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Titlebook: Lake Mcilwaine; The Eutrophication a Jeffrey A. Thornton,W. K. Nduku (Deputy Director) Book 1982 Dr W. Junk Publishers 1982 Eutrophication.

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Water chemistry and nutrient budgetsriod it is nevertheless reasonable to say that the chemical limnology of the lake is well known. The first studies were conducted in the early 1960s as the lake entered a mesotrophic phase and subsequent studies have traced the chemical environment of the lake progressively through eutrophy and hype
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An SEM study of bacteria and Zooplankton food sources in Lake McIlwainehe present volume data are presented on various aspects of the abiotic and biotic components of Lake McIlwaine. The present study was an initial attempt to examine some of the inter-relationships between the various components of the lake using a scanning electron microscope (SEM). While most compon
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Zooplankton and secondary productionund . Richard to be dominant for most of the year, particularly during late winter and spring (July to December) when populations of between 50 and 275 x 10. m. were observed (Fig. 5, Munro, 1966). More recently Magadza (1977a) has examined the Zooplankton of the lake and has noted the absence of ma
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Aquatic macrophytes and ,rophyte where the plants were present. Relatively few areas of the lake shore were free of macrophytes (Fig. 13), most of these being granite outcrops or steep sand and gravel shores in the main lake basin. Munro (1966) identified the major species of aquatic plants in the impoundment as . sp., . sp
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The benthic fauna of Lake McIlwaineand a greater variety of kinds and numbers than any other community (Reid, 1961). They play an important role as decomposers in the nutrient cycle of a lake, being largely detritivores and consumers of particulate organic matter. They are also important as fish food and can be useful indicators of p
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