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Impact on lake development of changed agricultural watershed exploitation during the last three centuries

  • Patch/ecotone pattern in watershed, lake-river systems
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Abstract

The history of the development of Lake Hejrede Sø (Denmark) and the related history of the watershed management were studied based on analyses of macrofossil content, chemical composition and Clostridium perfringens content in sediment cores. Depth-age relations of ecological changes were established through Pb210 analyses, and a systematic search for written sources describing the watershed history was carried out.

Lake Hejrede Sø used to be a humic, acid but relatively clearwater lake with an extensive submersed vegetation. Owing to deforestation and reclamation of bogs and meadows, the accumulation of nutrients in these ecotones vanished. Subsequently, in early 1800 the lake developed into a clearwater alkaline lake, and later became more eutrophic which resulted in the decline of the submersed vegetation. At the time the annual sediment phosphorus accumulation increased more than twofold, and influx of mineral matter increased drastically. In mid-1900, submersed vegetation had disappeared. The Clostridium perfringens analysis and the historical evidence show that no sewage was discharged to the lake until mid-1900, which implies that changed agricultural watershed exploitation and ecotone reclamation during the 19th century was the cause of the increased nutrient influx, and the deterioration of the lake.

Written historical sources confirm the palaeolimnological interpretations and describe the agricultural practices responsible for the development.

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References

  • Berg, K. & I. Clemens-Petersen, 1956. Studies on the humic, acid lake Gribsø. Folia Limnol,Scand. 8: 273 pp.

    Google Scholar 

  • Bergstein-Ben Dan, T. & L. Stone, 1991. The distribution of fecal pollution indicator bacteria in Lake Kinneret. Wat. Res. 25: 263–270.

    Google Scholar 

  • Binford, M. W. & E. S. Deevey, 1983. Palaeolimnology: An historical perspective on lacustine ecosystems. Ann. Rev. Ecol. Syst. 14: 255–286.

    Google Scholar 

  • Birks, H. H., 1980. Plant macrofossils in lake sediments. Ergebnisse Limnol. 15: 60 pp.

    Google Scholar 

  • Birks, H. J. B. & H. H. Birks, 1980. Quaternary palaeoecology. Edward Arnold, London, 290 pp.

    Google Scholar 

  • Bjorn, C., 1976. The Peasantry and Agrarian Reform in Denmark. The Scandinavian Economic History Review 25: 117–137.

    Google Scholar 

  • Bjorn, C. (ed.), 1988. History of the Danish agriculture 1810–1914 (in Danish). Landbohistorisk Selskab, 430 pp.

  • COWIconsult, 1989. Former ecological state and development history in five lakes (in Danish). Københavns Amt, Copenhagen, 110 pp.

  • Dearing, J. A., H. Håkansson, B. Liedbjerg-Jöhnson, A. Persson, S. Skansjö, D. Widholm & F. El-Dahously, 1987. Lake sediments used to quantify the erosional response to land use change in southern Sweden. Oikos 50: 60–78.

    Google Scholar 

  • Dickman, M. D., H. van Dam, B. van Geel, A. G. Klink & A. van der Wijk, 1987. Acidification of a Dutch moorland pool — a palaeolimnological study. Arch. Hydrobiol. 109: 377–408.

    Google Scholar 

  • Engstrom, D. R. & E. B. Swain, 1986. The chemistry of lake sediments in time and space. In H. Loffler (ed.), Palaeolimnology IV. Developments in Hydrobiology 37. Dr W. Junk Publishers, Dordrecht: 37–44. Reprinted from Hydrobiologia 143.

    Google Scholar 

  • Hage, J. P., 1844. Contributions to the knowledge of the existing conditions of the Danish provinces in economic respect, 19. New Maribo County (in Danish). The RoyalSociety of Rural Economy, Copenhagen, 363 pp.

    Google Scholar 

  • Jeppesen, E., P. Kristensen, J. P. Jensen, M. Søndergaard, E. Mortensen & T. Lauridsen, 1991. Recovery resilience following a reduction in external phosphorus loading of shallow, eutrophic Danish lakes: duration, regulation factors and methods for overcoming resilience. Mem. Ist. ital. Idrobiol. (in press).

  • Lamb, H. L., 1984. Climate and history in northern Europe and elsewhere. In: Mörner, N.-A. & W. Karlén (eds), Climatic changes on a yearly to millenial basis. D. Reidel Publishing Company, Dordrecht: 225–240.

    Google Scholar 

  • Landbokommissionen, 1964. Report by the Rural Commission of 1960. II. About betterment (in Danish). Betækning nr. 354. Danish Ministry for Agriculture, 90 pp.

  • Larsen, J. H., 1866. Lolland og Falster, Topographically described. II (in Danish). Schuboth, Denmark. 380 pp.

    Google Scholar 

  • Likens, G. A., F. H. Bormann, N. M. Johnson, D. W. Fisher & R. S. Pierce, 1970. Effects of forest cutting and herbicide treatment on nutrient budgets in the Hubbard Brook watershed ecosystem. Ecological Monographs, 40: 23–47.

    Google Scholar 

  • Lynch, J. M. & N. J. Poole, 1979. Microbial ecology — a conceptual approach. Blackwell Scientific Publications, Oxford, 226 pp.

    Google Scholar 

  • Nilsson, M. & I. Renberg, 1990. Viable endospores of Thermoactinomyces vulgaris in lake sediments as indicators of agricultural history. Appl. envir. Microbiol. 56: 2025–2028.

    Google Scholar 

  • Pennington, W. & J. P. Lishman, 1984. The postglacial sediments of Blelham Tarn: geochemistry and palaeoecology. Arch. Hydrobiol./Suppl. 69: 1–54.

    Google Scholar 

  • Pheiffer Madsen, P. & J. Sørensen, 1979. Validation of the Lead-210 method. J. radio-anal. Chem. 54: 39–48.

    Google Scholar 

  • Polunin, N. V. C., P. L. Osborne & R. G. Totane, 1988. Environmental archive: Tropical urban development reflected in the sediment geochemistry of a flood-plain lake. Arch. Hydrobiol. 114: 199–211.

    Google Scholar 

  • Rasmussen, J. B., L. Godbout & M. Schollenberg, 1989. The humic content of lake water and its relationship to watershed and lake morphometry. Limnol. Oceanogr. 34: 1336–1343.

    Google Scholar 

  • Richardson, C. J., 1985. Mechanisms controlling phosphorus retention capacity in freshwater wetlands. Science 228: 1424–1427.

    Google Scholar 

  • Rosén, K., 1982. Supply, loss and distribution of nutrients in three coniferous forest watersheds in Central Sweden. Reports in forest ecology and forest soils, 41. Swedish University of Agricultural Sciences, Uppsala, 70 pp.

    Google Scholar 

  • Scheffer, B., 1977. Stickstoff- und Phosphorverlagerung in Nordwest-deutschen Niederungsböden und Gewässerbelastung. Geologische Jahrbuch F4: 203–243.

    Google Scholar 

  • Schindler, D. W., 1987. Detecting ecosystem responses to anthropogenic stress. Can. J. Fish. aquat. Sci. 44 (Suppl. 1): 6–25.

    Google Scholar 

  • Sorensen, D. L., S. G. Eberl & R. A. Dicksa, 1989. Clostridium perfringens as a point source indicator in non-point polluted streams. Wat.Res. 23: 191–197.

    Google Scholar 

  • Vollenweider, R. A., 1976. Advances in defining critical loading levels for phosphorus in lake eutrophication. Mem. Ist. ital. Idrobiol. 33: 53–83.

    Google Scholar 

  • Wesenberg-Lund, C., 1917. Furesø studies (in Danish with a comprehensive French summary). D. Kgl. Danske Vidensk. Selsk. Skrifter, Naturvidenskab og Matemat. afd. 8 ræekke III, 1: 1–208.

    Google Scholar 

  • Wichfeld, J., 1862. From the vicinity of Lake Marilio. II. Geognostic and prehistoric observations regarding the central basin of Laaland and its neighbourhood (in Danish). Gyldendal, Copenhagen, 77 pp.

    Google Scholar 

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Klein, T. Impact on lake development of changed agricultural watershed exploitation during the last three centuries. Hydrobiologia 251, 297–308 (1993). https://doi.org/10.1007/BF00007189

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