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Articles

Simulation of spatially-distributed copper pollution in a large river basin using the ECOMAG-HM model

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Pages 739-756 | Received 21 Aug 2018, Accepted 04 Feb 2019, Published online: 30 Apr 2019

References

  • Abbaspour, K.C., et al., 2015. A continental-scale hydrology and water quality model for Europe: calibration and uncertainty of a high-resolution large-scale SWAT model. Journal of Hydrology, 524, 733–752. doi:10.1016/j.jhydrol.2015.03.027
  • Abdrakhmanov, R.F., Chalov, Y.N., and Abdrakhmanova, E.P., 2007. Presnye podzemnye vody Bashkortostana [Fresh groundwater in Bashkortostan]. Ufa: Informreklama.
  • Barenboim, G.M., et al., 2013. On the problems of water quality in Russia and some approaches to their solution. IAHS Publ., 361, 77–86.
  • Bashkortostan: Kratkaya entsiklopediya [The Republic of Bashkortostan: brief ensyclopedia]. 1996. Ufa: Nauchnoe Izd. “Bashkirskaya entsiklopediya”.
  • Bedient, P.B., Lambert, J.L., and Springer, N.K., 1980. Stormwater pollutant load runoff relationships. Journal Water Pollution Control Federation, 52 (9), 2396–2404.
  • Chernogayeva, E.M., 2017. Tendentsii i dinamika sostoyaniya i zagryazneniya okruzhayushchey sredy v Rossiyskoy Federacii po dannym mnogoletnego monitoringa za poslednie 10 let. Analiticheskiн obzor [Tendencies and dynamics of the state and pollution of the environment in the Russian Federation according to the data of long-term monitoring for the last 10 years. Analytical review]. resp. ed.. Moscow: Rosgidromet.
  • Ezhegodnik. Zagryaznenie pochv v Rossijskoj Federacii promyshlennymi toksikantami v 2010 godu [Yearbook. Soil pollution in the Russian federation by industrial toxicants in 2010], 2011. Obninsk: GU “VNIIGMI-MTsD”.
  • Fashchevskaya, T.B., Krasnogorskaya, N.N., and Rogozina, T.A., 2006. O vozdeystvii predpriyatiya “Ufavodokanal” na kachestvo vody reki Beloy. Materialy mezhdunarodnoy nauchnoy konferentsii “Ekologicheskie i gidrometeorologicheskie problemy bolshih gorodov i promyshlennyh zon” [On the impact of the enterprise “Ufavodokanal” on the water quality of the Belaya River. Proceedings of the international scientific conference “ecological and hydrometeorological problems of large cities and industrial zones”]. St. Petersburg: Izd. RSHU, 80–82.
  • Fashchevskaya, T.B., Motovilov, Y.G., and Shadiyanova, N.B., 2018. Natural and anthropogenic variations of the concentrations of iron, copper and zinc in water streams of the Republic of Bashkortostan. Water Resources, 45 (6), 873–886. doi:10.1134/S0097807818060064
  • Fuchs, S., et al., 2017. Modeling of regionalized emissions (MoRE) into water bodies: an open-source river basin management system. Water, 9 (4), 239. doi:10.3390/w9040239
  • Galvan, L., et al., 2009. Application of the SWAT model to an AMD-affected river (Meca River, SW Spain). Estimation of transported pollutant load. Journal of Hydrology, 377, 445–454. doi:10.1016/j.jhydrol.2009.09.002
  • Gao, L. and Li, D., 2014. A review of hydrological/water-quality models. Frontiers of Agricultural Science and Engineering, 1 (4), 267–276. doi:10.15302/J-FASE-2014041
  • Gelfan, A., et al., 2015. Testing the robustness of the physically-based ECOMAG model with respect to changing conditions. Hydrological Sciences Journal, 60 (7–8), 1266–1285. doi:10.1080/02626667.2014.935780
  • Gelfan, A.N. and Motovilov, Y.G., 2009. Long-term hydrological forecasting in cold regions: retrospect, current status and prospects. Geography Compass, 3/5, 1841–1864. doi:10.1111/j.1749–8198.2009.00256.x
  • Gosudarstvennyj dokladO sostoyanii i ohrane okruzhayushchej sredy Respubliki Bashkortostan v 2004 godu” [State report on the environmental state and protection in the Republic of Bashkortostan in 2004], 2005. Ufa: Minekologii Respubliki Bashkortostan.
  • Harmel, R.D., et al., 2014. Evaluating, interpreting, and communicating performance of hydrologic/water quality models considering intended use: a review and recommendations. Environmental Modelling & Software, 57, 40–51. doi:10.1016/j.envsoft.2014.02.013
  • Hesse, C. and Krysanova, V., 2016. Modeling climate and management change impacts on water quality and in-stream processes in the Elbe river basin. Water, 8 (2), 40. doi:10.3390/w8020040
  • Knisel, W.G., ed., 1980. CREAMS: a field scale model for chemical, runoff and erosion from agricultural management systems. In: USDA conservation research report, No. 26. Washington: Dept. of Agriculture, Science and Education Administration.
  • Krysanova, V., et al., 2009. Water quality modelling in mesoscale and large river Basins. In: Encyclopedia of life support systems (EOLSS), 2: hydrological systems modeling. Isle of Man: Eolss Publishers, 11–48.
  • Leebai, N., Leungprasert, S., and Sirivittayaprakron, S., 2016. Organic pollutants and heavy metals transport in the lower Chaophraya Basin Using SWAT model. International Journal of Advances in Science Engineering and Technology, 2, 21–25.
  • Linnik, P.N. and Nabivanets, B.I., 1986. Formy migratsii metallov v presnyh poverhnostnyh vodah [Forms of migration of metals in fresh surface waters]. Leningrad: Gidrometeoizdat.
  • Maistrenko, V.N., Khamitov, R.Z., and Budnikov, G.K., 1996. Ekologo-analiticheskii monitoring superekotoksikantov [Ecological-analytical monitoring of superecotoxicants]. Moscow: Khimiya.
  • Moriasi, D.N., et al., 2007. Model evaluation guidelines for systematic quantification of accuracy in watershed simulations. Transactions of the ASABE, 50 (3), 885–900. doi:10.13031/2013.23153
  • Motovilov, Y.G., 2016a. Hydrological simulation of river basins at different spatial scales: 1. Generalization and averaging algorithms. Water Resources, 43 (3), 429–437. doi:10.1134/S0097807816030118
  • Motovilov, Y.G., 2016b. Hydrological simulation of river basins at different spatial scales: 2. Test results. Water Resources, 43 (5), 743–753. doi:10.1134/S0097807816050092
  • Motovilov, Y.G., 2017. Modeling fields of river runoff (a case study for the Lena river Basin). Russian Meteorology and Hydrology, 42, 121–128. doi:10.3103/S1068373917020066
  • Motovilov, Y.G., et al., 1999b. Validation of a distributed hydrological model against spatial observation. Agricultural and Forest Meteorology, 98–99, 257–277. doi:10.1016/S0168-1923(99)00102-1
  • Motovilov, Y.G., 2013. ECOMAG: a distributed model of runoff formation and pollution transformation in river basins. IAHS Publ., 361, 227–234.
  • Motovilov, Y.G., et al., 1999a. ECOMAG: regional model of hydrological cycle. Application to the NOPEX region. Department of Geophysics, University of Oslo.
  • MUK 4. 1.1258-03, 2003. Metody kontrolya. Khimicheskie factory. Izmerenie massovoi kontsentratsii medi fluorimetricheskim metodom v probakh pit’evoi vody i vody poverkhnostnykh i podzemnykh istochnikov vodopol’zovaniya [Control methods. Chemical factors. Measuring copper mass concentration by fluorimetriс methods in samples of drinking water and water from surface and subsurface sources of water use]. Moscow: Minzdrav Rossii.
  • Santhi, C., et al., 2008. Spatial calibration and temporal validation of flow for regional scale hydrologic modeling. Journal of the American water resources association, 44, 829–846. doi:10.1111/j.1752-1688.2008.00207.x
  • Sauvé, S., et al., 2003. Solid-solution partitioning of Cd, Cu, Ni, Pb and Zn in the organic horizons of a forest soil. Environmental science & technology, 37 (22), 5191–5196. doi:10.1021/es030059g
  • SNIP-2.01.14-83, 1985. Opredelenie raschetnyh gidrologicheskih harakteristik [Construction standards and regulations, determining design hydrological characteristics]. Moscow: Stroiizdat.
  • Vink, R. and Peters, S., 2003. Modelling point and diffuse heavy metal emissions and loads in the Elbe basin. Hydrological processes, 17, 1307–1328. doi:10.1002/hyp.1286
  • Voskresenskiy, K.P., 1962. Norma i izmenchivost’ godovogo stoka rek Sovetskogo Soyuza [Normal annual runoff and its variations in Rivers in the Soviet Union]. Leningrad: Gidrometeoizdat.
  • Yang, Y.S. and Wang, L., 2010. A review of modelling tools for implementation of the EU water framework directive in handling diffuse water pollution. Water Resources Management, 24, 1819–1843. doi:10.1007/s11269-009-9526-y
  • Yaparov, I.M., 2005. Atlas Respubliki Bashkortostan [Atlas of the Republic of Bashkortostan]. resp. ed. . Ufa: Kitap.
  • Zhang, P., et al., 2013. Land use pattern optimization based on CLUE-S and SWAT models for agricultural non-point source pollution control. Mathematical and Computer Modelling, 58, 588–595. doi:10.1016/j.mcm.2011.10.061

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