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- W4231781738 abstract "Research Article| February 01 1996 Modelling impact of urban and upstream nonpoint sources on eutrophication of the Milwaukee River Pavel Hajda; Pavel Hajda Search for other works by this author on: This Site PubMed Google Scholar Vladimir Novotny Vladimir Novotny Search for other works by this author on: This Site PubMed Google Scholar Water Sci Technol (1996) 33 (4-5): 153–158. https://doi.org/10.2166/wst.1996.0499 Views Icon Views Article contents Figures & tables Video Audio Supplementary Data Share Icon Share Twitter LinkedIn Tools Icon Tools Cite Icon Cite Permissions Search Site Search nav search search input Search input auto suggest search filter All ContentAll JournalsThis Journal Search Advanced Search Citation Pavel Hajda, Vladimir Novotny; Modelling impact of urban and upstream nonpoint sources on eutrophication of the Milwaukee River. Water Sci Technol 1 February 1996; 33 (4-5): 153–158. doi: https://doi.org/10.2166/wst.1996.0499 Download citation file: Ris (Zotero) Reference Manager EasyBib Bookends Mendeley Papers EndNote RefWorks BibTex This paper describes a study conducted to evaluate the impact of the absence vs. the presence of the North Avenue Damin Milwaukee, Wisconsin, on water quality in the Milwaukee River in terms of conventional constituents, such as DO, chlorophyll a, BOD, and nutrients (N and P). Phytoplanktonic primary production had been recognized earlier as a link between mostly nonpoint nutrient loads to the Milwaukee River and degradation of water quality in the River. A mathematical model of a relevant section of the River was used in the study to estimate the effect of the removal of the Dam on this primary production link. The authors established the model using WASP, which is USEPA's widely used modelling package. The modelled extent of the River included both shallow, productive upstream reaches as well as impounded downstream sections. In the impounded reach of the River where the Dam is located, the simulated removal of the Dam (1) replaced net phytoplankton decay with net phytoplankton growth because of improved light conditions and limited settling; (2) substantially increased the concentration of DO because of the increased photosynthetic production and reduced benthic consumption; and (3) somewhat increased bottle BOD5 because of the elevated phytoplankton levels. The simulated removal of the Dam eliminated the negative effects of eutrophication at the site while possibly shifting the potential for these effects further downstream towards Lake Michigan. Dissolved oxygen, eutrophication, water quality impact, water quality models This content is only available as a PDF. © IWA Publishing 1996 You do not currently have access to this content." @default.
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- W4231781738 title "Modelling impact of urban and upstream nonpoint sources on eutrophication of the Milwaukee River" @default.
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