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Hydrobiological Journal
SJR: 0.227 SNIP: 0.901 CiteScore™: 0.5

ISSN Imprimer: 0018-8166
ISSN En ligne: 1943-5991

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Hydrobiological Journal

DOI: 10.1615/HydrobJ.v56.i4.80
pages 103-120

Hydrological and Hydrochemical Regime of the Dnieper Reservoirs

V. I. Vyshnevsky
National Aviation University Kyiv, Ukraine

RÉSUMÉ

The state of the Dnieper reservoirs was characterized based on monitoring data. It has been found that in recent decades water temperature significantly increased. This phenomenon was accompanied by a decrease in the duration of ice period, and also by a decrease in ice thickness. The peculiarities of hydrochemical regime and its annual dynamics were studied in each reservoir. It has been shown that during a year hydrochemical indices varied over a wide range.

RÉFÉRENCES

  1. Vyshnevsky, V.I. 2011. Rika Dnipro. (The Dnieper River.) Kyiv, Interpres LTD Press. 384 pp. [Ukr.].

  2. Vyshnevsky, V.I., S.A. Shevchuk & O.Y. Kravtsova. 2017. Regularities of changes in water quality in the Dnieper River. Melioratsiya i Vodne Gospodarstvo 106: 33-42. [Ukr.].

  3. Vyshnevsky, V.I. & S.A. Shevchuk. 2018. Vykorystannya danykh dystantsiynogo zonduvannya Zemli u doslidzhennyakh vodnykh obyektiv Ukrayiny. (Use of the data of the Earth remote sensing in studies ofwater bodies ofUkraine.) Kyiv, Interpres LTD Press. 116 pp. [Ukr.].

  4. Gidrologiya i gidrokhimiya Dnepra iyego vodokhranilishch. (Hydrology and hydrochemistry of the Dnieper River and its reservoirs.) 1989. /Ed. by M.A. Shevchenko. Kiev, Naukova Dumka Press. 216 pp. [Rus.].

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  10. Selezneva, A.V., K.V. Bespalova & V.A. Seleznev. 2018. Dissolved inorganic phosphorus content in the water of the Kuybyshev Reservoir. Vodnoye Khozyaystvo Rossii 2: 35-43. [Rus.].

  11. Shcherbak, V.I. 2019. Response of phytoplankton of the Kiev Reservoir to the increase in summer temperatures. Hydrobiol. J. 55(1): 18-35.

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