Abel, A., Michael, A., Zartl, A., Werner, F. (2000), “Impact of erosion-transported overburden dump materials on water quality in Lake Cospuden evolved from a former open cast lignite mine south of Leipzig, Germany”, Environmental Geology, 39: 683–688, External Linkdoi:10.1007/s002540050482.
Ascough II, J.C., Baffaut, C., Nearing, M.A., Liu, B.Y. (1997), “The WEPP watershed model: I. Hydrology and erosion”, Transactions of the ASAE, 40(4): 921–933.
Bach, M., Huber, A., Frede, H.-G. (2001), “Modeling pesticide losses from diffuse sources in Germany”, Water Science & Technology, 44(7): 189–196.
Behrendt, H., Opitz, D. (2000), “Retention of nutrients in river systems: dependence on specific runoff and hydraulic load”, Hydrobiologia, 410: 111–122, External Linkdoi:10.1023/A:1003735225869.
Beulke, S., Brown, C.D., Dubus, I.G., Galicia, H., Jarvis, N.J., Schäfer, D., Trevisan, M. (2006), “User subjectivity in Monte Carlo modelling of pesticide exposure”, Environmental Toxicology and Chemistry, 25(8): 2227–2236.
Boesten, J.J.T.I., van der Linden, A.M.A. (2001), “Effect of long-term sorption kinetics on leaching as calculated with the PEARL model for FOCUS scenarios”, in Pesticide Behaviour in Soils and Water, Proceedings of a symposium organised by the British Crop Protection Council, held at the Hilton Brighton Metropole, 13–15 November 2001, pp. 27–32, Alton, U.K. (BCPC Publications).
Bøggild, C.E., Knudby, C.J., Knudsen, M.B., Starzer, W. (1999), “Snowmelt and runoff modelling of an Arctic hydrological basin in west Greenland”, Hydrological Processes, 13: 1989–2002.
Bonazountas, M. (1987), “Chemical Fate Modelling in Soil Systems: A State-of-the-Art Review”, in Scientific Basis for Soil Protection in the European Community, (Eds.) Barth, H., L’Hermite, P.L., Proceedings of a symposium organised by the EU Commission and the Senate of Berlin, held in Berlin, 6–8 October 1986, London, U.K.; New York, U.S.A. (Elsevier).
Borah, D.K., Bera, M. (2004), “Watershed-scale hydrologic and nonpoint-source pollution models: Review of applications”, Transactions of the ASAE, 47(3): 789–803.
Borah, D.K., Bera, M., Xia, R. (2004), “Storm event flow and sediment simulations in agricultural watersheds using DWSM”, Transactions of the ASAE, 47(5): 1539–1559.
Brouwer, W.W.M. (1994), “Use of simulation-models for registration purposes: Evaluation of pesticide leaching to groundwater in The Netherlands”, Journal of Environmental Science and Health (A), 29: 1117–1132.
Capri, E., Miao, Z. (2002), “Modelling pesticide fate in rice paddy”, Agronomie, 22(4): 363–371, External Linkdoi:10.1051/agro:2002020.
Chatupote, W., Panapitukkul, N. (2005), “Regional assessment of nutrient and pesticide leaching in the vegetable production area of Rattaphum catchment, Thailand”, Water, Air, & Soil Pollution: Focus, 5: 165–173, External Linkdoi:10.1007/s11267-005-7411-0.
Chew, C.Y., Moore, L.W., Smith, R.H. (1991), “Hydrological simulation of Tennessee’s North Reelfoot Creek watershed”, Research Journal of the Water Pollution Control Federation, 63(1): 10–16.
Crowe, A.S., Mutch, J.P. (1992), “EXPRES: an expert system for assessing the fate of pesticides in the subsurface”, Environmental Monitoring and Assessment, 23: 19–43, External Linkdoi:10.1007/BF00406950.
DeRoo, A.P.J., Offermans, R.J.E., Cremers, N.H.D.T. (1996), “LISEM: A single-event, physically based hydrological and soil erosion model for drainage basins. 2: Sensitivity analysis, validation and application”, Hydrological Processes, 10(8): 1119–1126, External Linkdoi:10.1002/(SICI)1099-1085(199608)10:8%3c1119::AID-HYP416%3e3.0.CO;2-V.
Donigian, A.S., Carsel, R.F. (1987), “Modeling the impact of conservation tillage practices on pesticide concentrations in ground and surface waters”, Environmental Toxicology and Chemistry, 6: 241–250.
Eckhardt, D.A.V., Wagenet, R.J. (1996), “Estimation of the Potential for Atrazine Transport in a Silt Loam Soil”, in Herbicide metabolites in surface water and groundwater, (Eds.) Meyer, M.T., Thurman, E.M., 209th National Meeting of the American Chemical Society, Anaheim, California, April 2–6, 1995, vol. 630 of ACS Symposium Series, pp. 101–116, Washington, U.S.A. (American Chemical Society).
Franke, H.-J., Teutsch, G. (1994), “Stochastic simulation of the regional pesticide transport including the unsaturated and the saturated zone”, Ecological Modelling, 75–76: 529–539, External Linkdoi:10.1016/0304-3800(94)90046-9.
Frede, H.-G., Bach, M., Fohrer, N., Breuer, L. (2002), “Interdisciplinary modeling and the significance of soil functions”, Journal of Plant Nutrition and Soil Science (Zeitschrift für Pflanzenernährung und Bodenkunde), 165: 460–467, External Linkdoi:10.1002/1522-2624(200208)165:4%3c460::AID-JPLN460%3e3.0.CO;2-B.
Gärdenäs, A.I., Šimůnek, J., Jarvis, N.J., van Genuchten, M.T. (2006), “Two-dimensional modelling of preferential water flow and pesticide transport from a tile-drained field”, Journal of Hydrology, 329(3–4): 647–660, External Linkdoi:10.1016/j.jhydrol.2006.03.021.
Goodman, E.D., Jenkins, J.J., Zabik, M.J. (1983), “A model for azinphosmethyl attenuation and movement in a Michigan orchard ecosystem: II. Parameterization of a field-based model”, Archives of Environmental Contamination and Toxicology, 12: 111–119, External Linkdoi:10.1007/BF01055009.
Gottesbüren, B., Aden, K., Bärlund, I., Brown, C.D., Dust, M., Görlitz, G., Jarvis, N.J., Rekolainen, S., Schäfer, H. (2000), “Comparison of pesticide leaching models: results using the Weiherbach data set”, Agricultural Water Management, 44(1): 153–181, External Linkdoi:10.1016/S0378-3774(99)00090-6.
Grønsten, H.A., Lundekvam, H. (2006), “Prediction of surface runoff and soil loss in southeastern Norway using the WEPP Hillslope model”, Soil & Tillage Research, 85(1–2): 186–199, External Linkdoi:10.1016/j.still.2005.01.008.
Hall, D.G.M. (1994), “Simulation of Dichlorprop leaching in 3 texturally distinct soils using the pesticide leaching model”, Journal of Environmental Science and Health (A), 29: 1211–1230.
Harlin, J. (1991), “Development of a process oriented calibration scheme for the HBV hydrological model”, Nordic Hydrology, 22(1): 15–36.
Hattermann, F.F., Wattenbach, M., Krysanova, V., Wechsung, F. (2005), “Runoff simulations on the macroscale with the ecohydrological model SWIM in the Elbe catchment - validation and uncertainty analysis”, Hydrological Processes, 19: 693–714, External Linkdoi:10.1002/hyp.5625.
Herbst, M., Fialkiewicz, W., Chen, T., Pütz, T., Thiéry, D., Mouvet, C., Vachaud, G., Vereecken, H. (2005a), “Intercomparison of Flow and Transport Models Applied to Vertical Drainage in Cropped Lysimeters”, Vadose Zone Journal, 4(2): 240–254, External Linkdoi:10.2136/vzj2004.0070.
Herbst, M., Hardelauf, H., Harms, R., Vanderborght, J., Vereecken, H. (2005b), “Pesticide fate at regional scale: Development of an integrated model approach and application”, Physics and Chemistry of the Earth, 30(8–10): 542–549, External Linkdoi:10.1016/j.pce.2005.07.009.
Hernandez, M., Miller, S.N., Goodrich, D.C., Goff, B.F., Kepner, W.G., Edmonds, C.M., Jones, K.B. (2000), “Modeling runoff response to land cover and rainfall spatial variability in semi-arid watersheds”, Environmental Monitoring and Assessment, 64: 285–298, External Linkdoi:10.1023/A:1006445811859.
Huber, A., Bach, M., Frede, H.-G. (1998), “Modeling pesticide losses with surface runoff in Germany”, Science of the Total Environment, 223(2–3): 177–191, External Linkdoi:10.1016/S0048-9697(98)00314-3.
Hutson, J.L., Wagenet, R.J. (1993), “A Pragmatic field-scale approach for modelling pesticides”, Journal of Environmental Quality, 22(3): 494–499.
Ireson, A., Makropoulos, C., Maksimovic, C. (2006), “Water Resources Modelling under Data Scarcity: Coupling MIKE BASIN and ASM Groundwater Model”, Water Resources Management, 20: 567–590, External Linkdoi:10.1007/s11269-006-3085-2.
Jackson, S., Hendley, P., Jones, R., Poletika, N., Russell, M. (2005), “Comparison of Regulatory Method Estimated Drinking Water Exposure Concentrations with Monitoring Results from Surface Drinking Water Supplies”, Journal of Agricultural and Food Chemistry, 53: 8840–8847, External Linkdoi:10.1021/jf050584u.
Jarvis, N.J., Stähli, M., Bergström, L., Johnsson, H. (1994), “Simulation of Dichlorprop and Bentazon leaching in soils of contrasting texture using the MACRO model”, Journal of Environmental Science and Health (A), 29(6): 1255–1277.
Jetten, V., Govers, G., Hessel, R. (2003), “Erosion models: quality of spatial predictions”, Hydrological Processes, 17: 887–900, External Linkdoi:10.1002/hyp.1168.
Julien, P.Y., Saghafian, B., Ogden, F.L. (1995), “Raster-based hydrologic modelling of spatially-varied surface runoff”, Water Resources Bulletin, 31(3): 523–536.
Kalin, L., Hantush, M.H. (2006), “Comparative assessment of two distributed watershed models with application to a small watershed”, Hydrological Processes, 20: 2285–2307, External Linkdoi:10.1002/hyp.6063.
Kapo, K.E., Burton Jr, G.A. (2006), “A geographic information system-based, weights-of-evidence approach for diagnosing aquatic ecosystem impairment”, Environmental Toxicology and Chemistry, 25: 2237–2249.
Kienzle, S.W., Schulze, R.E. (1992), “A simulation-model to assess the effect of afforestation on groundwater resources in deep sandy soils”, Water SA, 18(4): 265–272.
Klein, M. (1994), “Evaluation and comparison of pesticide leaching models for registration purposes: Results of simulations performed with the pesticide leaching model”, Journal of Environmental Science and Health (A), 29(6): 1197–1209.
Klöcking, B., Haberlandt, U. (2002), “Impact of land use changes on water dynamics – a case study in temperate meso and macroscale river basins”, Physics and Chemistry of the Earth, 27: 619–629, External Linkdoi:10.1016/S1474-7065(02)00046-3.
Krause, P. (2002), “Quantifying the impact of land use changes on the water balance of large catchments using the J2000 model”, Physics and Chemistry of the Earth, 27(9–10): 663–673, External Linkdoi:10.1016/S1474-7065(02)00051-7.
Krysanova, V., Müller-Wohlfeil, D.-I., Becker, A. (1998), “Development and test of a spatially distributed hydrological/water quality model for mesoscale watersheds”, Ecological Modelling, 106 (2–3): 261–289, External Linkdoi:10.1016/S0304-3800(97)00204-4.
Lorber, M.N., Offutt, C.K. (1986), “A method for the assessment of groundwater contamination potential using a Pesticide Root Zone Model (PRZM) for the unsaturated zone”, in Evaluation of Pesticides in Groundwater, (Eds.) Gardner, W.Y., Honeycutt, R.C., Nigg, H.N., vol. 315 of ACS Symposium Series, pp. 342–365, Washington, U.S.A. (American Chemical Society).
Ma, Q.L., Smith, A.E., Hook, J.E., Bridges, D.C. (1999), “Surface transport of 2,4-D from small turf plots: observations compared with GLEAMS and PRZM-2 model simulations”, Pesticide Science, 55(4): 423–433.
Mati, B.M., Morgan, R.P.C., Quinton, J.N. (2006), “Soil erosion modelling with EUROSEM at Embori and Mukogodo catchments, Kenya”, Earth Surface Processes and Landforms, 31: 579–588, External Linkdoi:10.1002/esp.1347.
Matthies, M., Behrendt, H. (1991), “Pesticide transport modelling in soil for risk assessment of groundwater contamination”, Toxicological & Environmental Chemistry, 31–32: 357–365.
Miao, Z., Cheplick, M.J., Williams, M.W., Trevisan, M., Padovani, L., Gennari, M., Ferrero, A., Vidotto, F., Capri, E. (2003), “Simulating Pesticide Leaching and Runoff in Rice Paddies with the RICEWQ–VADOFT Model”, Journal of Environmental Quality, 32: 2189–2199.
Michaud, J., Sorooshian, S. (1994), “Comparison of simple versus complex distributed runoff models on a midsized semiarid watershed”, Water Resources Research, 30(3): 593–605, External Linkdoi:10.1029/93WR03218.
Morgan, R.P.C., Quinton, J.N., Rickson, R.J. (1994), “Modeling methodology for soil-erosion assessment and soil conservation design - the EUROSEM approach”, Outlook on Agriculture, 23 (1): 5–9.
Morgan, R.P.C., Quinton, J.N., Smith, R.E., Govers, G., Poesen, J.W.A., Auerswald, K., Chisci, G., Torri, D., Styczen, M.E. (1998), “The European Soil Erosion Model (EUROSEM): a dynamic approach for predicting sediment transport from fields and small catchments”, Earth Surface Processes and Landforms, 23: 527–544, External Linkdoi:10.1002/(SICI)1096-9837(199806)23:6%3c527::AID-ESP868%3e3.0.CO;2-5.
Muleta, S., Yohannes, F., Rashid, S.M. (2006), “Soil erosion assessment of Lake Alemaya catchment, Ethiopia”, Land Degradation & Development, 17: 333–341, External Linkdoi:10.1002/ldr.713.
Nijssen, B., Haddeland, I., Lettenmaier, D.P. (1997), “Point evaluation of a surface hydrology model for BOREAS”, Journal of Geophysical Research, 102(D24): 29,367–29,378, External Linkdoi:10.1029/97JD01217.
Park, S.W., Mitchell, J.K., Scarborough, J.N. (1982), “Soil-erosion simulation on small watersheds - a modified ANSWERS model”, Transactions of the ASAE, 25(6): 1581–1588.
Persicani, D. (1993), “Atrazine leaching into groundwater: comparison of five simulation models”, Ecological Modelling, 70(3–4): 239–261, External Linkdoi:10.1016/0304-3800(93)90059-2.
Persicani, D. (1996), “Pesticide leaching into field soils: sensitivity analysis of four mathematical models”, Ecological Modelling, 84: 265–280, External Linkdoi:10.1016/0304-3800(94)00136-7.
Ramanarayanan, T., Narasimhan, B., Srinivasan, R. (2005), “Characterization of Fate and Transport of Isoxaflutole, a Soil-Applied Corn Herbicide, in Surface Water Using a Watershed Model”, Journal of Agricultural and Food Chemistry, 53: 8848–8858,