Details

Title

Temporal and spatial variability in concentrations of phosphorus species under thermal pollution conditions of a dam reservoir – the Rybnik Reservoir case study

Journal title

Archives of Environmental Protection

Yearbook

2017

Volume

vol. 43

Issue

No 3

Authors

Keywords

phosphorus speciation ; bottom sediments ; dam – reservoirs ; thermal pollution

Divisions of PAS

Nauki Techniczne

Publisher

Polish Academy of Sciences

Date

2017.09.30

Type

Artykuły / Articles

Identifier

DOI: 10.1515/aep-2017-0022 ; ISSN 2083-4772 ; eISSN 2083-4810

Source

Archives of Environmental Protection; 2017; vol. 43; No 3

References

Zhou (2000), Long - term changes of nitrogen and phosphorus loadings to a large lake in North - West, Water Research, 922. ; Kostecki (2000), The suspended solids as an element of pollution of anthropogenic water ecosystem for example of Dzierżno Duże dam - reservoir of Protection in Polish, Archives Environmental, 26, 75. ; Smal (2013), Nitrogen and phosphorus in bottom sediments of two small dam reservoirs, Polish Journal of Environmental Studies, 22, 1479. ; Gawrońska (2008), The effectiveness of the phosphorus inactivation methods in reducing the trophy of lakes of different morphometric and hydrological features, Review, 7, 27. ; Zhou (2001), Ch Evaluation of phosphorus bioavailability in sediments of three contrasting lakes in China and the UK pp, Chemosphere, 221. ; Kostecki (2002), Atmospheric precipitation as the element of pollutants budget on dam - reservoirs of the Kłodnica Water Junction of Environmental Protection in Polish, Archives, 28, 45. ; Kostecki (2004), Anthropopression impact on the formation of thermal structure on the Rybnik dam - reservoir of Environmental Protection in Polish, Archives, 41. ; Zhou (1999), Simulated studies on degradation of organic matter and release of CO and CH in sediment from West Lake under various oxygen - supply conditions, Acta, 19, 11. ; Pettersson (1988), Phosphorus in sediments speciation and analysis, Hydrobiologia, 170. ; Kostecki (2010), The role of shallow lowland dam reservoir in the river - lake - river system Part II Changes and equation of phosphorus in the Słupsko Dam - Reservoir Inżynieria i in Polish, null, 13, 245. ; Aydin (2009), sequential extraction to determine the distribution of phosphorus in the seawater and marine surface sediment of, Journal Hazardous Materials, 168. ; Wiliams (1980), Availability to Scenedesmus quadricauda of different forms of phosphorus in sedimentary materials from the Great and, Limnology Oceanography, 25, 1. ; Kostecki (2003), Allocation and transformation of selected pollutants in reservoirs of Kłodnica River Water - Junction system and The Canal Gliwice Studies in Polish, null. ; Wang (null), Distribution characteristics of phosphorus in the sediments and overlying water of Poyang One, null, 10, 2015. ; Kaiserli (2002), Phosphorus fractionation in lake sediments, Chemosphere, 1147. ; Sondergaard (1988), Seasonal variations in the loosely sorbed phosphorus fraction of the sediment of a shallow and hypereutrophic lake Water, Environmental Geology Science, 11, 115. ; Kostecki (2005), a The thermal conditions specificity of Rybnik reservoir as a result of discharge of heated water in Polish, null, 110. ; Kowalczewska (null), Spatial and seasonal changes of phosphorus internal loading in two lakes with different trophy, Ecological Engineering, 2015. ; Aimin (2005), Phosphorus adsorption on natural sediments : Modelling and effect of pH and sediment composition, Water Research, 1245. ; Bartoszek (2007), Phosphorus release from the bottom sediment, null, 240. ; Sharpley (1991), The measurement of bioavailable phosphorus in agricultural runoff Environmental Quality, Journal, 20, 235. ; Bostrom (1998), Bioavailability of different phosphorus forms in freshwater systems, Hydrobiologia, 170. ; Kostecki (2008), of polycyclic aromatic hydrocarbons in bottom sediments in presence of calcium peroxide in Polish, Biodegradation, 278. ; Kostecki (2005), About the importance and necessity of protecting the anthropogenic water reservoirs of the Western Water Node of the Upper Silesia Industrial District in Polish, null, 9, 193. ; Stawecki (2004), Seasonal changes in phosphorus concentration in the heat waters of Lake, Review, 249. ; Smal (null), Quantity and quality of organic carbon in bottom sediments of two upland dam reservoirs in Environmental Protection, Engineering, 2015. ; Olsen (1954), Estimation of available phosphorus in soils by extraction with sodium bicarbonate Circular United States Department of Agriculture, null. ; Kowalczewska (2005), Spatial and seasonal variation of phosphorus fraction in bottom sediments of the hypertrophic Swarzędzkie, Review, 123. ; Siuda (2001), Enzymatic regeneration of orthophosphate in lake water in Polish, null, 40, 187. ; Kostecki (2013), The successful results of Pławniowice reservoir ( Upper Silesia Region South of restoration by hypolimnetic withdrawal of Environmental Protection, Archives, 39, 17. ; Dunalska (2014), Ecosystem metabolism in a lake restored by hypolimnetic withdrawal, Ecological Engineering, 73. ; Frankowski (2002), Phosphorus in bottom sediments of Pomerania Bay altic and, Coastal Shelf Science, 1027. ; (1978), Water and Sewage Determination of the dry residue residue on ignition loss on ignition and solute substances mineral solute substances and volatile solute substances in Polish, null, 04541. ; Koszelnik (2007), Atmosphere deposition as a source of nitrogen and phosphorus loads into Rzeszow reservoir Environmental Protection, Engineering, 33, 157. ; Gonsiorczyk (1998), Phosphorus - binding forms in the sediment of an oligotrophic and a eutrophic hardwater lake of the Baltic lake district Water Science of Technology, null, 37. ; Sapek (2011), Phosphorus in atmospheric deposition i in Polish, null, 122. ; Kostecki (2014), Anthropogenic water reservoir Pławniowice restoration by hypolimnetic withdrawal method : limnological study Studies in Polish, null. ; Kostecki (2002), Nitrogen and phosphorus compounds in the water and bottom sediments of Gliwice Channel of Protection in Polish, Archives Environmental, 28, 71.

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