MG (1984) Glaciations of the continent shelves. Polar Geogr J 8:194–258, 287-351

    Google Scholar 

  • Grosswald MG (1998) Late Weichselian ice sheets in Arctic and paeifie Siberia. Quatern Int 45/46:3–18 Gunkel G (ed)(1994) Bioindikation. Gustav Fischer Verlag, Jena, 540 p

    Google Scholar 

  • Gunkel G (2000) Das Ziel heisst: ein “naturnaher” Zustand. Technische Universität Berlin, Forschung Akuell 11:57–60

    Google Scholar 

  • Guo S, Ying A (1997) Uncertainty analysis of impact of climate change on hydrology and water resources. In: Rosbjerg D, Boutayeb NE, Gustard A, Kundzewicz ZW, Rasmussen PF(eds) Sustainability of water resources under increasing uncertainty. Proceedings of an international Symposium of the Fifth Scientific Assembly of the International Association of Hydrological Sciences (IAHS), Rabat, Morocco, 23 April to 3 May 1997, IAHS Press, Wallingford, UK, pp 331–338

    Google Scholar 

  • Gustafsson A, Hoffmann M, Johnsson H, Krueger J, Kyllmar K, Ulen B (1999) N, P and pestieide pollution of water bodies by agricultural activities under Swedish conditions. In: Van der Kraats JA (ed) Farming without harming: the impact of agricultural pollution on water Systems. Drukkerij Belser, Lelystad, Netherlands, pp 161–184

    Google Scholar 

  • Hadley RF, Lal R, Onstad CA, Walling DE, Yair A (1985) Recent developments in erosion and sediment yield studies. Technical Documents in Hydrology, UNESCO/IHP, Paris

    Google Scholar 

  • Hagemann S, Dumenil L (1998) A parametrization of the lateral waterflow for the global scale. Clim Dynam 14(1):17–31

    Google Scholar 

  • Hallgren WS, Pitman AJ (2000) The sensitivity of a global biome Model (BIOME3) to uncertainty in parameter values. Global Change Biol 6:483–495

    Google Scholar 

  • Harley PC, Thomas RB, Reynolds JF, Strain BR (1992) Modelling photosynthesis of cotton grown in elevated C02. Plant Cell Environ 15:271–281

    Google Scholar 

  • Harris DM, McDonnell JJ, Rodhe A (1995) Hydrograph Separation using continuous open-system isotopic mixing. Water Resour Res 31:157–171

    Google Scholar 

  • Hartig EK, Grozev O, Rosenzweig C, Dixon RK (1997) Climate change, agriculture and wetlands in Eastern Europe: vulnerability, adaptation and policy. Climatic Change 36:107–121

    Google Scholar 

  • Hartwich R, Behrens J, Eckelmann W, Haase G, Richter A, Roeschmann G, Schmidt R (1995) Bodenübersichtskarte der Bundesrepublik Deutschland 1:1000 000. Hannover

    Google Scholar 

  • Hattermann FF, Krysanova V, Wechsung F, Wattenbach M (2003) Macroseale Validation of the eco-hydrological model SWIM for hydrological processes in the Elbe basin with uncertainty analysis. In: Fohrer N, Arnold J (eds) Regional assessment of climate and management impacts using the SWAT hydrological model. Hydrol Proc (in print)

    Google Scholar 

  • Hatton TJ, Dawes WR, Vertessey RA (1995) The importance of landscape position in scaling SVAT models to catchment scale hydro-ecological prediction. In: Feddes (ed) Space and time scale variability and interdependencies in hydrological processes. Internat. Hydrology Series, Cambridge University Press, PP 43–53

    Google Scholar 

  • Hedges JI, Clark WA, Quay PD, Richey JE, Devol AH, Santos U de M (1986a) Compositions and fluxes of particulate organic material in the Amazon River. Limnol Oceanogr 31:717–738

    Google Scholar 

  • Hedges JI, Ertel JR, Quay PD, Grootes PM, Richey JE, Devol AH, Farwell GW, Schmidt FW, Salati E (1986b) Organic carbon-14 in the Amazon River System. Science 231:1129–1131

    Google Scholar 

  • Hedges JI, Cowie GL, Richey JE, Quay PD (1994) Origins and processing of organic matter in the Amazon River as indicated by carbohydrates and amino acids. Limnol Oceanogr 39:743–761

    Google Scholar 

  • Hession WC, McBride M, Bennett M (2000) Statewide non-pointsource pollution assessment methodology. J Water Res Pl-Asce May/June 2000

    Google Scholar 

  • Hewlett JD, Hibbert AR (1967) Factors affecting the response of small watersheds to precipitation in humid areas. In: Sopper WE, Lull HW (eds) International Symposium on forest hydrology. pp 275–271

    Google Scholar 

  • Hiernaux P, Bielders CL, Valentin C, Bationo A, Fernandez-Rivera S (1999) Effects of livestock grazing on physical and chemical properties of sandy soils in Sahel rangelands. J Arid Environ 41:231–245

    Google Scholar 

  • HMSO (Her Majesty’s Stationery Office) (1995) Rural England — a nation committed to a rural countryside. CM 3016, HMSO, London, UK

    Google Scholar 

  • Hobbie J (ed) (2000) Estuarine science: a synthetic approach to research and practice. Island Press, Washington DC

    Google Scholar 

  • Hobbs RJ (2000) Land-use changes and invasions. In: Mooney HA, Hobbs RJ (eds) Invasive species in a changing world. Island Press, Washington DC, pp 55–64

    Google Scholar 

  • Hobbs RJ, Hopkins AJM (1990) From frontier to fragments: European impact on Australia’s Vegetation. Proceedings of the Ecological Society of Australia 16:93–114

    Google Scholar 

  • Hollis GE, Adams WM, Kano MA (eds) (1993) The Hadejia-Nguru wetlands: environment, economy and sustainable development of a Sahelian floodplain wetland. IUCN, Gland, Switzerland, 244 p

    Google Scholar 

  • Hooke RL (2000) On the history of humans as geomorphic agents. Geology 28:843–846

    Google Scholar 

  • Hopkinson CS, Vallino J (1995) The nature of watershed perturbations and their influence on estuarine metabolism. Estuaries 18:598–621

    Google Scholar 

  • Hörne Glasson and Partners (1989) Water plan 2025. Umgeni Water, Pietermaritzburg, South Africa

    Google Scholar 

  • Houghton JT, Ding Y, Griggs DJ, Noguer M, van der Linden PJ, Xiaosu D (eds) (2001) Climate change 2001: the scientific basis. Third Assessment Report, IPCC Working Group I, Cambridge University Press, Cambridge

    Google Scholar 

  • Howarth RW, Billen G, Swaney D, Townsend A, Jaworski N, Lajtha K, Downing JA, Elmgien R, Caraco N, Jordan T, Berendse F, Freney J, Kudegarov V, Mardoch P, Zhao-Liang Z (1996) Regional nitrogen budgets and riverine N and P fluxes for the drainages to the North Atlantic Ocean: natural and human influences. Biogeochemistry 35:75–139

    Google Scholar 

  • Hudson-Edwards KA, Macklin MG, Taylor MP (1999) 2000 years of sediment-borne heavy metal storage in the Yorkshire Ouse basin, NE England UK. Hydrol Process 13:1087–1102

    Google Scholar 

  • Hughes PJ, Sullivan ME, Yok D (1991) Human-induced erosion in a highlands catchment in Papua New Guinea: the prehistoric and contemporary records. Z Geomorphol, Supl. 83:227–239

    Google Scholar 

  • Hulme M, Barrow EM, Arnell NW, Harrison PA, Johns TC, Downing E (1999) Relative impacts of human-induced climate change and natural climate variability. Nature 397:688–691

    Google Scholar 

  • Humborg C, Ittekkot V, Cociasu A, Bodungen BV von (1997) Effect of the Danube River dam on Black Sea biogeochemistry and ecosystem structure. Nature 386:385–387

    Google Scholar 

  • IAHS Ad Hoc Group on Global Water Data Sets (2001) Global water data: a newly endangered species. Co-authored by Vörösmarty CJ (1ead), Askew A, Barry R, Birkett C, Doli P, Grabs W, Hall A, Jenne R, Kitaev L, Landwehr J, Keeler M, Leavesley G, Schaake J, Strzepek K, Sundarvel SS, Takeuchi K, Webster F. An opinion editorial to AGU Eos Transactions 82(5)154–58

    Google Scholar 

  • ICOLD (International Commission on Large Dams) (1994) Dams and the environment: water quality and climate. International Commission on Large Dams, Paris

    Google Scholar 

  • Inamdar SP, Mitchell M, McDonnell JJ, McHale M, McHale P (2004) Use of new water ratios and surface saturated area estimates to test TOPMODEL applications to a forested headwater catchment. J Hydrol (in review)

    Google Scholar 

  • IPCC (Intergovernmental Panel on Climate Change) (1990) Emission scenarios — IPCC Special report. IPCC Secretariat, c/o WMO, Geneva, Switzerland

    Google Scholar 

  • IPCC, Houghton JT, Meira Filho LG, Callender BA, Harris N, Kattenberg N, Maskell K (1995) Climate change 1995: the science of climate change. Contribution of working group I to the second assessment of the Intergovernmental Panel on Climate Change. Cambridge University Press, 572 p

    Google Scholar 

  • Ittekot V (1988) Global trends in the nature of organic matter in river suspensions. Nature 332:436–438

    Google Scholar 

  • Jackson RB, Canadell J, Ehleringer JR, Mooney HA, Sala OE, Schulze ED (1996) A global analysis of root distributions for terrestrial biomes. Oecologia 108:389–411

    Google Scholar 

  • Jackson RB, Mooney HA, Schulze ED (1997) A global budget for fine root biomass, surface area, and nutrient Contents. P Natl Acad Sei USA 94:7362–7366

    Google Scholar 

  • Jackson RB, Schenk HJ, Jobbágy EG, Canadell J, Colello GD, Dickinson RE, Field CB, Friedlingstein P, Heimann M, Hibbard K, Kicklighter DW, Kleidon A, Neilson RP, Parton WJ, Sala OE, Sykes MT (2000a) Below-ground consequences of Vegetation change and their treatment in models. Ecol Appl 10:470–483

    Google Scholar 

  • Jackson RB, Sperry JS, Dawson TE (2000b) Root water uptake and transport: using physiological processes in global predictions. Trends Plant Sei 5(11):482–488

    Google Scholar 

  • Jacobson PJ, Jacobson KM, Seely MK (1995) Ephemeral rivers and their catchments: sustaining people and development in Western Namibia. Desert Research Foundation of Namibia, Windhoek, Namibia, 160 p

    Google Scholar 

  • Jakeman AJ, Hornberger GM (1993) How much complexity is warranted in a rainfall-runoff model? Water Resour Res 29(8): 2637–2649

    Google Scholar 

  • Jakeman AJ, Chen TH, Post DA, Hornberger GM, Littlewood IG, Whitehead PG (1993) Assessing uncertainties in hydrological response to climate at a large scale. In: Proc. On Macroseale Modelling in Hydrosphere, 11-23 July 1993, Yokohama, IASH, 15 p

    Google Scholar 

  • Jansen JMI, Painter RB (1974) Predicting sediment yield from climate and topography. J Hydrol 21:371–380

    Google Scholar 

  • Jansson M (1982) Land erosion by water in different dimates. UNGI Rapport No. 57, Uppsala University, Sweden

    Google Scholar 

  • Jansson M, Andersson R, Berggren H, Leonardson L (1994) Wetlands and lakes as nitrogen traps. Ambio 23:320–325

    Google Scholar 

  • Jarvis G, McNoughton KG (1986) Stomatal control of transpiration: scaling up from 1eaf to region. Adv Ecol Res 15:1–49

    Google Scholar 

  • Jaworski NA, Howarth RW, Hetling LJ (1997) Atmospheric deposition of nitrogen oxides onto the landscape contributes to coastal eutrophication in the northeast United States. Environ Sei Technol 31:1995–2004

    Google Scholar 

  • Jewitt GPW, Görgens AHM (2000) Scale and model interfaces in the context of integrated water resources management for rivers of the Krüger National Park. Water Research Commission, Pretoria, RSA. WRC Report, 627/1/00.184 p

    Google Scholar 

  • Jewitt GPW, Kotze DC (2000) Wetland conservation and rehabilitation as components of integrated catchment management in the Mgeni catchment, KwaZulu-Natal, South Africa. In: Bergkamp G, Pirot J-Y, Hostettler S (eds) Integrated wetlands and water resources management. Proceedings of a Workshop held at the 2nd International Conference on Wetlands and Development held in Dakar, Senegal, November 10-14 (1998) International Publication No. 56, Wageningen, The Netherlands

    Google Scholar 

  • Jewitt GPW, Schulze RE (1999) Verification of the ACRU model for forest hydrology applications. Water SA 25:483–490

    Google Scholar 

  • Johnson SP (1993) The earth summit: the United Nations Conference on Environment and Development (UNCED). Graham and Trotman, London, UK

    Google Scholar 

  • Johnsson MJ, Meade RH (1990) Chemical weathering of fluvial Sediments during alluvial storage: the Macuapanim Island point bar, Solimoes River, Brazil. J Sediment Petrol 60:827–842

    Google Scholar 

  • Jordan TE, Correll DL, Peterjohn WT, Weller DE (1986) Nutrient flux in a landscape: the Rhode River watershed and reeeiving waters. In: Correll DL (ed) Watershed research perspectives. Smithsonian Inst. Press, Washington DC

    Google Scholar 

  • Jordan TE, Correll DL, Weller DE (1997) Nonpoint sources of discharges of nutrients from Piedmont watersheds of Chesapeake Bay. J Am Water Resour As 33(3):631–645

    Google Scholar 

  • Junk WJ (1985) Amazon floodplain — a sink or source of organic carbon? In: Degens ET, Kempe S, Herrera R (eds) Transport of carbon and minerals in major world rivers, Part 3. Mitt. Geol. Paläont. Inst. University Hamburg, SCOPE/UNEP Sonderbd. 58:267–283

    Google Scholar 

  • Junk WJ, Furch K (1993) A general review of tropical South American floodplains. Wetlands Ecology and Management 2:231–238

    Google Scholar 

  • Junk WJ, MTF Piedade (1993) Biomass and primary-production of herbaceous plant communities in the Amazon floodplain. Hydrobiologia 263:155–162

    Google Scholar 

  • Junk WJ, Bayley PB, Sparks RE (1989) The flood pulse concept in river-floodplain Systems. Can J Fish Aquat Sei 106:110–127

    Google Scholar 

  • Justic D, Rabalais NN, Turner RE (1995a) Stoichiometric nutrient balance and origin of coastal eutrophication. Mar Pollut Bull 30:41–46

    Google Scholar 

  • Justic D, Rabalais NN, Turner RE, Dortch Q (1995b) Changes in nutrient strueture of river-dominated coastal waters — stoichiometric nutrient balance and its consequences. Estuar Coast Shelf S 40:339–356

    Google Scholar 

  • Kabat P, Hutjes RWA, Feddes RA (1997) The scaling characteristics of soil parameters: from plot scale heterogeneity to subgrid parameterization J Hydrol 190(3-4):363–396

    Google Scholar 

  • Kao SJ, Lui KK (1996) Particulate organic carbon export from a subtropical mountainous river (Lanyang Hri) in Taiwan. Limnol Oceanogr 41:1749–1757

    Google Scholar 

  • Kao SJ, Lui KK (1997) Fluxes of dissolved and non-fossil particulate organic carbon from an Oceania small river (Lanyang Hsi) in Taiwan. Biogeochemistry 39:255–269

    Google Scholar 

  • Kaplan DI, Bertsch PM, Adriano DC, Miller WP (1993) Soil-borne colloids as influenced by water flow and organic carbon. Environ Sei Technol 27:1193–1200

    Google Scholar 

  • Karl TR, Knight RW (1998) Secular trends of preeipitation amount, frequency, and intensity in the USA. B Am Meteorol Soc 79(2): 231–241

    Google Scholar 

  • Karl T, Knight RW, Easterling DR, Quayle RG (1996) Indices of climate change for the United States. B Am Meteorol Soc 77:279–292

    Google Scholar 

  • Keller EA, Valentine DW, Gibbs DR (1997) Hydrological response of small watersheds following the Southern California Painted Cave fire of June 1990. Hydrol Process 11:401–414

    Google Scholar 

  • Kempe S (1979) Carbon in the freshwater cycle. In: Bolin B, Degens ET, Kempe S, Ketner P (eds) Global carbon cycle. SCOPE rpt 13, John Wiley & Sons, New york, pp 317–342

    Google Scholar 

  • Kempe S (1982) Long-term records of the CO2 pressure fluctuations in freshwaters. In Degens ET (ed) Transport of water and minerals in major world rivers. Mitt Geol-Paläntol Inst Univ Hamburg 52:91–332

    Google Scholar 

  • Kempe S (1984) Sinks of the anthropogenically enhanced carbon cycle in surface fresh waters. J Geophys Res 89(D3):4657–4676

    Google Scholar 

  • Kendall C, McDonnell JJ (eds)(1998) Isotope tracers in catchment hydrology. Elsevier Science Publishers, 839 p

    Google Scholar 

  • Kendall K, Shanley J, McDonnell JJ (1999) A hydrometric and geochemical approach to testing the transmissivity feedback hypothesis during snowmelt. J Hydrol 219:188–205

    Google Scholar 

  • Kendall C, McDonnell JJ, Weizu G (2001) A look inside black box hydrograph Separation models: a study at the Hydrohill catchment. Hydrol Process 15(10):1877–1903

    Google Scholar 

  • Kienzle SW, Lorentz SA, Schulze RE (1997) Hydrology and water quality of the Mgeni catchment. Water Research Commission, Pretoria, South Africa, WRC Report TT87/97, 88 p

    Google Scholar 

  • Kim CP (1995) The water budget of heterogeneous areas: impact of soil and rainfall variability. PhD thesis, Wageningen Agricultural University, 182 p

    Google Scholar 

  • Kimball BA, Pinter PJ Jr, Garcia RL, Lamorte RL, Wall GW, Hunsaker DJ, Wechsung G, Wechsung F, Kartschall T (1995) Productivity and water use of wheat under free-air CO2 enrichment. Global Change Biol 1:429–442

    Google Scholar 

  • Kimball BA, LaMorte RL, Pinter PJ Jr, Wall GW, Hunsaker DJ, Adamsen FJ, Leavitt SW, Thompson TL, Matthias AD, Brooks TJ (1999) Free-air CO2 enrichment and soil nitrogen effects on energy balance and evapotranspiration of wheat. Water Resour Res 35(4):1179–1190

    Google Scholar 

  • Kirby C, Newson MD, Gilman K (1991) Plynlimon research: the first two decades. Institute of Hydrology, Wallingford, UK, Institute of Hydrology Report 109

    Google Scholar 

  • Kirchner JW, Feng X, Neal C (2000) Fractal stream chemistry and its implications for contaminant transport in catchments. Nature 403(6769):524–527

    Google Scholar 

  • Kleidon A, Heimann M (2000) Assessing the role of deep rooted Vegetation in the climate System with model simulations: mechanism, comparison to observations and implications for Amazonian deforestation. Clim Dynam 16:183–199

    Google Scholar 

  • Koster RD, Suarez MJ (1992) Modeling the land surface boundary in climate models as a composite of independent Vegetation Stands. J Geophys Res 97:2697–2716

    Google Scholar 

  • Koster RD, Suarez MJ, Ducharne A, Stieglitz M, Kumar P (2000) A catchment-based approach to modeling land surface processes in a general circulation model, 1: Model strueture. J Geophys Res 105:24809–24822

    Google Scholar 

  • Kotwicki V (1986) Floods of Lake Eyre. Engineering and Water Supply Dpt. Adelaide, South Australia

    Google Scholar 

  • Kotwicki V, Isdale P (1991) Hydrology of Lake Eyre, Australia: El Nino link. Palaeogeogr Palaeocl 84:87–98

    Google Scholar 

  • Krecek J Rajwar GS, Haigh MJ (eds) (1996) Hydrological problems and environmental management in highlands and headwaters. A. A. Balkema, Rotterdam, Netherlands, 196 p

    Google Scholar 

  • Kreft A, Zuber A (1978) On the physical meaning of the dispersion equation and its Solutions for different initial and boundary conditions. Chem Eng Sei 33:1471–1480

    Google Scholar 

  • Kroeze C, Seitzinger SP (1998) Nitrogen inputs to rivers, estuaries and continental shelves and related nitrous oxides emissions in 1990 and 2050: a global model. Nutr Cycl Agroecosys 52:195–212

    Google Scholar 

  • Kroeze C, Seitzinger SP, Domingues R (2001) Future trends in worldwide nitrogen transport and related nitrous oxide emissions: a scenario analysis. The Scientific World 1

    Google Scholar 

  • Krysanova V, Becker A (1999) Integrated modelling of hydrological processes and nutrient dynamics at the river basins scale. Hydrobiologia 410:131–138

    Google Scholar 

  • Krysanova V, Müller-Wohlfeil DI, Becker A (1998a) Development and test of a spatially distributed hydrological/water quality model for mesoscale watersheds. Ecol Model 106:261–289

    Google Scholar 

  • Krysanova V, Becker A, Klöcking B (1998b) The linkage between hydrological processes and sediment transport at the river basin scale. In: Summer W, Klaghofer E, Zhang W (eds) Modelling soil erosion, sediment transport and closely related hydrological processes. IAHS Publ 249:13–20

    Google Scholar 

  • Krysanova V, Wechsung F, Becker A, Poschenrieder W, Gräfe J (1999a) Mesoscale ecohydrological modelling to analyse regional effects of climate change. Environ Model Assess 4(4)1259–271

    Google Scholar 

  • Krysanova V, Gerten D, Klöcking B, Becker A (1999b) Factors affecting nitrogen export from diffuse sources: a modelling study in the Elbe basin. In: Heathwaite L (ed) Impact of land-use change on nutrient loads from diffuse sources. IAHS Publ 257:201–212

    Google Scholar 

  • Krysanova V, Williams J, Bürger G, Ósterle H (2002) The linkage between hydrological processes and sediment transport at the river basin scale — a modelling study. In: Summer W, Walling DE (eds) Modelling erosion, sediment transport and sediment yield. International Hydrological Programme, Technical Documents in Hydrology, IHP-VI, pp 147–174

    Google Scholar 

  • Kubatzki C, Claussen M (1998) Simulation of the global biogeophysical interactions during the last glacial maximum. Clim Dynam 14:461–471

    Google Scholar 

  • Lahmer W, Becker A, Müller-Wohlfeil D-I, Pfützner B (1999) A GISbased approach for regional hydrological modelling. In: Diekkrüger B, Kirkby MJ, Schröder U (eds) Regionalization in hydrology. IAHS Publ 254:33–43

    Google Scholar 

  • Lal M (1994) Water resources of the South Asian region in a warmer atmosphere. Adv Atmos Sei 11:239–246

    Google Scholar 

  • Lammers RB, Shiklomanov AI, Vörösmarty CJ, Fekete BM, Peterson BJ (2001) Assessment of contemporary Arctic river runoff based on observational discharge records. J Geophys Res 106(D4): 3321–3334

    Google Scholar 

  • Langbein WB, Schumm SA (1958) Yield of sediment in relation to mean annual preeipation. EOS Trans Am Geophys Union 39: 1076–1084

    Google Scholar 

  • Lange H, Lischeid G, Hoch R, Hauhs M (1996) Water flow paths and residence times in a small headwater catchment at Gardsjon, Sweden, during steady State storm flow conditions. Water Resour Res 32(6):1689–1698

    Google Scholar 

  • Laraque A, Méhe G, Orange D, Marieu B (2001) Spatiotemporal variations in hydrological regimes within Central Africa during the XXé Century. J Hydrol 245:104–117

    Google Scholar 

  • Lean J, Warrilow DA (1989) Simulation of the regional climatic impact of Amazon deforestation. Nature 342:411–413

    Google Scholar 

  • Le Bissonnais Y (1996) Aggregate stability and assessment of crustability and erodibility: 1. Theory and methodology. Europ J Soil Sei 47:425–437

    Google Scholar 

  • Le Bissonnais Y, Benkahdra H, Chaplot V, Fox D, King D, Darousin J (1998) Crusting, runoff and sheet erosion on silty loamy soils at various scales and upscaling from m2 to small catchments. Soil Till Res 46:69–80

    Google Scholar 

  • Leblanc M, Morales JA, Borrego J, Felbaz-Poulichet F (2000) 4500 year old mining pollution in southwestern Spain: long-term implications for modern mining pollution. Econ Geol 95:655–662

    Google Scholar 

  • Lee JJ, Phillips DL, Dodson RF (1996) Sensitivity of the US com belt to climate change and elevated CO2: II. Soil erosion and organic carbon. Agr Syst 52:503–521

    Google Scholar 

  • Le Houérou HN (1990) Global change: Vegetation, ecosystems, and land use in the southern Mediterranean basin by the mid twentyfirst Century. Israel J Bot 39:481–508

    Google Scholar 

  • Lemmelä R, Helenius N (eds) (1998) Proc. of the Second International Conference on Climate and Water, Volume 1. Edita Ltd, Helsinki, Finland

    Google Scholar 

  • Létolle R, Mainguet M (1993) Aral. Springer, Berlin, 385 p

    Google Scholar 

  • Lettenmaier DP, Brettman KL, Vail LW, Yabusaki SB, Scott MJ (1992) Sensitivity of Pacific northwest water resources to global warming. Northwest Environ J 8(2)1265–283

    Google Scholar 

  • Lewis WM, Melack JM, McDowell WH, McClain M, Richey JE (1999) Nitrogen yields from undisturbed watershed in the Americas. Biogeochemistry 46:149–162

    Google Scholar 

  • Lins HF, Slack JR (1999) Streamflow trends in the United States. Geophys Res Lett 26:227–230

    Google Scholar 

  • Livingstone DA (1963) Chemical composition of rivers and lakes. Data of chemistry, US Geol Survey Prof Paper 440G, G1–G64

    Google Scholar 

  • Loague KM, Freeze RA (1985) A comparison of rainfall-runoff modeling techniques on small upland catchments. Water Resour Res 21:229–248

    Google Scholar 

  • Loague K, Kyriakidis PC (1997) Spatial and temporal variability in Sie R-5 infiltration dataset; Déjà vu and rainfall-runoff simulations. Water Resour Res 33(12):2883–2895

    Google Scholar 

  • Longfield SA, Macklin MG (1999) The influence of recent environmental change on flooding and sediment fluxes in the Yorkshire Ouse basin. Hydrol Process 13(7):1051–1066

    Google Scholar 

  • Lopez Bermudez F (1990) Soil erosion by water on the desertification of a semi-arid Mediterranean fluvial basin: the Segura basin, Spain. Agr Ecosyst Environ 33:129–145

    Google Scholar 

  • Lopez Bermudez F, Romero Diaz MA (1989) Piping erosion and badland development in south-east Spain. Catena, Suppl 14:59–73

    Google Scholar 

  • Lørup JK, Hansen E (1997) Effect of land use on the streamflow in the southwestern highlands of Tanzania. In: Rosbjerg D, Boutayeb NE, Gustard A, Kundzewicz ZW, Rasmussen PF (eds) Sustainability of water resources under increasing uncertainty. Proceedings of an international Symposium of the Fifth Scientific Assembly of the International Association of Hydrological Sciences (IAHS), Rabat, Morocco, 23 April to 3 May 1997, IAHS Press, Wallingford, UK No. 240, pp 227–236

    Google Scholar 

  • LUCIFS (2000) Land use and climate impacts on fluvial Systems during the period of agriculture (LUCIFS). Pages Newsletter 8(3):10–19

    Google Scholar 

  • Ludwig W (2001) The age of river carbon. Nature 409:466–467

    Google Scholar 

  • Ludwig W, Probst JL (1996) Predicting the oceanic input of organic carbon by Continental erosion. Global Biogeochem Cy 10:23–41

    Google Scholar 

  • Ludwig W, Probst JL (1998) River sediment discharge to the oceans: present-day controls and global budgets. Am J Sei 298:265–295

    Google Scholar 

  • Ludwig W, Probst JL, Kempe S (1996) Predicting the oceanic input of organic carbon by continental erosion. Global Biogeochem Cy 10:23–41

    Google Scholar 

  • L’vovich MI (1979) World water resources and the future. AGU, Washington DC, (English translation edited by Nace RL)

    Google Scholar 

  • L’vovich MI, White GF (1990) Use and transformation of terrestrial water Systems. In: Turner BL, Clark WC, Kates RW, Richards JF, Mathews JT, Meyer WB (eds) The Earth as transformed by human action. Cambridge University Press, Cambridge, pp 235–252

    Google Scholar 

  • LWRRDC (Land and Water Resources Research and Development Corporation) (1998) National dryland salinity program: management plan 1998-2003. Land and Water Resources Research and Development Corporation, Canberra, Australia

    Google Scholar 

  • Maas EV, Hoffman GJ (1977) Crop salt tolerance — current assessment. J Irr Drain Div-Asce 103:115–134

    Google Scholar 

  • Macaire JJ, Bossuet G, Choquier A, Cocirta C, DeLuca P, Dupis A, Gay I, Mathey E, Gueng P (1997) Sediment yield during late glacial and Holocene periods in the Lac Chambon watershed, Massif Central, France. Earth Surf Proc Land 22:473–489

    Google Scholar 

  • Mackenzie FT, Lerman AB, Ver LMB (2001) Present, past and future of the global carbon cycle. A.A.P.G. Stud Geol 47:51–82

    Google Scholar 

  • Macklin MG, Hudson-Edwards KA, Dawson EJ (1997) The significance of pollution from historic metal mining in the Pennine ore fields on river sediment contamination fluxes to the North Sea. Sei Total Environ 194/195:391–397

    Google Scholar 

  • Maidment DR (ed) (1993) Handbook of hydrology. McGraw-Hill Inc.

    Google Scholar 

  • Major JJ, Pierson TC, Dinehart RL, Costa JE (2000) Sediment yield following severe volcanic disturbance — A two-decade perspective from Mount Helens. Geology 28:819–822

    Google Scholar 

  • Maloszewski P, Rauert W, Stichler W, Herrmann A (1983) Application of flow models in an alpine catchment area using tritium and deuterium data. J Hydrol 66:319–330

    Google Scholar 

  • Marchand M, Toornstra FH (1986) Ecological guidelines for river basin development. Centrum voor Milieukunde, Rijksuniversiteit, Leiden, Netherlands, Report No. 28

    Google Scholar 

  • Marengo JA, Nobre CA (2001) On the general characteristics and variability of climate in the Amazon Basin. In: McClain ME, Victoria R, Richey JE (eds) The biogeochemistry of the Amazon Basin. Oxford University Press, 384 p

    Google Scholar 

  • Martin C, Lavabre J (1997) Estimation de 1a part du ruissellement sur les versants dans les crues du ruisseau du Rimbaud (Massif des Maures, Var, France) après l’incendie de forêt d’août 1990. Hydrolog Sei J 42:893–907

    Google Scholar 

  • Martinelli LA, Ferreira JR, Forsberg BR, Victoria RL (1988) Mercury contamination in the Amazon: a gold rush consequence. Ambio 17:252–254

    Google Scholar 

  • Martinelli LA, Victoria RL, Dematte JLI, Richey JE, Devol AH (1993) Chemical and mineralogical composition of Amazon River floodplain Sediments, Brazil. Appl Geochem 8:391–402

    Google Scholar 

  • Masiello CA, Druffel ER (2001) Carbon isotope geochemistry of the Santa Clara River. Global Biogeochem Cy 15:407–416

    Google Scholar 

  • Maslenikova O, Mangerud J (2001) Where was the outlet of icedammed Lake Ksmi, Northern Russia. Global Planet Change 31:337–346

    Google Scholar 

  • Mayorga E, Ballester V, Richey JE, Krusche A, Aufdenkampe A, Victoria R (2000) Towards a mechanistic, remote-sensing driven model of organic matter cycling linking the land surface and river System in the Amazon Basin. Abstract, LBA Science Conference, Belem

    Google Scholar 

  • McCabe GJ, Wolock DM (2002) Trends and temperature sensitivity of moisture conditions in the conterminous United States. Climate Research 20(1):19–29

    Google Scholar 

  • McCartney MP (1998) The hydrology of a headwater catchment containing a dambo. Unpublished PhD thesis, University of Reading, UK, 256 p

    Google Scholar 

  • McCartney MP, Acreman MC (2003) Wetlands and water resources. In: Maltby E (ed) The wetlands handbook. Blackwells, Oxford, UK (in press)

    Google Scholar 

  • McCartney MP, Sullivan CA, Acreman MC (1999) Ecosystem impacts of large dams. Centre for Ecology and Hydrology, Wallingford, UK, Report to IUCN. 78 p (Draft Report)

    Google Scholar 

  • McCartney MP, Acreman MC, Bergkamp G (2000) Freshwater ecosystem management and environmental security. In: IUCN vision for water and nature: a world strategy for conservation and sustainable management of water resources in the 21st Century. IUCN, Gland, Switzerland

    Google Scholar 

  • McClain ME, Victoria TRL, Richey JE (ed) (2001) The biogeochemistry of the Amazon Basin. Oxford University Press, 364 p

    Google Scholar 

  • McCully P (1996) Rivers no more: the environmental effects of dams. In: McCully P (ed) Silenced rivers: the ecology and politics of large dams. International Rivers Network, Zed Books, London, UK, pp 29–64

    Google Scholar 

  • McDonnell JJ (1990) A rationale for old water discharge through macropores in a steep, humid catchment. Water Resour Res 26: 2821–2832

    Google Scholar 

  • McDonnell JJ (1997) Comment on “the changing spatial variability of subsurface flow across a hillslide” by Ross Woods and Lindsay Rowe. J Hydrol New Zealand 36(1)197–100

    Google Scholar 

  • McDonnell JJ, Tanaka T (2001) On the future of hydrology and biogeochemistry of forest catchments. Hydrol Process 15(10):2053–2056

    Google Scholar 

  • McDonnell JJ, Boneil M, Stewart MK, Pearce AJ (1990) Deuterium variations in storm rainfall: implications for stream hydrograph Separation. Water Resour Res 26:455–458

    Google Scholar 

  • McDonnell JJ, Owens IF, Stewart MK (1991) A case study of shallow flow paths in a steep zero-order basin. Water Resour Bull 27(4): 679–685

    Google Scholar 

  • McDonnell JJ, Freer J, Hooper R, Kendall C, Burns D, Beven K, Peters N (1996) New method developed for studying flow on hillslopes. EOS Trans Am Geophys Union 77:465–472

    Google Scholar 

  • McDonnell JJ, Rowe L, Stewart M (1999) A combined tracer-hydrometric approach to assessing the effects of catchment scale on water flowpaths, source and age. International Association of Hydrological Sciences, Publication 258:265–274

    Google Scholar 

  • McGlynn B, McDonnell JJ, Brammer D (2002) A review of the evolving perceptual model of hillslope flow in a steep forested humid catchment: a review of the Maimai catchment. J Hydrol 257:1–26

    Google Scholar 

  • McHale MR, McDonnell JJ, Mitchell MJ, Cirmo CP (2002) A fieldbased study of soil water and groundwater nitrate release in an Adirondack forested watershed. Water Resour Res 38(4):1031, doi:10.1029/2000WR000102, 2002

    Google Scholar 

  • Mclntosh J, McDonnell JJ, Peters NE (1999) Tracer and hydrometric study of preferential flow in large undisturbed soil cores from the Georgia Piedmont, USA. Hydrol Process 13:139–155

    Google Scholar 

  • McKenzie RS, Craig AR (1998) Evaporation losses from South African rivers. Water Research Commission, Pretoria, RSA, Report No. 638/1/99

    Google Scholar 

  • MDBC (Murray-Darling Basin Commission) (1997) Salt trends: historic trend in salt concentration and saltload in stream flow in the Murray-Darling Drainage Division. Murray-Darling Basin Commission, Canberra, Australia, Dryland Technical Report 1

    Google Scholar 

  • MDBMC (Murray-Darling Basin Ministerial Council) (1999) The salinity audit of the Murray-Darling Basin: a 100-year perspective (1999) Murray-Darling Basin Ministerial Council, Canberra ACT, Australia, 39 p

    Google Scholar 

  • Meade RH (1988) Movement and storage of sediment in river Systems. In: Lerman A, Meybeck M (eds) Physical and chemical weathering in geochemical cycles. Kluwer Academic Publishers, Dordrecht, pp 165–180

    Google Scholar 

  • Meade RH (1994) Suspended Sediments of the modern Amazon and Orinoco Rivers. Quatern Int 21:29–39

    Google Scholar 

  • Meade RH, Parker RS (1985) Sediments in rivers of the United States. In: US Geological Survey (ed) National water summary, 1984. US Geol Surv Water-Supply Paper 2275, USGS, Reston, pp 49–60

    Google Scholar 

  • Meade RH, Dünne T, Richey JE, dos Santos U, Salati E (1985) Storage and remobilization of sediment in the lower Amazon River of Brazil. Science 228:488–490

    Google Scholar 

  • Meier KB, Brodie JR, Schulze RE, Smithers JC, Mngune D (1997) Modelling the impacts of riparian zone alien Vegetation on catchment water resources using the ACRU model. Proceedings, 8th South African National Hydrology Symposium, Water Resources Commission, Pretoria, RSA, 13 p

    Google Scholar 

  • Melillo JM, McGuire AD, Kikclighter DW, Moore BIII, Vörösmarty CJ, Schloss AL (1993) Global climate change and terrestrial net primary production. Nature 363:234–240

    Google Scholar 

  • Mertes LAK, Smith MO, Adams JB (1993) Estimating suspended sediment concentrations in surface waters of the Amazon River wetlands from Landsat images. Remote Sens Environ 43:281–301

    Google Scholar 

  • Mertes LAK, Dunne T, Martinelli LA (1996) Channel-floodplain geomorphology of the Solimões-Amazon River, Brazil. Geol Soc Am Bull 108:1089–1107

    Google Scholar 

  • Messerli B, Hofer T, Chapman GP (1995) Assessing the impact of anthropogenic land-use change in the Himalayas. In: Chapman G, Thompson M (eds) Water and the quest for sustainable development in the Ganges Valley. Mansell Publishing, London, Global Development and the Environment Series, pp 64–89

    Google Scholar 

  • Meybeck M (1976) Total mineral transport by major world rivers. Hydrol Sei Bull 21:265–284

    Google Scholar 

  • Meybeck M (1979) Concentration des eaux fluvials en Clements majeurs et apports en solution aux oceans. Rev Geol Dyn Geogr 21:215–246

    Google Scholar 

  • Meybeck M (1981) River transport of organic carbon to the oceans. In: US Dep of Energy (ed) Flux of organic carbon by rivers to the oceans. NTIS Rep. CONF 8009140UC-11, Washington DC

    Google Scholar 

  • Meybeck M (1982) Carbon, nitrogen, and phosphorous transport by world rivers. Am J Sei 282:401–450

    Google Scholar 

  • Meybeck M (1986) Composition chimique naturelle des ruisseaux non pollues en France. Sei Geol Bull 39:3–77

    Google Scholar 

  • Meybeck M (1987) Global chemical weathering estimated from river dissolved loads. Am J Sei 287:401–428

    Google Scholar 

  • Meybeck M (1988) How to establish and use world budgets of river material. In: Lerman A, Meybeck M (eds) Physical and chemical weathering in geochemical cycles. Kluwer Academic Publishers, Dordrecht, pp 247–272

    Google Scholar 

  • Meybeck M (1993a) Riverine transport of atmospheric carbon: sources, global typology and budget. Water Air Soil Poll 70:443–463

    Google Scholar 

  • Meybeck M (1993b) C, N, P, and S in rivers: from sources to global inputs. In: Wollast R, Mackenzie FT, Chou L (eds) Interactions of C, N, P, and S biogeochemical cycles and global change. NATO ASI Series, Vol. 14, Springer-Verlag, Berlin, pp 163–193

    Google Scholar 

  • Meybeck M (1994) Global lake distribution. In: Lerman A, Imboden D, Gat J (eds) Physics and chemistry of lakes. Springer-Verlag, Heidelberg, pp 1–35

    Google Scholar 

  • Meybeck M (1998) The IGBP Water Group: a response to a growing global concern. Global Change Newsletters 36:8–13

    Google Scholar 

  • Meybeck M (2002) Riverine quality at the Anthropocene: propositions for global Space and time analysis, illustrated by the Seine River. Aquatic Sciences 64:376–393

    Google Scholar 

  • Meybeck M (2003) Global analysis of river Systems: from Earth System controls to Anthropocene Syndroms. Philos T Roy Soc B (in press)

    Google Scholar 

  • Meybeck M, Helmer R (1989) The quality of rivers: from pristine stage to global pollution. Palaeogeogr Palaeocl (Global Planet Change Section) 75:283–309

    Google Scholar 

  • Meybeck M, Ragu A (1996) River discharges to the oceans. An assessment of suspended solids, major ions, and nutrients. Environment Information and Assessment Rpt. UNEP, Nairobi, 250 p

    Google Scholar 

  • Meybeck M, Ragu A (1997) Presenting the GEMS-GLORI, a compendium for world river discharge to the oceans. Int Ass Hydrol Sei 243:3–14

    Google Scholar 

  • Meybeck MM, Vörösmarty CJ (1999) Global transfer of carbon by rivers. IGBP Global Change Newsletter 37:18–19

    Google Scholar 

  • Meybeck M, Green P, Vörösmarty CJ (2001) A new typology for mountains and other relief classes: an application to global continental water resources and population distribution. Mt Res Dev 21:34–45

    Google Scholar 

  • Meybeck M, Laroche L, Dürr HH, Syvitski JPM (2003) Global variability of daily total suspended solids and their fluxes in rivers. Global and Planetary Change 39:65–93

    Google Scholar 

  • Meyer WB, Turner BL (1992) Human population growth and global land-use/land-cover change. Annu Rev Ecol Syst 23:39–61

    Google Scholar 

  • Middelkoop H (2002) Reconstructing flood piain Sedimentation rates from heavy metal profiles by inverse modelling. Hydrol Process 16:47–64

    Google Scholar 

  • Milliman JD (1991) Flux and fate of fluvial sediment and water in coastal seas. In: Mantoura RFC, Martin JM, Wollast R (eds) Ocean margin processes in global change. John Wiley & Sons, Chichester, pp 69–89

    Google Scholar 

  • Milliman JM, Meade RH (1983) World-wide delivery of river sediment to the oceans. J Geol 91:1–21

    Google Scholar 

  • Milliman JD, Meie R (1995) River flux to the sea: impact of human intervention on river Systems and adjacent coastal areas. In: Eisma D (ed) Climate change: impact on coastal habitation. Crc Press Inc., pp 57–83

    Google Scholar 

  • Milliman JM, Syvitski JPM (1992) Geomorphic/tectonic control of sediment discharge to the ocean: the importance of small mountainous rivers. J Geol 100:525–544

    Google Scholar 

  • Milliman JD, Rutkowski C, Meybeck M (1995) River discharge to the sea. A global river index (GLORI). LOICZ repts and studies No. 2, Texel, The Netherlands, 125 p

    Google Scholar 

  • Milly PCD (1994) Climate, soil water storage, and the average annual water balance. Water Resour Res 30, 2143–2156

    Google Scholar 

  • Milly PCD, Dünne KA (1994) Sensitivity of the global water cycle to the water-holding capacity of land. J Climate 7:506–526

    Google Scholar 

  • Mitsch WJ, Gosselink JG (1993) Wetlands, 2nded. Van Nostrand Reinhold, New York

    Google Scholar 

  • Moerdyk MR, Schulze RE (1991) Impacts of forestry site preparation on surface runoff and soil loss. Agr Eng S Afr 23:319–325

    Google Scholar 

  • Molicova H, Bonell M, Grimaldi M, Hubert P (1997) Using TOPMODEL towards identifying and modelling the hydrological patterns within a headwater humid tropical catchment. Hydrol Process 11(9):1169–1196

    Google Scholar 

  • Montgomery DR, Dietrich WE, Torres R, Anderson SP, Heffner JT, Loague K (1997) Hydrologie response of a steep unchanneled Valley to natural and applied rainfall. Water Resour Res 33(1): 91–109

    Google Scholar 

  • Moore T (1989) Dynamics of dissolved organic carbon in forested and disturbed catchments, Westland, New Zealand, 1. Maimai. Water Resour Res 25(6):1321–1330

    Google Scholar 

  • Moore WS (1996) Large ground water inputs to coastal waters revealed by 226Ra enrichments. Nature 380:612–614

    Google Scholar 

  • Moore TR, Mark RK (1986) World slope map. AGU Eos Transactions 67:1353–1356

    Google Scholar 

  • Morehead MD, Syvitski JP, Hutton EWH, Peckham SD (2003) Modeling the temporal variability in the flux of Sediment from ungauged river basins. Global and Planetary Change 39(1-2):95–110

    Google Scholar 

  • Mosley MP (1979) Streamflow generation in a forested watershed, New Zealand. Water Resour Res 15:795–806

    Google Scholar 

  • Mozzherin VI (1992) The recent global suspended sediment yield and prognosis of its change. In: Chalov RS (ed) Problems of erosion, fluvial and mount. processes. Izhevsk, pp 63–85 (in Russian)

    Google Scholar 

  • Muller AMM, Keuris H, Roux 1e F (1985) Die bepaling van rivierverliese in die Wilgerivier tussen Sterkfonteindam en Vaaldam. Department of Water Affairs, Pretoria, RSA. Directorate of Hydrology Report, 13 p

    Google Scholar 

  • Murphy JH, Mitchell JFB (1995) Transient response of the Hadley Centre coupled ocean-atmosphere model to increased carbon dioxide. Part 2. Spatial and temporal strueture of the response. J Climate 8:57–80

    Google Scholar 

  • Nash JE, Sutcliffe IV (1970) River flow forecasting through coneeptional models, 1. A discussion of principles. J Hydrol 10:282–290

    Google Scholar 

  • Ne’eman G, Perevolotsky A, Schiller G (1997) The management implications of the Mt. Carmel research projeet. Int J Wildland Fire 7:343–350

    Google Scholar 

  • Neill M (1989) Nitrate concentrations in river waters in the southeast of Ireland and their relationship with agricultural practices. Water Res 23:1339–1355

    Google Scholar 

  • Nepstad DC, Klink C, Uhl C, Vieira IC, Lefebvre P, Pedlowski M, Matricardi E, Negreiros G, Brown IF, Amaral E, Homma A, Walker R (1997) Land-use in Amazonia and Cerrado of Brazil. Cienc Cult 4973–86

    Google Scholar 

  • NERI (Natural Environment Research Institute of Denmark) (1997) Technical report 210. Cited in: Olesen (1999) (in Danish)

    Google Scholar 

  • Nespack/MMI (National Engineering Services Pakistan (Pvt) Ltd./ Mott MacDonald) (1993) Feasibility study on national drainage program 1. Executive summary. NESPAK and Mott Mac Donald, Pakistan

    Google Scholar 

  • Newson MD (1997) Land, water and development: sustainable management of river basin Systems. 2nd ed. Routledge, London

    Google Scholar 

  • Newson MD, Gardiner JL, Slater SJ (2000) Planning and managing for the future. In: Acreman MC (ed) The hydrology of the UK: a study of change. Routledge, London, pp 244–269

    Google Scholar 

  • Nilsson C, Jansson R (1995) Floristic differences between riparian corridors of regulated and free-flowing boreal rivers. Regul River 11:55–66

    Google Scholar 

  • Nixon S (2003) Replacing the Nile — Are anthropogenic nutrients providing the fertility once brought to the Mediterranean by a great river? Ambio 32(1):30–39

    Google Scholar 

  • Nyberg R, Rapp A (1998) Extreme erosional events and natural hazards in Scandinavian mountains. Ambio 27(4):292–299

    Google Scholar 

  • Ohmori H (1983) Erosion rates and their relation to Vegetation from the viewpoint of worldwide distribution. Univ of Tokyo, Dept of Geography Bull 15:77–91

    Google Scholar 

  • Oki T, Musiake K, Matsuyama H, Masuda K (1995) Global atmospheric water balance and runoff from large river basins. Hydrol Process 9:655–678

    Google Scholar 

  • Oki T, Nishimura T, Dirmeyer P (1999) Validating land surface models by runoff in major river basins of the globe using Total Runoff Integrating Pathways (TRIP). J Meteorol Soc Jpn 77: 235–255

    Google Scholar 

  • Olesen US (1999) Agriculture in Denmark, a source of nutrient pollution of the water environment. In: Van der Kraats JA (ed) Farming without harming: the impact of agricultural pollution on water Systems. Drukkerij Belser, Lelystad, pp 33–44

    Google Scholar 

  • Olivera F, Famiglietti J, Asante K (2000) Global-scale flow routing using a source-to-sink algorithm. Water Resour Res 36:2197–2207

    Google Scholar 

  • O’Loughlin EM, Short DL, Dawes WR (1989) Modelling the hydrological response of catchment to land-use change. In: Hydrology and water resources Symposium, comparisons in Austral hydrology. Inst. Engrs., Canberra, Australia, 28-30 Nov. 1989, Christchurch, New Zealand, pp 335–340

    Google Scholar 

  • Onda Y, Komatsu Y, Tsujimura M, Fujihara J-I (2001) The role of subsurface runoff through bedrock on storm flow generation. Hydrol Process 15:1693–1706

    Google Scholar 

  • Oyebande L (1995) Effects of reservoir Operation on the hydrological regime and water availability in northern Nigeria. In: Petts G (ed) Man’s influence on freshwater ecosystems and water use. IAHS Publ. No. 230, IAHS Press, Wallingford

    Google Scholar 

  • Panagoulia D, Dimou G (1997) Sensitivity of flood events to global climate change. J Hydrol 191:208–222

    Google Scholar 

  • Perks LA (2001) Refinement of modelling tools to assess potential agrohydrological impacts of climate change in Southern Africa. PhD thesis, School of BEEH, University of Natal, South Africa. 463 p

    Google Scholar 

  • Pernetta JC, Milliman JD (eds) (1995) Land-ocean interactions in the coastal zone implementation plan. Global Change Report No. 33, IGBP, Stockholm, 215 p

    Google Scholar 

  • Peters DL, Buttle JM, Taylor CH, LaZerte BD (1995) Runoff produetion in a forested, shallow soil, Canadian Shield basin. Water Resour Res 31(5):1291–1304

    Google Scholar 

  • Peterson BJ, Wollheim WM, Mulholland PJ, Webster JR, Meyer JL, Tank JL, Marti E, Bowden WB, Valett HM, Hershey AE, McDowell WH, Dodds WK, Hamilton SK, Gregory SV, Morrall DD (2001) Control of nitrogen export from watersheds by headwater streams. Science 292:86–90

    Google Scholar 

  • Peterson BJ, Holmes RH, McClelland JW, Vörösmarty CJ, Lammers RB, Shiklomanov AI, Rahmstorf S (2002) Increasing river discharge to Arctic Ocean. Science 298:2171–2173

    Google Scholar 

  • Petts GE (1984) Impounded rivers: perspectives for ecological management. John Wiley & Sons, Chichester, 326 p

    Google Scholar 

  • Piccolo A, Teshale AZ (1998) Soil processes and responses to climate changes. In: Climate change impact on agriculture and forestry. European Commission, EUR 18175, Luxembourg, pp 79–92

    Google Scholar 

  • Pielke RA, Lee TJ, Copeland JH, Eastman JL, Ziegler CL, Finley CA (1997) Use of USGS-provided data to improve weather and climate simulations. Ecol Appl 7:3–21

    Google Scholar 

  • Pinet P, Souriau M (1988) Continental erosion and large scale relief. Tectonics 7:563–582

    Google Scholar 

  • Pitman A, Zhao M (2000) The relative impact of observed change in land cover and carbon dioxide as simulated by a climate model. Geophys Res Lett 27:1267–1270

    Google Scholar 

  • Pitman AJ, Henderson-Sellers A, Yang Z-L, Abramopoulos F, Boone A, Desborough CE, Dickinson RE, Gedney N, Koster R, Kowalczyk E, Lettenmaier D, Liang X, Mahfouf J-F, Noilhan J, Polcher J, Qu W, Robock A, Rosenzweig C, Schlosser C, Shmakin AB, Smith J, Suarez M, Verseghy D, Wetzel P, Wood E, Xue Y (1999) Key results and implications from phase i(c) of the Projeet for Intercomparison of Land-surface Parameterization Schemes. Clim Dynam 15:673–684

    Google Scholar 

  • Planchon O, Valentin C (2004) Soil erosion in West Africa: present and future. In: Favis-Mortlock D, Boardman J (eds) Soil erosion and elimatic change. Oxford University Press (in press)

    Google Scholar 

  • Postel SL, Daily GC, Ehrlich PR (1996) Human appropriation of renewable fresh water. Science 271:785–788

    Google Scholar 

  • Pretoria, RSA, NWA (1998) National Water Act of South Africa. Act No. 36 of 1998. Government Printer, Pretoria, RSA. 200 p

    Google Scholar 

  • Probst JL (1992) Geochimie et Hydrochimie de l’érosion continentale. Mécanismes, bilan global actuel et fluctuations au cours des 500 derniers millions d’annees. Sciences Geologique Memoirs 94. Strasbourg 161 p

    Google Scholar 

  • Probst JL, Tardy Y (1989) Global runoff fluctuations during the last 80 years in relation to world temperature change. Am J Sei 289: 267–285

    Google Scholar 

  • Quay PD, Wilbur DO, Richey JE, Hedges JI, Devol AH, Victoria RL (1992) Carbon cycling in the Amazon River: implications from the 13C composition of particles and solutes. Limnol Oceanogr 37:857–871

    Google Scholar 

  • Quay PD, Wilbur DO, Richey JE, Devol AH, Benner R, Forsberg BR (1995) The 18O/16O of dissolved oxygen in rivers and lakes in the Amazon Basin: a tracer of respiration and photosynthesis. Limnol Oceanogr 40:718–729

    Google Scholar 

  • Qureshi RH, Barrett-Lennard EG (1998) Saline agriculture for irrigated land in Pakistan: a handbook. ACIAR Monograph 50, 142 p

    Google Scholar 

  • Rabouille CMackenzie FT, Ver LM (2001) Influence of human perturbation on carbon, nitrogen and oxygen biogeochemical cycles in the global coastal ocean. Geochim Cosmochim Ac 65:3615–3641

    Google Scholar 

  • Rai SC, Sharma E (1998) Land use/cover change and hydrology were studied in a watershed in the Sikkim Himalaya, India. Hydrol Process 12:2235–2248

    Google Scholar 

  • Rassmussen T, Baldwin R, Dowd J, Williams A (2000) Tracer vs. pressure wave velocities through unsaturated saprolite. Soil Sei Soc Am J 64:75–85

    Google Scholar 

  • Raymond PA, Bauer JE (2001) Riverine export of aged terrestrial organic matter to the North Atlantic Ocean. Nature 409:497–500

    Google Scholar 

  • Rekolainen S (1990) Phosphorus and nitrogen load from forest and agricultural areas in Finland. Aqua Fenn 19:95–107

    Google Scholar 

  • Renard KG, Foster GR, Weesies GA, McCool DK (1991) Predicting soil erosion by water. A guide to conservation planning with the Revised Universal Soil Loss Equation (RUSLE). USDA Agricultural Research Service, Tucson AZ, USA

    Google Scholar 

  • Revenga C, Brunner J, Henninger N, Kassem K, Murray S (2000) Global freshwater ecosystem assessment. World Resources Institute, Washington DC

    Google Scholar 

  • Richards JF (1990) Land transformation. In: Turner BL, Clark WC, Kates RW, Richards JF, Mathews JT, Meyer WB (eds) The Earth as transformed by human action. Cambridge University Press, Cambridge, pp 163–178

    Google Scholar 

  • Richey JE, Victoria RL (1993) C, N and P export dynamics in the Amazon River. In: Wollast R, Mackenzie FT, Chou L (eds) Interactions of C, N, P, and S biogeochemical cycles and global change. Springer-Verlag, Berlin, pp 123–140

    Google Scholar 

  • Richey JE, Victoria RL (1996) Continental-scale biogeochemical cycles of the Amazon River System. Verh Int Ver Theor Angew Limnol 26:219–226

    Google Scholar 

  • Richey JE, Meade RH, Salati E, Devol AH, Nordin CF, dos Santos U Jr (1986) Water discharge and suspended Sediment concentrations in the Amazon River: 1982-1984. Water Resour Res 22:756–764

    Google Scholar 

  • Richey JE, Mertes LA, Victoria RL, Forsberg BR, Dunne T, Oliveira F, Tancredi A (1989a) Sources and routing of the Amazon River floodwave. Global Biogeochem Cy 3:191–204

    Google Scholar 

  • Richey JE, Nobre C, Deser C (1989b) Amazon river discharge and climate variability: 1903 to 1985. Science 246:101–103

    Google Scholar 

  • Richey JE, Hedges JI, Devol AH, Quay PD, Victoria R, Martinelli L, Forsberg BR (1990) Biogeochemistry of carbon in the Amazon River. Limnol Oceanogr 35:352–371

    Google Scholar 

  • Richey JE, Wilhelm SR, McClain ME, Victoria RL, Melack JM, Araujo-Lima CARM (1997) Organic matter and nutrient dynamics in river corridors of the Amazon Basin and their response to anthropogenic change. Cienc Cult 49:98–110

    Google Scholar 

  • Rijsberman FR (ed) (2000) World water scenarios. Earthscan, London

    Google Scholar 

  • Rillig MC, Wright SF, Allen MF, Field CB (1999) Rise in carbon dioxide changes in soil strueture. Nature 400:628

    Google Scholar 

  • Roberts G (1998) The effects of possible future climate change on evaporation losses from four contrasting UK water catchment areas. Hydrol Process 12:727–739

    Google Scholar 

  • Robinson M, Boardman J, Evans R, Heppell K, Packman JC, Leeks GJL (2000) Land-use change. In: Acreman MC (ed) The hydrology of the UK. Routledge, London, pp 30–54

    Google Scholar 

  • Robock A, Vinnikov KY, Srinivasan G, Entin JK, Hollinger SE, Speranskaya NA, Liu SX, Namkhai A (2000) The global soil moisture data bank. B Am Meteorol Soc 81(6):1281–1299

    Google Scholar 

  • Robson AJ (2002) Evidence for trends in UK flooding. Phil T Roy Soc A 1796:1327–1343

    Google Scholar 

  • Rodhe A (1987) The origin of streamwater traced by oxygen-18. Doctoral Thesis, Dept. of Physical Geography, Uppsala University, 260 p

    Google Scholar 

  • Ronov AB (1976) Global carbon geochemistry, volcanism, carbon — ate aecumulation and life. Geochem Int 13:172–195

    Google Scholar 

  • Rooseboom A, Verster E, Zietsman HL, Lotriet HH (1992) The development of the new sediment yield map of southern Africa. Water Research Commission, Pretoria, South Africa, WRC Report 297/2/92

    Google Scholar 

  • Rosenberg DM, McCully P, Pringle CM (2000) Global-scale environmental effects of hydrological alterations: introduetion. Bioscience 50:746–751

    Google Scholar 

  • Rotmans J, den Elzen MGJ (1993) Modelling feedback mechanisms in the carbon cycle: balancing the carbon budget. Tellus 45B:1–20

    Google Scholar 

  • Rotmans J, de Vries B (1997) Perspectives on global change. The TARGET approach. Cambridge University Press, Cambridge, 462 p

    Google Scholar 

  • Roulet M, Lucotte M, Canuel R, Rheault I, Tran S, Gog YGD, Farella N, do Vale RS, Passos CJS, daSilva ED, Mergler D, Amorim M (1998) Distribution and partition of total mercury in waters of the Tapajós River basin, Brazilian Amazon. Sei Total Environ 213:203–211

    Google Scholar 

  • Rouse WR (1998) A water balance model for a subaretie sedge fen and its application to elimatic change. Climatic Change 38: 207–234

    Google Scholar 

  • Rudoy A (1998) Mountain ice-dammed lakes of Southern Siberia and their influence on the development and regime of the intracontinental runoff System of North Asia in the late Pleistocene. In: Benito G, Baker VR, Gregory KJ (eds) Paleohydrology and environmental change. John Wiley & Sons, Chichester, pp 215–234

    Google Scholar 

  • Ruecker G, Schad P, Alcubilla MM, Ferrer C (1998) Natural regeneration of degraded soils and site changes on abandoned agricultural terraces in Mediterranean Spain. Land Degrad Dev 9: 179–188

    Google Scholar 

  • Ruiz-Flano P, Garcia-Ruiz JM, Ortigosa L (1992) Geomorphological evolution of abandoned fields. A case study in the central Pyrenees. Catena 19:301–308

    Google Scholar 

  • Russell MA, Maltby E (1995) The role of hydrologic regime on phosphorus dynamics in a seasonally waterlogged soil. In: Hughes JMR, Heathwaite AL (eds) Hydrology and hydrochemistry of British wetlands. John Wiley & Sons, Chichester

    Google Scholar 

  • Russell MA, Walling DE, Webb RW, Bearne R (1998) The composition of nutrient fluxes from contrasting UK river basins. Hydrol Process 12:1461–1482

    Google Scholar 

  • Sahagian D, Schwartz FW, Jacobs DK (1994) Direct anthropogenic contributions to sea level rise in the twentieth Century. Nature 367:54–56

    Google Scholar 

  • Said R (1993) The River Nile. Pergamon Press, Oxford

    Google Scholar 

  • Saito Y, Yang Z, Hori K (2001) The Huang He (Yellow River) and Changjiang (Yangtze River) deltas: a review of their characteristics, evolution and sediment discharge during the Holocene. Geomorphology 41:219–231

    Google Scholar 

  • Sajjapongse A, Syers JK (1995) Tangible outcomes and impacts from the ASIALAND management of sloping lands network. IBSRAM Proceedings No. 14, Bangkok, pp 3–14

    Google Scholar 

  • Salati E, DalPOlio A, Matsui E, Gat JR (1979) Recycling of water in the Amazon Basin: an isotopic study. Water Resour Res 15:1250–1258

    Google Scholar 

  • Sarwar A (2000) A transient model approach to improve on-farm irrigation and drainage in semi-arid zones. PhD Thesis, Wageningen University and Research Center, Wageningen, Netherlands. 147 p

    Google Scholar 

  • Saxton KE, Rawls WJ, Romberguer JS, Papendick RI (1986) Estimating generalized soil-water characteristics from texture. Soil Sei Soc Am J 50(4):1031–1036

    Google Scholar 

  • Schellnhuber H-J (2001) Earth System analysis and management. In: Ehlers E, Krafft T (eds) Understanding the Earth System. Compartments, processes and interactions. Springer-Verlag, Heidelberg, pp 17–55

    Google Scholar 

  • Schlesinger WH (1997) Biogeochemistry: an analysis of global change. 2nd ed. Academic Press, San Diego

    Google Scholar 

  • Schlesinger WH, Melack JM (1981) Transport of organic carbon in the world’s rivers. Tellus 33:172–187

    Google Scholar 

  • Schmidt GW (1973) Primary production of phytoplankton in the three types of Amazonian waters. III. Primary production of phytoplankton in a tropical floodplain lake of central Amazonia, Lago do Castanho, Amazonas, Brazil. Amazoniana 4:379–404

    Google Scholar 

  • Schulze RE (1979) Hydrology and water resources of the Drakensberg. Natal Town and Regional Planning Commission, Pietermaritzburg, RSA, 179 p

    Google Scholar 

  • Schulze RE (1995) Hydrology and agrohydrology — a text to accompany the ACRU 3.00 agrohydrological modelling System. Water Research Commission, Pretoria, RSA, WRC Report TT69/95, 552 p

    Google Scholar 

  • Schulze RE (1997) South African atlas of agrohydrology and climatology. Water Research Commission, Pretoria, RSA, Report TT82/ 96, 276 p

    Google Scholar 

  • Schulze RE (1998) Hydrological modelling: concepts and practice. IHE, Delft, 134P

    Google Scholar 

  • Schulze RE (1999) Integrated catchment management: summary of a CEH Workshop on ICM. Centre for Ecology and Hydrology, Wallingford, UK, 11 p (available from author)

    Google Scholar 

  • Schulze RE (2000) Transcending scales of space and time on impact studies of climate and climate change on agrohydrological responses. Agr Ecosyst Environ 82:185–212

    Google Scholar 

  • Schulze RE (2001) Hydrological responses at river basin scale. School of Bioresources Engineering and Environmental Hydrology, University of Natal, Pietermaritzburg, South Africa, ACRUcons Report 38, 105 p

    Google Scholar 

  • Schulze RE, George WJ (1987) A dynamic, process-based user-ori-ented model of forest effects on water yield. Hydrol Process 1: 293–307

    Google Scholar 

  • Schulze RE, Chapman RA, Angus GR, Schmidt EJ (1987) Distributed model Simulation of impacts of upstream reservoirs on wetlands. In: Walmsley RD, Botten ML (eds) Proceedings, Symposium on Ecology and Conservation of Wetlands in South Africa. Ecosystems Programme, FRD-CSIR, Pretoria, RSA, pp 115–123

    Google Scholar 

  • Schulze RE, Summerton MJ, Meier KB, Pike A, Lynch SD (1997) The ACRU forest decision support System to assess hydrological impacts of afforestation practices in South Africa. Proceedings, 8th South African National Hydrology Symposium, Water Research Commission, Pretoria, RSA, 13 p

    Google Scholar 

  • Schulze RE, Horan MJC, Shange SN, Ndlela RM, Perks LA (1998) Hydrological impacts of land use practices in the Pongola-Bivane catchment — Phase 3. University of Natal, Pietermaritzburg, RSA, School of Bioresources Engineering and Environmental Hydrology. ACRUcons Report 26, 58 p

    Google Scholar 

  • Scott DF, Maitre Le DC, Fairbanks DHK (1998) Forestry and streamflow reductions in South Africa: a reference System for assessing extent and distribution. Water SA 24:187–199

    Google Scholar 

  • Sear DA, Wilcock DN, Robinson M, Fisher K (2000) River Channel modification in the UK. In: Acreman MC (ed) The hydrology of the UK. Routledge, London, pp 55–81

    Google Scholar 

  • SEARCH SSC (2001) SEARCH: Studyof Environmental Arctic Change, Science Plan. Seattle: Polar Science Center, University of Washington, 89 p, (available at: http://psc.aplwashington.edu/search/)

    Google Scholar 

  • Seibert J, McDonnell JJ (2002) On the dialog between experimentalist and modeler in catchment hydrology: use of soft data for multicriteria model calibration. Water Resour Res 38(11): 1241, doi:1210.1029/2001WR000978

    Google Scholar 

  • Seibert J, Bishop K, Rodhe A, McDonnell JJ (2003) Groundwater dynamics along a hillslope: a test of the steady State hypothesis. Water Resour Res 39(1):1014, doi:1010.1029/2002WR001404

    Google Scholar 

  • Seitzinger SP, Kroeze C (1998) Global distribution of nitrous oxide production and N inputs in freshwater and coastal marine ecosystems. Global Biogeochem Cy 12:93–113

    Google Scholar 

  • Seitzinger SP, Kroeze C, Bouwman AF, Caraco N, Dentener F, Styles RV (2002) Global patterns of dissolved inorganic and particulate nitrogen inputs to coastal ecosystems: recent conditions and future projections. Estuaries 25(4B):640–655

    Google Scholar 

  • Semiletov IP, Savelieva NI, Weller GE, Pipko II, Pugach SP, Gukov AY, Vasilevskaya LN (2000) The dispersion of Siberian river flows into coastal waters: meteorological, hydrological, and hydrochemical aspects. In: Lewis EL, Jones EP, Lemke P, Prowse TD, wadhams P (eds) The freshwater budget of the Arctic Ocean. NATO Advanced Study Institute Series. Kluwer Academic Publishers, Dordrecht, pp 281–296

    Google Scholar 

  • Serreze MC, Walsh JE, Chapin FS III, Osterkamp T, Dyurgerov M, Romanovsky V, Oechel WC, Morison J, Zhang T, Barry RG (2000) Observational evidence of recent change in the northern high latitude environment. Climatic Change 46:159–207

    Google Scholar 

  • Servais P, Billen G, Garnier J, Idlafkih Z, Mouchel JM, Seidl M, Meybeck M (1998) Carbone organique: origines et biodegrabilité In: Meybeck M, de Masily G, Fustec E (eds) La Seine en son bassin. Elsevier Paris, pp 483–529

    Google Scholar 

  • Sherwood M (1999) Impact of agricultural pollution on water Systems: Ireland. In: Van der Kraats JA (ed) Farming without harming: the impact of agricultural pollution on water Systems. Drukkerij Belser, Lelystad, Netherlands, pp 137–149

    Google Scholar 

  • Shiklomanov IA (1996) Assessment of water resources and water availability in the world: scientific and technical report. State Hydrological Institute, St. Petersburg, Russia, 127 p

    Google Scholar 

  • Shiklomanov IA (1997) Comprehensive assessment of the freshwater resources and water availability in the world: assessment of water resources and water availability in the world. WMO, Geneva

    Google Scholar 

  • Shiklomanov IA (2000) World water resources and water use: present assessment and outlook for 2025. In: Rijsberman FR (ed) World water scenarios. Earthscan, London, pp 160–203

    Google Scholar 

  • Shiklomanov I, Krestovsky OI (1988) Influence of forests and forest reclamation practice on streamflow and water balance. In: Reynolds ERC, Thompson FB (eds) Forests, climate and hydrology: regional impacts. United Nations University Press, Tokyo

    Google Scholar 

  • Shotyk W, Weiss D, Appleby P, Cheburkin A, Frei R, Glor M, Kramers J, Reese S, van de Knaap W (1998) History of atmospheric 1ead deposition since 12370 14C yr B.P. from a peat bog, Jura Mountains, Switzerland. Science 281:1635–1940

    Google Scholar 

  • Shukla J, Nobre C, Sellers P (1990) Amazon deforestation and climate change. Science 247:1322–1325

    Google Scholar 

  • Shumway SE (ed) (1988) Toxic algal blooms: hazards to shellfish industry. J Shellfish Res 7:587–705

    Google Scholar 

  • Sidorchuk AY (1991) Sedimentation of the small rivers on the Russian Piain during the period of intensive agriculture. In: Larinov GA (ed) Erosional studies: theory, experiment, practice. Moscow University Publ, pp 140–42, (in Russian)

    Google Scholar 

  • Sidorchuk A (1994) Modeling of Sediment budgets through the fluvial System. In: Prelim. Proc. IGBP Inter-Core Project Workshop on Modeling the Delivery of Terrestrial Material to Freshwater and Coastal Ecosystems. UNH, Durham, NH

    Google Scholar 

  • Sidorchuk A, Borisova O, Panin A (2001) Fluvial response to the Late Valdai/Holocene environmental change on the East European Piain. Global Planet Change 28:303–318

    Google Scholar 

  • Sioli H (1950) Das Wasser im Amazonasgebiet. Forsch Fortschr 26: 274–280

    Google Scholar 

  • Sklash MG (1990) Environmental isotope studies of storm and snowmelt runoff generation. In: Anderson MG, Burt TP (eds) Processes in hillslope hydrology. John Wiley & Sons, Chichester, pp 401–435

    Google Scholar 

  • Sklash MG, Farvolden RN (1979) The role of groundwater in storm runoff. J Hydrol 43:45–65

    Google Scholar 

  • Skole D, Tucker C (1993) Tropical deforestation and habitat fragmentation in the Amazon: satellite data from 1978 to 1988. Science 260:1905–1910

    Google Scholar 

  • Smith CT (1969) The drainage basin as an historical basis for human activity. In: Chorley RJ (ed) Water, Earth and man. Methuen, London, pp 101–110

    Google Scholar 

  • Smith RE (1983) Approximate soil water movement by kinematic characteristics. Soil Sei Soc Am J 47:3–8

    Google Scholar 

  • Smith RA, Alexander RB, Tasker GD, Price CV, Robinson KW, White DW (1993) Statistical modelling of water quality in regional watersheds. Watershed’ 93, A National Conference on Watershed Management, pp 751–754

    Google Scholar 

  • Smith SV, Renwick WH, Buddemeier RW, Crossland CJ (2001) Budgets of soil erosion and deposition for Sediments and sedimentary organic carbon across the conterminous United States. Global Biogeochem Cy 15:697–708

    Google Scholar 

  • Sparks RE (1995) Need for ecosystem management of large rivers and their floodplains. Bioscience 45:168–182

    Google Scholar 

  • Spitters CJT, van Keulen H, van Kraalingen DWG (1989) A simple and universal crop growth Simulator. In: Rabbinge R, Ward SA, van Laar HH (eds) Simulation and Systems management in crop protection. Simulation Monographs, Pudoc, Wageningen, pp 147–181

    Google Scholar 

  • Stallard RF (1998) Terrestrial Sedimentation and the carbon cycle: coupling weathering and erosion to carbon burial. Global Biogeochem Cy 12:231–257

    Google Scholar 

  • Stallard RF, Edmond JM (1983) Geochemistry of the Amazon: 2. The influence of geology and weathering environment on the dissolved load. J Geophys Res 88:9671–9688

    Google Scholar 

  • Stewart MK, McDonnell JJ (1991) Modeling base flow soil residence times from deuterium concentrations. Water Resour Res 27: 2681–2693

    Google Scholar 

  • Stewart JB, Engman ET, Feddes RA, Kerr Y (1998) Scaling up in hydrology using remote sensing: summary of a Workshop. Int J Remote Sens (19)1:181–194

    Google Scholar 

  • Strahler AN (1957) Quantitative analysis of watershed geomorphology. Trans Am Geophys Union 38:913–920

    Google Scholar 

  • Subcommittee on Global Change Research (SGCR) (2000) Our changing planet: the FY2001 US. Global Change Research Program. Supplement to the President’s FY 2001 Budget. National Science and Technology Council, Washington DC, 74

    Google Scholar 

  • Syvitski JPM (2003) Sediment discharge variability in Arctic rivers: implications for a warmer future. Polar Res 21(2):323–330

    Google Scholar 

  • Syvitski JP, Morehead MD (1999) Estimating river-sediment discharge to the ocean: application to the Eel margin, northern California. Mar Geol 154:13–28

    Google Scholar 

  • Tanakamaru H, Kaodya M (1993) Effects of climate change on the regional hydrological cycle in Japan. In: Exchange processes at the land surface for a range of space and time scales. Proceedings of the Yokohama Symposium, July 1993, IAHS Publ. No. 212, PP 535–542

    Google Scholar 

  • Tani M (1997) Runoff generation processes estimated from hydrological observations on a steep forested hillslope with a thin soil layer. J Hydrol 200:84–109

    Google Scholar 

  • Thiede J, Bauch HA, Hjort C, Mangerud J (eds) (2001) The late Quaternary stratigraphy and environments of Northern Eurasia and the adjacent Arctic seas. New contributions from QUEEN, Global Planet Change 31, No. 1-4, VII-X Sp. Iss.

    Google Scholar 

  • Thompson MW (1996) A Standard land-cover classifkatin scheme for remote sensing applications in South Africa. S Afr J Sei 92: 34–42

    Google Scholar 

  • Tiffen M, Mortimore M, Gichuku F (1994) More people, less erosion: environmental recovery in Kenya. African Centre for Technology Studies Press, Nairobi, 311 p

    Google Scholar 

  • Torres R, Dietrich WE, Montgomery DR, Anderson SP, Loague K (1998) Unsaturated zone processes and the hydrologic response of a steep, unchanneled catchment. Water Resour Res 34(8):1865–1879

    Google Scholar 

  • Trimble SW (1977) The fallacy of stream equilibrium in contemporary denudation studies. Am J Sei 277:876–887

    Google Scholar 

  • Tsirkunov VV (1998) Salinisation. In: Kimstach V, Meybeck M, Baroudy E (eds) A water quality assessment of the former Soviet Union. E&FN Spon, London, pp 112–136

    Google Scholar 

  • Turner JV, Barnes CJ (1998) Modeling of isotopes and hydrochemical responses in catchment hydrology. In: Kendall C, McDonnell JJ (eds) Isotope tracers in catchment hydrology. Elsevier, Amsterdam, pp 723–760

    Google Scholar 

  • Turner RE, Rabalais N (1991) Changes in the Mississippi water quality during this Century and implications for coastal food webs. Bioscience 41:140–147

    Google Scholar 

  • Turner RE, Rabalais N (1994) Coastal eutrophication near the Mississippi River delta. Nature 368:619–621

    Google Scholar 

  • Turner JV, Macpherson DK, Stokes RA (1987) The mechanisms of catchment flow processes using natural variations in deuterium and oxygen-18. J Hydrol 94:143–162

    Google Scholar 

  • Turner BL, Clark WC, Kates RW, Richards JF, Mathews JT, Meyer WB (eds)(1991) The Earth as transformed by human action. Cambridge University Press, Cambridge

    Google Scholar 

  • Turner BL, Moss RH, Skole DL (1993) Relating land use and global land-cover change: a proposal for an IGBP-HDP core projeet. IGBP, Stockholm, Sweden, IGBP Report 24, 65 p

    Google Scholar 

  • Uhlenbrook S, Leibundgut CH (1999) Integration of tracer information into the development of a rainfall-runoff model. In: Leibundgut C, McDonnell J, Schultz G (eds) Integrated methods in catchment hydrology. Proc. Int. Symp. at Birmingham, UK, July 1999, IAHS Publ. No. 258, pp 93–100

    Google Scholar 

  • Uhlenbrook S, Frey M, Leibundgut C, Maloszewski P (2002) Residence time based hydrograph separations in a meso-scale mountainous basin at event and seasonal time scales. Water Resour Res 38(6):1–14

    Google Scholar 

  • Uhlenbrook S, McDonnell J, Leibundgut C (2003) Preface: runoff generation and implications for river basin modelling. Hydrol Proc I7(2):197–198

    Google Scholar 

  • UNEP/UNESCO (United Nations Environment Program, United Nations Educational, Scientific Cultural Organization) (1986) The impact of large water projeets on the environment. UNEP/ EMINWA, UNESCO/IH, Paris

    Google Scholar 

  • UNESCO (United Nations Educational, Scientific Cultural Organization) (1993) Integrated water resource management: meeting the sustainability challenge. IHP Humid Tropics Programme, Series 5. UNESCO Press, Paris

    Google Scholar 

  • United Nations (1997) Comprehensive assessment of the freshwater resources of the world. UN, UNDP, UNEP, FAO, UNESCO, WMO, UNIDO, World Bank, SEI. WMO, Geneva, 33 p

    Google Scholar 

  • United Nations (1999) Agenda 21: programme of action for sustainable development. Rio declaration on environment and development; Statement of forest principles; the final text of agreements negotiated by governments at the United Nations Conference on Environment and Development (UNCED), 3 June 1992, Rio de Janeiro, Brazil. Department of Public Information, United Nations, Geneva (reprint)

    Google Scholar 

  • US EPA (US Environmental Protection Agency) (1989) Report to congress: water quality of the Nation’s Lakes. EPA 440/ 5-89-003. US Environmental Protection Agency, Washington DC

    Google Scholar 

  • US National Assessment (2000) Climate change impacts on the United States: the potential consequences of climate variability and change: overview and foundation reports. Cambridge University Press, Cambridge

    Google Scholar 

  • USGS (US Geological Survey) (1984) National water summary — hydrologic events and issues. US Geological Survey Water Supply Paper #2250. US Department of the Interior, Washington DC

    Google Scholar 

  • USGS-EDC (US Geological Survey EROS Data Center) (1998) HYDRO iK: elevation derivative database. US Geological Survey, Earth Resources Data Center, Sioux Falls SD, (see http://edcwww.cr.usgs.gov/landdaac/gtopo3o/hydro/index.html)

    Google Scholar 

  • Valentin C (1996) Soil erosion under global change. In: Walker BH, Steffen WL (eds) Global change and terrestrial ecosystems. Cambridge University Press, Cambridge, pp 317–338

    Google Scholar 

  • Valentin C, Bresson L-M (1992) Morphology, genesis and classification of surface crusts in loamy and sandy soils. Geoderma 55:225–245

    Google Scholar 

  • Valentin C, d’Herbes J-M (1999) Niger tiger bush as a natural water harvesting System. Catena 37:231–256

    Google Scholar 

  • Valentin C, Collinet J, Albergel J (1994) Assessing erosion in West African savannas under global change: overview and research needs. 15é Intern. Congress of Soil Science, Acapulco, Mexico, Vol. 7a, pp 253–274

    Google Scholar 

  • Valentin C, Rajot J-L, Mitja D (2004) Responses of soil crusting, runoff and erosion to fallowing in the savannas of West Africa. Agr Ecosyst Environ (in press)

    Google Scholar 

  • Valette-Silver N (1992) Historical reconstruetions of contamination using sediment cores: a review. NOAA Technical Memorandum NOS/ORGA 65. US Dept Commerce, 37 p

    Google Scholar 

  • Van Dam JC (2000) Field-scale water flow and solute transport: SWAP model coneepts, parameter estimation and case studies. Doctoral Thesis Wageningen University, ISBN 90-5808-256-3, 166 p

    Google Scholar 

  • Van Dam JC, Feddes RA (2000) Numerical Simulation of infiltration, evaporation and shallow groundwater levels with the Richards equation. J Hydrol 233:72–85

    Google Scholar 

  • Van Genuchten MTh (1980) A closed form equation for predicting the hydraulic conduetivity of unsaturated soils. Soil Sei Soc Am J 44:892–898

    Google Scholar 

  • Van Genuchten MTh, Leij FJ (1992) On estimating the hydraulic properties of unsaturated soils. In: Van Genuchten MTh, Leij FJ, Lund LJ (eds) Indirect methods for estimating hydraulic properties of unsaturated soils. Proc. Int. Workshop, Riverside, California, October 11–13,1989, University California, California, CA, PP1–14

    Google Scholar 

  • Vanney JR (1991) La Geographie de l’Ocean. Oceanis Paris, 214 p

    Google Scholar 

  • Vannote RL, Minshall GW, Cummins KW, Sedell JR, Cushing CE (1980) The river continuum concept. Can J Fish Aquat Sei 37:130–137

    Google Scholar 

  • Vehviläinen, B, Lohvansuu J (1991) The effects of climate change on discharges and snow cover in Finland. Hydrolog Sei J 36:109–121

    Google Scholar 

  • Velichko AA (ed) (1984) Late Quaternary environment of the Soviet Union. Longman Group Ltd., London, 327 p

    Google Scholar 

  • Vellinga P (ed) (1996) The environment, a multidiseiplinary concern. Inst for Environmental Studies, Vrije Universiteit, Amsterdam, 538 p

    Google Scholar 

  • Ver LMB, Mackenzie FT, Lerman A (1994) Modeling preindustrial C-N-P-S biogeochemical cycling in the land coastal margin system. Chemosphere 29:855–887

    Google Scholar 

  • Verstappen GGC, Steenvoorden JHAM, van Liere L (1999) The influence of agricultural nutrients and pestieides on Dutch surface waters. In: Van der Kraats JA (ed) Farming without harming: the impact of agricultural pollution on water Systems. Drukkerij Belser, Lelystad, pp 199–208

    Google Scholar 

  • Vertessy RA, Eisenbeer H (1999) Distributed modeling of storm flow generation in an Amazonian rain forest catchment: effects of model parameterization. Water Resour Res 35(7):2173–2187

    Google Scholar 

  • Vlotman WF, Sufi AB, Sheikh IA (1990) Comparison of three subsurface pipe drainage projeets in Pakistan. In: Proceedings of the Symposium on Land Drainage for Salinity Control in Arid and Semi-Arid Regions, Cairo, Egypt

    Google Scholar 

  • Von Bodungen B, Turner K (eds) (2001) Science and integrated coastal management. Dahlem Conf Series, John Wiley & Sons, Chichester

    Google Scholar 

  • Vörösmarty CJ (2002a) Global change, the water cycle, and our search for Mauna Loa. Hydrol Process 16:1335–1339

    Google Scholar 

  • Vörösmarty CJ (2002b) Global water assessment and potential contributions from Earth System Science. Aquatic Sciences 64: 328–351

    Google Scholar 

  • Vörösmarty CJ, Meybeck MM (1999) Riverine transport and its alteration by human activities. IGBP Global Change Newsletter 39:24–29

    Google Scholar 

  • Vörösmarty CJ, Moore BI (1991) Modeling basin-scale hydrology in support of physical climate and global biogeochemical studies: an example using the Zambezi River. Studies in Geophysics 12: 271–311

    Google Scholar 

  • Vörösmarty CJ, Peterson BJ (2000) Macro-scale models of water and nutrient flux to the coastal zone. In: Hobbie J (ed) Estuarine science: a synthetic approach to research and practice. Island Press, Washington DC, pp 43–80

    Google Scholar 

  • Vörösmarty CJ, Sahagian D (2000) Anthropogenic disturbance of the terrestrial water cycle. Bioscience 50:753–765

    Google Scholar 

  • Vörösmarty CJ, Gildea MP, Moore B, Peterson BJ, Berquist B, Melillo JM (1986) A global model of nutrient cycling: II. Aquatic processing, retention, and distribution of nutrients in large drainage basins. In: Correll D (ed) Watershed research perspectives. Smithsonian Institution Press, Washington DC

    Google Scholar 

  • Vörösmarty CJ, Moore B, Gildea MP, Peterson B, Melillo J, Kicklighter D, Raich J, Rastetter E, Steudler P (1989) A continentalscale model of water balance and fluvial transport: application to South America. Global Biogeochem Cy 3:241–265

    Google Scholar 

  • Vörösmarty CJ, Willmott CJ, Choudhury BJ, Schloss AL, Stearns TK, Robeson SM, Dorman TJ (1996a) Analyzing the discharge regime of a large tropical river through remote sensing, groundbased elimatic data, and modeling. Water Resour Res 32:3137–3150

    Google Scholar 

  • Vörösmarty CJ, Fekete B, Tucker BA (1996b) River discharge database, version 1.0 (RivDIS vi.o). Volumes 0 through 6. A contribution to IHP-V Theme 1. Technical Documents in Hydrology Series, UNESCO, Paris

    Google Scholar 

  • Vörösmarty CJ, Wasson R, Richey JE (eds)(1997a) Modeling the transport and transformation of terrestrial materials to freshwater and coastal ecosystems. Workshop Report and Recommendations for IGBP Inter-Core Project Collaboration, IGBP Report 39, IGBP, Stockholm, Sweden, 84 p

    Google Scholar 

  • Vörösmarty CJ, Sharma K, Fekete B, Copeland AH, Holden J, Marble J, Lough JA (1997b) The storage and aging of continental runoff in large reservoir Systems of the world. Ambio 26: 210–219

    Google Scholar 

  • Vörösmarty CJ, Meybeck M, Fekete B, Sharma K (1997c) The potential impact of neo-Castorization on Sediment transport by the global network of rivers. In: Walling D, Probst J-L (eds) Human impact on erosion and Sedimentation. IAHS Press, Wallingford, pp 261–272

    Google Scholar 

  • Vörösmarty CJ, Federer CA, Schloss A (1998a) Potential evaporation funetions compared on US watersheds: implications for global-scale water balance and terrestrial ecosystem modeling. J Hydrol 207:147–169

    Google Scholar 

  • Vörösmarty CJ, Li C, Sun J, Dai Z (1998b) Emerging impacts of anthropogenic change on global river Systems: the Chinese example. In: Galloway J, Melillo J (eds) Asian change in the context of global change: impacts of natural and anthropogenic changes in Asia on global biogeochemical cycles. Cambridge University Press, Cambridge, pp 210–244

    Google Scholar 

  • Vörösmarty CJ, Birkett C, Dingman SL, Lettenmaier D, Kim Y, Rodriguez E (1999) HYDRA-SAT, HYDrological Radar Altimetry SATellite. NASA Post-2002 Land Surface Hydrology Mission Component for Surface Water Monitoring. NASA, Washington. (http://lshp.gsfc.nasa.gov/P0st2002/hydrasat/hydrasat2.html)

    Google Scholar 

  • Vörösmarty CJ, Fekete BM, Meybeck M, Lammers R (2000a) Geomorphometric attributes of the global System of rivers at 30-minute spatial resolution (STN-30). J Hydrol 237:17–39

    Google Scholar 

  • Vörösmarty CJ, Fekete BM, Meybeck M, Lammers R (2000b) A simulated topological network representing the global System of rivers at 30-minute spatial resolution (STN-30). Global Biogeochemical Cycles 14:599–621

    Google Scholar 

  • Vörösmarty CJ, Green P, Salisbury J, Lammers R (2000c) Global water resources: Vulnerability from climate change and population growth. Science 289:284–288

    Google Scholar 

  • Vörösmarty CJ, Hinzman L, Peterson BJ, Bromwich DL, Hamilton L, Morison J, Romanovsky V, Sturm M, Webb R (2001) The hydrologic cycle and its role in Arctic and global environmental change: a rationale and strategy for synthesis study. ARCUS, Fairbanks AK, 84 p

    Google Scholar 

  • Vörösmarty CJ, Hinzman L, Peterson BJ, Bromwich DL, Hamilton L, Morison J, Romanovsky V, Sturm M, Webb R (2002) Arctic CHAMP: a program to study Arctic hydrology and its role in global change. AGU Eos Transactions 83, 241, 144, 249

    Google Scholar 

  • Vörösmarty CJ, Meybeck M, Fekete B, Sharma K, Green P, Syvitksi J (2003) Anthropogenic sediment retention: major global-scale impact from the population of registered impoundments. Global and Planetary Change 39:169–190

    Google Scholar 

  • Walker BH (1994) Global change strategy options in the extensive agriculture regions of the world. Climatic Change 27(1): 39–47

    Google Scholar 

  • Walling DE (1983) The sediment delivery problem. J Hydrol 65: 209–237

    Google Scholar 

  • Walling DE (1990) Linking the field to the river: sediment delivery from agricultural land. In: Boardman J, Foster IDL, Dearing JA (eds) Soil erosion on agricultural land. John Wiley & Sons, Chichester

    Google Scholar 

  • Walling DE, Fang D (2003) Recent trends in the suspended loads of the world’s rivers. Global and Planetary Change 39:111–126

    Google Scholar 

  • Walling DE, Webb BW (1983) Patterns of sediment yield. In: Gregory KJ (ed) Background to palaeohydrology. John Wiley & Sons, New York, pp 69–100

    Google Scholar 

  • Ward PRB (1980) Sediment transport and a reservoir siltation formula for Zimbabwe, Rhodesia. Die Siviele Ingenier in Suid-Afrika, Januarie 1980, pp 9–15

    Google Scholar 

  • Ward RC, Robinson M (1990) Principles of hydrology, 3rd ed. Mc-Graw-Hill, London

    Google Scholar 

  • Ward JV, Stanford JA (1995) Ecological Connectivity in alluvial river ecosystems and its disruption by flow regulation. Regul River 11:105–119

    Google Scholar 

  • Webb RH, Schmidt JC, Marzolf GR, Valdez RA (eds)(1999) The controlled flood in Grand Canyon. AGU, Washington DC, 367 p

    Google Scholar 

  • Webb RH, Wegner DL, Andrews ED, Valdez RA, Patten DT (1999) Downstream effects of Glen Canyon Dam on the Colorado River in Grand Canyon: a review. In: Webb et al. (1999), pp 1–21

    Google Scholar 

  • Wechsung F, Krysanova V, Flechsig M, Schaphoff S (2000) May land-use change reduce the water deficiency problem caused by reduced brown coal mining in the State of Brandenburg? Landscape Urban Plan 51/2-4:105–117

    Google Scholar 

  • Werner PC, Gerstengarbe FW (1997) A proposal for the development of climate scenarios. Climate Change 8(3):171–182

    Google Scholar 

  • Werner W, Wodsak H-P (1994) Stickstoff-und Phosphoreintrag in Fliessgewässer Deutschlands unter besonderer Berücksichtigung des Eintragsgeschehens im Lockergesteinbereich der ehemaligen DDR. Agrarspektrum 22, 241 p

    Google Scholar 

  • Werner W, Olfs H-W, Auerswald K, Isermann K (1991) Stickstoffund Phosphoreintrag im Oberflächengewässer über adiffuse Quellen. In: Hamm A (ed) Studie über Wirkungen und Qualitätsziele von Nährstoffen in Fliessgewässern. Academia Verlag, St Augustin, pp 665–764

    Google Scholar 

  • Williams JR (1975) Sediment yield prediction with a universal equation using runoff energy factor. In: Present and prospective technology for predicting sediment yields and sources. USDA ARS 40, pp 244–252

    Google Scholar 

  • Williams JR, Berndt HD (1977) Sediment yield prediction based on watershed hydrology. Trans ASAE 20(6):1100–1104

    Google Scholar 

  • Williams J, Bonell M (1988) The influence of scale of measurement on the spatial and temporal variability of the Philip infiltration parameters — an experimental study in an Australian savannah woodland. J Hydrol 104:33–51

    Google Scholar 

  • Williams MAJ, Faure H (eds)(1980) The Sahara and the Nile — Quaternary environments and prehistoric occupation in northern Africa. A.A. Balkema, Rotterdam, 623 p

    Google Scholar 

  • Williams JR, Singh VP (1995) The EPIC model. In: Computer models of watershed hydrology. Water Resources Publications, Colorado, pp 909–1000

    Google Scholar 

  • Williams JR, Renard KG, Dyke PT (1984) EPIC — a new model for assessing erosion’s effect on soil productivity. J Soil Water Conserv 38(5):381–383

    Google Scholar 

  • Williams R, Burt T, Brighty G (2000) River water quality. In: Acreman MC (ed) The hydrology of the UK. Routledge, London, pp 134–149

    Google Scholar 

  • Wilson L (1973) Variations in mean annual sediment yield as a function of mean annual precipitation. Am J Sei 273:335–349

    Google Scholar 

  • Wilson GV, Jardine PM, Luxmoore RJ, Zelazny LW, Todd DE (1991a) Hydrogeochemical processes Controlling subsurface transport from an upper Walker Branch Watershed during storm events. 1. Hydrologie transport processes. J Hydrol 123:297–316

    Google Scholar 

  • Wilson GV, Jardine PM, Luxmoore RJ, Zelazny LW, Todd DE (1991b) Hydrogeochemical processes Controlling subsurface transport from an upper Walker Branch Watershed during storm events. 2. Solute transport processes. J Hydrol 123:317–336

    Google Scholar 

  • Wollheim WM, Peterson B J, Deegan LA, Hobbie JE, Hooker B, Bowden WB, Edwardson KJ, Arscott DB, Hershey AE, Finlay J (2001) Influence of stream size on ammonium and suspended particulate nitrogen processing. Limnol Oceanogr 46:1–13

    Google Scholar 

  • Wolters W, Bhutta MN (1997) Need for integrated irrigation and drainage management: example of Pakistan. Proceedings of ILRI Symposium Towards Integrated Irrigation and Drainage Management, Wageningen, The Netherlands

    Google Scholar 

  • Wösten JHM, Lilly A, Nemes A, Le Bas C (1999) Development and use of a database of hydraulic properties of European soils. Geoderma 90:169–185

    Google Scholar 

  • WRI (World Resources Institute) (1998) World resources: a guide to the global environment 1998-1999. World Resources Institute, Washington DC

    Google Scholar 

  • Young GJ, Dooge JI, Rodda JC (1994) Global water resource issues. CUP, Cambridge

    Google Scholar 

  • Yu B, Neil DT (1993) Long-term variations in regional rainfall in the south-west of Western Australia and the difference between average and high intensity rainfalls. International Journal of Climatology 13:77–88

    Google Scholar 

  • Yue S, Pilon P, Phinney B (2003) Canadian streamflow trend detection: impacts of serial and cross-correlation. Hydrol Sei J 48(1): 51–63

    Google Scholar 

  • Zaret TM, Devol AH, Santos AD (1981) Nutrient addition experiments in Lago Jacaretinga, central Amazon Basin, Brazil. Verh Internat Verein Limnol 21:721–724

    Google Scholar 

  • Zeng X (2001) Global Vegetation root distribution for land modeling. J Hydrometeorol 2:525–530

    Google Scholar 

  • Zhang J, Zhang ZF, Liu SM, Wu Y, Xiong H, Chen HT (1999) Human impacts on the large world rivers: would the Chang Jiang (Yangtze River) beillustration? Global Biogeochem Cy 13:1099–1105

    Google Scholar 

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Kabat, P. et al. (2004). References Part D. In: Kabat, P., et al. Vegetation, Water, Humans and the Climate. Global Change — The IGBP Series. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-18948-7_38

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