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Observed and projected impacts of slow cultural eutrophication on the fish assemblages of a shallow tropical African reservoir

waterfowl lake, Hydrobiologia. 280: 457-466. Hansson S., Rudstam L.G., 1990, Eutrophication and the Baltic fish communities, Ambio 19: 123-125. Holden M., Reed W., 1972, West African Freshwater Fish, Longmans, London, p. 68. Khan F.A., Ansari A.A., 2005, Eutrophication: An Ecological Vision, Bot. Rev 71(4): 449-482. Li J.X., Liao W.G., 2002, Discussion on the synthetic adjustive guidelines for the prevention and cure of eutrophication, JWARP 2(5): 4-5. Meybeck M., Helmer R., 1989, The quality

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Comprehensive Study Of Duckweed Cultivation And Growth Conditions Under Controlled Eutrophication

References: 1. TEKILE, A., KIM, I., KIM, J. 2015. Mini-review on river eutrophication and bottom improvement techniques, with special emphasis on the Nakdong river. Journal of environmental sciences , vol. 30 , pp. 113-121. 2. LENG, R. A. 1999. Duckweed: A tiny aquatic plant with enormous potential for agriculture and environment . Rome (Italy), FAO, s. 108 [cit 26.02.2015], Online: http://www.fao.org/ag/againfo/resources/documents/DW/Dw2.htm 3. Plant Finder, Lemna minor . [cit. 26.02.2015]. Online: http

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Controlling of eutrophication in aquatic environments

References Bernard J. L., Steichen M. T., 2006. Where is biological nutrient removal going now? Water Science and Technology, 53, 3: 155-164. Główny Urząd Statystyczny: Środowisko (Environment), 2009. Warszawa, GUS. Gromiec M. J., 2007. Management of eutrophication. In: Fish physiology, toxicology, and water quality. US Environmental Protection Agency. Office of Research and Development. EPA/600/ r-07/010. Washington, D. C., February 2007. Gromiec M. J

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Eutrophication parameters and Carlson-type trophic state indices in selected Pomeranian lakes

, Limnol. Rev. 2: 101-109. Rekolainen S., Mitikka S., Vuorenmaa J., Johansson M., 2005, Rapid decline of dissolved nitrogen in Finnish lakes, J. Hydrol. 304: 94-102. Seip K. L., Jeppesen E., Jensen J. P., Faafeng B., 2000, Is trophic state or regional location the strongest determinant for Chl-a/TP relationships in lakes?, Aquat. Sci. 62: 195-204. Schindler D. W., 2006, Recent advances in the understanding and management of eutrophication, Limnol. Oceanogr. 51(1, part 2): 356

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Eutrophication of the Strzeszyńskie Lake: Sources, Consequences and Remedies

23, 2015 10. http://www.poznan.pl/mim/main/widzialnosc-krazka-secchiego,p,30353,30360,30363.html 11. Sapek A., Sapek B.: (2011) Fosfor w opadzie atmosferycznym (Phosphorus in rainfall - in Polish). Ochr. Środ. i Zas. Nat., 50, 122-133 12. Schindler D. W.: (1974) Eutrophication and recovery in experimental lakes: implications for lake management. Science 184, 897-899 13. Wang H.: (2009) Mitigation of lake eutrophication: Loosen nitrogen control and focus on phosphorus abatement. Progress in Natural

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Modelling and Mapping of Critical Loads of Acidification and Eutrophication on Forest Ecosystems in Latvia

Modelling and Mapping of Critical Loads of Acidification and Eutrophication on Forest Ecosystems in Latvia

The Very Simple Dynamic model (VSD), which has been developed as the simplest extension of steady-state models, has been used for dynamic modelling of critical loads to forest ecosystems. The model consisting of a set of mass balance equations describes the soil input and output data relationships and fluxes, and soil properties. The mapping of critical loads of acidity and eutrophication effects is performed on 25562 deciduous, coniferous and mixed forest soil receptor polygons (area > 0.01 km2). The results have been mapped in the geographical units of EMEP grid (50 × 50 km2).

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The evaluation of eutrophication level of Kozlowa Gora dam reservoir base on assemblages planktonic algae / Ocena stopnia zeutrofizowania zbiornika Kozłowa Góra na podstawie zbiorowisk glonów planktonowych

. Przegląd Geodezyjny. 2007;8:12-14. [17] Kajak Z. Hydrobiology - Limnology. Ecosystems of Inland Water. Warszawa: Wyd. Nauk. PWN; 2001. [18] Kasza H. The Dam Reservoirs. Meaning - Eutrophication - Protection. Bielsko-Biala: Publishing company ATH; 2009. [19] Lepistö L, Rosenström U. The most typical phytoplankton taxa in four types of Boreal lakes. Hydrobiologia. 1998;369/370:89-97. [20] Reynolds CS. The plant life of the pelagic. Verh Internat Verein Limnol. 1996;26:97-113. [21] Wilk

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The Impact of Climate Change on the Eutrophication of Water Ecosystems in the Southern Part of the Republic of Moldova

Abstract

The accelerating pace of climate change mainly on the adjacent territory of the Danube basin, contribute to the essential eutrophication of water basins within the region. The results indicate that air temperature recorded a double warming compared to territories from the central part of the country. On the background the accelerated warming there is a declining trend and of annual rainfall amounts. These climate changes, especially in recent decades have led to significant increase of water temperature in rivers and lakes. Thus, it constituted in the years 1990-2000 by 0.7 and 1.50C compared to the period 1980-1990, and by 1.0...2,00C accordingly in the years 2000-2013 compared to the previous decade. The significant increase of temperature during the last decade contributed to the intensification of algae growth and together with other factors contributed to the increase by about 20% of the nitrogen content, thus ensuring the ―flowering‖ with 50% of the water bodies’ volume.

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Response of Freshwater Bloom-Forming Planktonic Cyanobacteria to Global Warming and Nutrient Increase

heterocystic nitrogenfixing cyanobacteria: the dependence on colony size and zooplankton grazing. - Limnology and Oceanography, 49: 2171-2178. Codd G.A., 2000: Cyanobacterial toxins, the perception of water quality, and the priorization of eutrophication control. - Ecological Engineering, 16(1): 51-60. Dyhrman S., Ammerman J., Van Mooy B., 2007: Microbes and the marine phosphorus cycle. - Oceanography, 20: 110-116. Dokulil M.T., Teubner K., 2000. Cyanobacterial dominance in lakes. - Hydrobiologia, 438: 1

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The Use of Constructed Wetlands for Nitrogen Removal from Agricultural Drainage: a Review

. Ecological Engineering. doi: 10.1016/j. ecoleng.2016.01.088. Arheimer B, Torstensson G, Wittgren HB (2004): Landscape planning to reduce coastal eutrophication: agricultural practices and constructed wetlands. Landscape and Urban Planning, 67, 205-215. doi: 10.1016/S0169-2046(03)00040-9. Baker LA (1992): Introduction to nonpoint source pollution in the United States and prospects for wetland use. Ecological Engineering, 1, 1-26. doi: 10.1016/0925-8574(92)90023-U. Beutel MW, Newton CD, Brouillard ES, Watts RJ (2009

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