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Titlebook: Lake Naivasha, Kenya; Papers submitted by David M. Harper,R. R. Boar,P. Hickley Book 2002 Springer Science+Business Media Dordrecht 2002 B

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The physical attributes of the Lake Naivasha catchment rivers, Catchment rivers have never previously been surveyed. Valley topography, precipitation patterns and geology create a diversity of river systems draining into Lake Naivasha. Semi-quantitative assessment using the River Habitat Survey technique demonstrates a diversity of habitats and erosion/sedimen
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Aspects of the biodiversity of the rivers in the Lake Naivasha catchment,iver corridors appears most strongly linked with altitude and topography, although some species have an affinity with river edges. A distinct dry land/savannah flora is represented close to river channels in the lower, temporary rivers, while other plant species are ubiquitous. More physically diver
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Phosphorus inputs to Lake Naivasha, Kenya, from its catchment and the trophic state of the lake,lake itself is the focus for an intensive horticultural industry based upon irrigation from the lake. The Malewa, however, is relatively independent of the impact of industry, and so its contribution to eutrophication of the lake was evaluated. Two periods of study, a very wet-dry and a ‘normal’ wet
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Nutrient control of phytoplankton production in Lake Naivasha, Kenya,of primary production is more important than grazing (top-down) control. Experimental nutrient enrichment was used to investigate bottom-up control in more detail. Minor nutrients were not found to be limiting, whilst nitrogen was more limiting than phosphorus with an algal preference for ammonium o
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Impacts of the C, sedge , L. on carbon and water fluxes in an African wetland,north-west shore of Lake Naivasha, Kenya. The fluxes of CO. and H.O vapour between the papyrus swamp and the atmosphere were large but variable, depending on the hydrology of the wetland system and the condition of the vegetation. These measurements, combined with simulation modelling of annual flux
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