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1

Spirin, Yuriy, Sergey Zotov, Evgeniy Krasnov i Nadezhda Cvetkova. Polder watercourses: research methods and geoecological assessment. ru: INFRA-M Academic Publishing LLC., 2023. http://dx.doi.org/10.12737/1903343.

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The monograph describes research methods and geoecological assessment of polder lands. The history of research and practical use of surface waters of the Kaliningrad region is characterized, modern problems of their geoecological state are revealed. The characteristic of polder lands as complex natural and economic systems is given, the necessity of geoecological studies of the catchments of small rivers located on them is substantiated. A methodological approach has been developed to assess the geoecological condition of the basins of small watercourses through the combined analysis of hydrological, hydrochemical and geoecological data. Hydrological calculations of the key characteristics of the river flow of small watercourses of polder lands were carried out, the dependencies between them were revealed. Field studies were carried out, hydrochemical data sets were obtained on the rivers of polder lands for four hydrological seasons of 2020-2021. Retrospective hydrochemical information has been processed. The prevailing pollutants, integral indicators of water quality and the main sources of pollution are calculated. Based on the results obtained, a scheme of spatial distribution of pollution of the river network of polder lands is constructed. The geoecological condition of the basins is assessed on the basis of a complex of natural and anthropogenic data; based on the result obtained, recommendations for its improvement are given. It is of interest to specialists in the field of geoecology, hydrology, hydrochemistry, environmental management and environmental protection.
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2

Alaska. Division of Land and Water. Lands and Resources Section. Susitna Basin recreation rivers management plan. [Anchorage, Alaska]: State of Alaska, Dept. of Natural Resources, 1991.

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3

Ivankova, Tat'yana, Roman Chalov, Boris Kochurov, Sofiya Isaeva i Antonina Suzdaleva. Ensuring environmental safety of natural and technical systems of small river basins in the conditions of the Crimean Peninsula. ru: INFRA-M Academic Publishing LLC., 2023. http://dx.doi.org/10.12737/1903315.

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The monograph is devoted to the problems of ensuring environmental safety of natural and technical systems of small river basins. The author uses a basin approach to assess the ecological state of a small mountain river, in the basin of which both surface and groundwater are intensively used. The research is based on factual material obtained during field and desk work. The complex ecological and economic characteristics of the basin of the typical small mountain river Alma of the Crimean Peninsula, the classification of the basin lands, the assessment of the degree of stress and tension of the ecological situation, performed by computational methods, are presented. Recommendations for the protection of the natural environment in the river basin are proposed. The author has developed criteria for the ecological safety of the natural and technical system of a small river depending on the current water availability for the mountainous, foothill and plain territories of the basin as the volume of permissible withdrawal of river runoff. Recommendations on improving the management system of the natural and technical system of the river basin aimed at reducing the anthropogenic impact on the catchment area, as well as recommendations and measures to restore an environmentally favorable state are presented. It is intended for specialists in the field of rational use of natural resources, researchers, university teachers, students studying in the areas of 08.03.01, 08.04.01 "Construction", 20.03.02 "Environmental management and water use", as well as a wide range of readers interested in water resources, ecology and geography.
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4

India. Dept. of Environment., red. River metamorphosis due to human intervention in the Neyyar basin, Kerala. Kariavattom, India: Dept. of Geology, University of Kerala, 1989.

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5

Josette, Garnier, i Mouchel J. -M, red. Man and river systems: The functioning of river systems at the basin scale. Dordrecht: Kluwer Academic Publishers, 1999.

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6

I, Longpré Claire, Justin Greg B, Jefferson County (Wash.). Dept. of Natural Resources. i Geological Survey (U.S.), red. Ground-water system in the Chimacum Creek basin and surface water/ground water interaction in Chimacum and Tarboo Creeks and the Big and Little Quilcene Rivers, eastern Jefferson County, Washington. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2004.

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7

Simonds, F. W. Ground-water system in the Chimacum Creek basin and surface water/ground water interaction in Chimacum and Tarboo Creeks and the Big and Little Quilcene Rivers, eastern Jefferson County, Washington. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2004.

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8

Simonds, F. W. Ground-water system in the Chimacum Creek basin and surface water/ground water interaction in Chimacum and Tarboo Creeks and the Big and Little Quilcene Rivers, eastern Jefferson County, Washington. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2004.

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9

Simonds, F. W. Ground-water system in the Chimacum Creek basin and surface water/ground water interaction in Chimacum and Tarboo Creeks and the Big and Little Quilcene Rivers, eastern Jefferson County, Washington. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2004.

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10

Simonds, F. W. Ground-water system in the Chimacum Creek basin and surface water/ground water interaction in Chimacum and Tarboo Creeks and the Big and Little Quilcene Rivers, eastern Jefferson County, Washington. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2004.

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11

Simonds, F. W. Ground-water system in the Chimacum Creek basin and surface water/ground water interaction in Chimacum and Tarboo Creeks and the Big and Little Quilcene Rivers, eastern Jefferson County, Washington. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2004.

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12

Simonds, F. W. Ground-water system in the Chimacum Creek basin and surface water/ground water interaction in Chimacum and Tarboo Creeks and the Big and Little Quilcene Rivers, eastern Jefferson County, Washington. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2004.

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13

Fraser, Andrew S. Water quality of world river basins: Global Environment Monitoring System (GEMS). Nairobi, Kenya: UNEP, 1995.

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14

United States. Soil Conservation Service. Northeast Iowa Rivers Basin study, Iowa and Minnesota: A water and related land resources study of the Northeast Iowa Rivers Basin. Des Moines, Iowa: The Services, 1986.

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15

Island Nature Trust (P.E.I.). River systems planning study for selected rivers in Prince Edward Island. Charlottetown: Island Nature Trust, 1991.

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16

D, Maddy, Macklin Mark G, Woodward Jamie C i Fluvial Archives Group, red. River basin sediment systems: Archives of environmental change. Lisse: A.A. Balkema Pub., 2001.

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17

Singh, Nater. Geomorphology of Himalayan rivers: A case study of Tawi basin. Jammu Tawi, J&K: Jay Kay Book House, 1989.

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18

Volker, Nowak Udo, red. Projectile points of the Tri-Rivers Basin: Apalachicola - Flint - Chattahoochee. Dothan, Ala: Generic Press, 1990.

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19

Davis, Shelley. Rivers run through it: Discovering the Interior Columbia River Basin. [Washington, D.C.]: U.S. Department of the Interior, Bureau of Land Management, 1998.

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20

McCullough, Dale A. A systems classification of watersheds and streams. Portland, Or: Columbia River Inter-Tribal Fish Commission, 1988.

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21

S, Parker Randolph, Geological Survey (U.S.) i United States. Bureau of Reclamation., red. Watershed and River Systems Management Program: Application to the Yakima River Basin, Washington. [Reston, Va.]: U.S. Dept. of Interior, U.S. Geological Survey, 1998.

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22

S, Parker Randolph, Geological Survey (U.S.) i United States. Bureau of Reclamation., red. Watershed and River Systems Management Program: Application to the Yakima River Basin, Washington. [Reston, Va.]: U.S. Dept. of Interior, U.S. Geological Survey, 1998.

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23

S, Parker Randolph, Geological Survey (U.S.) i United States. Bureau of Reclamation, red. Watershed and River Systems Management Program: Application to the Yakima River Basin, Washington. [Reston, Va.]: U.S. Dept. of Interior, U.S. Geological Survey, 1998.

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24

Hari, Krishna. Integrated planning of river basin system and management. Roorkee, India: INCOH Secretariat, 1997.

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25

Andres, David D. Observations of breakup in the Athabasca River Basin upstream of Fort McMurray, Alberta, 1984. Edmonton: Alberta Research Council, 1985.

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26

Woodside, M. D. Nutrients in streams and rivers in the lower Tennessee River basin. [Nashville, Tenn.]: U.S. Dept. of the Interior, U.S. Geological Survey, 2001.

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27

Brightbill, Robin A. Relation of algal biomass to characteristics of selected streams in the Lower Susquehanna River Basin. Lemoyne, Pa: U.S. Dept. of the Interior, U.S. Geological Survey, 1998.

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28

Brightbill, Robin A. Relation of algal biomass to characteristics of selected streams in the lower Susquehanna River Basin. Lemoyne, Pa: U.S. Dept. of the Interior, U.S. Geological Survey, 1998.

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29

Andres, David D. Observations of the 1985 breakup in the Athabasca River Basin upstream of Fort McMurray, Alberta. Edmonton: Alberta Research Council, 1985.

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30

Anderson, George, Jamie Pittock, Daniel Connell i Dustin Garrick. Federal rivers: Managing water in multi-layered political systems. Cheltenham: Edward Elgar, 2014.

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31

Vadas, Robert L. The concept of instream flow and its relevance to drought management in the James River Basin. Blacksburg: Virginia Water Resources Research Center, Virginia Polytechnic Institute and State University, 1993.

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32

Benson, Reed. A watershed issue: The role of streamflow protection in Northwest river basin management. [Portland, Or.]: Northwest Water Law & Policy Project, 1995.

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33

Brigham, Mark E. Stream water-quality characteristics and trends, James River basin, North Dakota, 1949-95. Bismarck, N.D: U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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34

Brigham, Mark E. Stream water-quality characteristics and trends, James River basin, North Dakota, 1949-95. Bismarck, N.D: U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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35

Brigham, Mark E. Stream water-quality characteristics and trends, James River basin, North Dakota, 1949-95. Bismarck, N.D: U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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36

Brigham, Mark E. Stream water-quality characteristics and trends, James River basin, North Dakota, 1949-95. Bismarck, N.D: U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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37

Brigham, Mark E. Stream water-quality characteristics and trends, James River basin, North Dakota, 1949-95. Bismarck, N.D: U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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38

Massachusetts. Dept. of Environmental Protection. Office of Watershed Management. Sudbury River Basin water quality survey, 1991. North Grafton, Mass: Massachusetts Dept. of Environmental Protection, Bureau of Resource Protection, Office of Watershed Management, 1994.

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39

Vaccaro, J. J. Hydrogeologic framework of the Yakima River Basin aquifer system, Washington. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2009.

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40

Lohani, Anil Kumar. Geomorphological studies of Bagmati Basin of Kosi river system. Roorkee: National Institute of Hydrology, 1993.

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41

Diaz, Gustavo E. AQUARIUS, a modeling system for river basin water allocation. Fort Collins, Colo. (240 W. Prospect Rd., Fort Collins 80526): U.S. Dept. of Agriculture, Forest Service, Rocky Mountain Forest and Range Experiment Station, 1997.

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42

Diaz, Gustavo E. AQUARIUS, a modeling system for river basin water allocation. Fort Collins, Colo. (240 W. Prospect Rd., Fort Collins 80526): U.S. Dept. of Agriculture, Forest Service, Rocky Mountain Forest and Range Experiment Station, 1997.

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43

Tanzania. Pangani Basin Water Office. Pangani River system: Future of the basin report, 2011. Moshi, Tanzania: Pangani Basin Water Board, 2011.

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44

Diaz, Gustavo E. AQUARIUS, a modeling system for river basin water allocation. Fort Collins, Colo. (240 W. Prospect Rd., Fort Collins 80526): U.S. Dept. of Agriculture, Forest Service, Rocky Mountain Forest and Range Experiment Station, 1997.

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45

Land, water, and development: Sustainable management of river basin systems. Wyd. 2. London: Routledge, 1997.

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46

White, Kathleen D. Ice jam flooding and mitigation: Lower Platte River Basin, Nebraska. Hanover, N.H: U.S. Army Cold Regions Research and Engineering Laboratory, 1996.

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47

M, Brosten Tordis, Montana. Dept. of Health and Environmental Sciences i Geological Survey (U.S.), red. Supplemental arsenic data for selected streams in the Missouri River basin, Montana, 1987. [Denver, Colo.?]: Dept. of the Interior, U.S. Geological Survey, 1987.

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48

J, Dunn William. Hoosic River basin survey: Water quality data, wastewater discharge data, 1991. North Grafton (P.O. Box 116, 40 Institute Rd., North Grafton 01536): Massachusetts Dept. of Environmental Protection, Div. of Water Pollution Control, Technical Services Section, 1992.

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49

Massachusetts. Division of Water Pollution Control. Technical Services Branch. Basin Planning Staff., red. Hoosic River basin survey: Water quality data, wastewater discharge data, 1986. [Westborough, Mass. (Westview Building, Lyman School Grounds, Westborough 01581): The Department, 1990.

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50

Boyle, Jeanne M. Traveltime, longitudinal-dispersion, reaeration, and basin characteristics of the White River, Colorado and Utah. Lakewood, Colo: U.S. Dept. of the Interior, Geological Survey, 1985.

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