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The chemistry of water and bottom sediments in relation to zooplankton biocenosis in small agricultural ponds

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study analyzed the chemistry and structure of planktonic fauna communities in small water bodies located within agricultural areas of different levels of anthropogenic transformation in the Wielkopolska region. Distance from farm buildings was a decisive factor when choosing the bodies of water for this study. A distinctive feature of the chemical characteristics of the examined water bodies was a high concentration of biogenic substances. The presence of biologically available mineral elements stimulated the development of algae, which was reflected in high concentrations of chlorophyll. High trophic conditions in the waters of the investigated ponds were also confirmed when analyzing the zooplankton community structure.
Rocznik
Strony
85--96
Opis fizyczny
bibliogr. 21 poz., tab., wykr.
Twórcy
autor
  • Department of Water Protection, Faculty of Biology, Adam Mickiewicz University of Poznań, ul. Umultowska 89, 61-614 Poznań, Poland, tjoniak@wp.pl
Bibliografia
  • 1.Asaeda T., Trung V.K., Manatunge J., 2000, Modelling the effects of macrophytes growth and decomposition on the nutrient budget in shallow lakes, Aquat. Bot. 68: 217-237
  • 2.Blindow I., 1987, The composition and density of epiphyton on several species of submerged macrophytes - the neutral substrate hypothesis tested, Aquat. Bot. 29, 157-168
  • 3.Carlson R.E., 1977, A trophic state index for lakes, Limnol. Oceanogr. 22, 361-369
  • 4.Carpenter S.R., Lodge D.M., 1986, Effects of submersed macrophytes on ecosystem processes, Aquat. Bot. 26, 341-370
  • 5.Dobrzański B., Zawadzki S., 1981, Pedology, PWR, Warszawa, 613 pp,
  • 6.Dondajewska R., 2008, Internal phosphorus loading from bottom sediments of a shallow preliminary reservoir, Oceanol. Hydrobiol. Stud., 37: 89-97
  • 7.Fairchild G.W., Anderson J.N., Velinsky D.J., 2005, The trophic state 'chain of relationships' in ponds: does size matter? Hydrobiologia 539, 35-46
  • 8.Gelbrecht J., Lengsfeld H., Pöthig R., Opitz D., 2005, Temporal and spatial variation of phosphorus input, retention and loss in a small catchment of NE Germany, J. Hydrol., 304, 151-165
  • 9.Gołdyn R., 2000, Changes in biological and physical-chemical parameters of river water quality as a result of its damming in preliminary lowland reservoirs, A. Mickiewicz University Press, Poznań, 185 pp.
  • 10.Hermanowicz W., Dojlido J., Dożańska W., Koziorowski B., Zerbe J., 1999, The physicochemical analyses of water and wastewater, Arkady, Warszawa, 556 pp.
  • 11.Hillbricht-Ilkowska A., 2005, The lakes and after-lake landscape protection - problems, processes, perspective, Kosmos 54 (2-3), 285-302
  • 12.Irfanullah H., Moss B., 2005, Effects of pH and predation by Chaoborus larvae on the plankton of a shallow and acidic forest lake, Freshwat. Biol. 50, 1913-1926
  • 13.Jeppesen E., Søndergaard Ma, Søndergaard Mo., Christoffersen K., 1998, The structuring role of submerged macrophytes in lakes, Springer, Berlin-New York
  • 14.Joniak T., Kuczyńska-Kippen N., Nagengast B., 2006, The chemistry of waters of small water bodies in the agricultural landscape of the western Wielkopolska region, TEKA Kom. Ochr. Kszt. Środ. Przyr. 3, 60-65
  • 15.Joniak T., Kuczyńska-Kippen N., Nagengast B., 2007, The role of aquatic macrophytes in microhabitatual transformation of physical-chemical features of small water bodies, Hydrobiologia 584, 101-109
  • 16.Kajak Z., 2001, Hydrobiology-Limnology. Inland water ecosystems, PWN, Warszawa, 360 pp.
  • 17.Moss M., 1990, Engineering and biological approaches to the restoration from eutrophication of shallow lakes in which aquatic plant communities are important components, Hydrobiologia 200/201, 367-377
  • 18.Oertli B., Auderset J.D., Castella E., Juge R., Cambin D., Lachavanne J.B., 2002, The relationship between pond area and biodiversity, Biol. Conserv. 104, 59-70
  • 19.Sobczyński T., Joniak T., 2008, The water chemistry variability in lake vertical profile as the effect of biocenosis and bottom sediments interactions, Ecology and Technology 16 (4), 170-176
  • 20.Sondergaard M., Jensen J.P., Jeppesen E., 2003, Role of sediment and internal loading of phosphorus in shallow lakes, Hydrobiologia 506-509, 135-145
  • 21.Szpakowska B., 1999, Occurrence and role of organic compounds dissolved in surface and ground waters of agricultural landscape, Nicolai Copernici University Press, Toruń, 110 pp.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0001-0066
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