Technische Universität Dresden
Nahrungsnetzbewirtschaftung in Mittelgebirgstalsperren
Abstract
dc:description.abstract"Biomanipulation" was carried out in order to try and improve the water quality of six deep reservoirs situated in the catchment area of the River Wupper. All the reservoirs are deep, dimictic soft-water lake types, covering a range from oligo-/mesotrophic to eutrophic. Although changing the fishery management only by repeated fish stocking, in combination with implementating size and bag limits for recreational fisheries, is thought to have only limited success, we decided to put this type of "Biomanipulation" into practice. This whole-lake biomanipulation experiment, covering a time scale of more than ten years, aimed to address the following questions: 1. Is such a fishery-management strategy a useful water quality management tool in deep reservoirs, not only in maintaining but also in sustaining the best water quality conditions in relation to the given nutrient concentrations? 2. What are the underlying mechanisms? With the exception of the oligotrophic Große Dhünn Reservoir, "Biomanipulation" resulted in a shift of zooplankton body-size structure to larger daphnids in all the reservoirs. The underlying switch in the size shift from Daphnia cucullata to Daphnia galeata (Bever-Reservoir, Wupper-R, Lingese-R), or only in increasing individual body sizes of the Daphnia galeata population (Vorsperre Große Dhünn), occurred suddenly but only some years after the changes in fishery management were implemented. Our records of the fish stock suggest that indirect effects, presumably resulting from predator avoidance, must be a driving force. An increase of zooplankton body-size structure always resulted in an improvement in secchi-disk depth, often accompanied by a vertical restructuring of the water column favouring the development of metalimnetic algal populations. A decrease in summer chlorophyll concentrations in the trophogenic zone was only achieved in the slightly eutrophic reservoirs. This decrease in chlorophyll concentration was always accompanied by a decrease in the total phosphorus concentration in summer, while the total phosphorus concentration in spring remained unchanged. Thus, reduced P-availability, due to an increased vertical phosphorus flux, caused algal biomass to decline.These results support predictions from the size-efficiency hypothesis (Brooks & Dodson, 1965) but not those from the trophic cascade hypothesis (Carpenter et al., 1985). Undoubtedly the results underline the importance of indirect effects with respect to a successful "Biomanipulation" as predicted from the hypothesis of Biomanipulation Efficiency Threshold of P-loading (Benndorf, 1987). In summary, implementation of a correct fishery management strategy was shown to be a useful water quality management tool, not only in maintaining but also in sustaining the best water quality conditions, in relation to the given nutrient concentrations in these deep reservoirs.
Degree
thesis:*- Level thesis:degree_level
- thesis.doctoral
- Grantor dc:publisher
- Technische Universität Dresden
- Year
- 2004
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Scharf, Wilfried
- Contributors dc:contributor
-
- Benndorf, Jürgen
- Uhlmann, Dietrich
- Mehner, Thomas