The Anglesey lakes, Wales, UK - Changes in trophic status of three standing waters as inferred from diatom transfer functions and their implications for conservation
1. A diatom‐phosphorus (P) transfer function was applied to fossil diatom assemblages in sediment cores from three Anglesey lakes of conservation importance, in order to reconstruct quantitatively the recent history of total P (TP) concentrations for each lake. The results indicate that all three la...
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Published in | Aquatic conservation Vol. 6; no. 2; pp. 81 - 92 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Chichester
John Wiley & Sons, Ltd
01.06.1996
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Abstract | 1. A diatom‐phosphorus (P) transfer function was applied to fossil diatom assemblages in sediment cores from three Anglesey lakes of conservation importance, in order to reconstruct quantitatively the recent history of total P (TP) concentrations for each lake. The results indicate that all three lakes have been eutrophic throughout the period represented by the cores.
2. The model suggests that Llyn Coron and Llyn Dinam experienced gradual increases in TP concentration (core base to 20 cm), followed by marked, rapid increases from the time represented by a sediment depth of 20 cm (early 1970s for Llyn Coron), most probably associated with agricultural intensification.
3. A recent decline in TP concentration at Llyn Coron and Llyn Dinam, associated with reductions in external P loading, is indicated by the model, although current levels are still considerably higher than those estimated for the base of the cores (Dinam: current=112 μg L−1; base=65 μg L−1, and Coron: current=156 μg L−1; base=70 μg L−1).
4. No clear changes in diatom‐inferred TP concentration were observed for Llyn Penrhyn over the 70 year period represented by the core. However, the reconstruction for this lake is inaccurate because: (a) the sediment record appears to be disturbed, and (b) unlike Llyn Coron and Llyn Dinam, diatom preservation and modern analogues are poor, and the present TP concentration (>1 mg L−1) is beyond the TP range of the model.
5. Continued control of the external TP loads from agricultural sources is essential to prevent further increases in lake TP concentrations at Llyn Coron and Llyn Dinam. Given the problems with the Llyn Penrhyn data, it is not possible to draw any firm conclusions regarding future site management. However, the impact of the recent installation of a phosphate stripping plant at the local sewage works should be monitored, to identify whether a reduction in external P loading results in a decrease in epilimnetic TP concentrations, and in turn whether this causes changes to the biological community structure of the lake. |
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AbstractList | 1. A diatom‐phosphorus (P) transfer function was applied to fossil diatom assemblages in sediment cores from three Anglesey lakes of conservation importance, in order to reconstruct quantitatively the recent history of total P (TP) concentrations for each lake. The results indicate that all three lakes have been eutrophic throughout the period represented by the cores.
2. The model suggests that Llyn Coron and Llyn Dinam experienced gradual increases in TP concentration (core base to 20 cm), followed by marked, rapid increases from the time represented by a sediment depth of 20 cm (early 1970s for Llyn Coron), most probably associated with agricultural intensification.
3. A recent decline in TP concentration at Llyn Coron and Llyn Dinam, associated with reductions in external P loading, is indicated by the model, although current levels are still considerably higher than those estimated for the base of the cores (Dinam: current=112 μg L−1; base=65 μg L−1, and Coron: current=156 μg L−1; base=70 μg L−1).
4. No clear changes in diatom‐inferred TP concentration were observed for Llyn Penrhyn over the 70 year period represented by the core. However, the reconstruction for this lake is inaccurate because: (a) the sediment record appears to be disturbed, and (b) unlike Llyn Coron and Llyn Dinam, diatom preservation and modern analogues are poor, and the present TP concentration (>1 mg L−1) is beyond the TP range of the model.
5. Continued control of the external TP loads from agricultural sources is essential to prevent further increases in lake TP concentrations at Llyn Coron and Llyn Dinam. Given the problems with the Llyn Penrhyn data, it is not possible to draw any firm conclusions regarding future site management. However, the impact of the recent installation of a phosphate stripping plant at the local sewage works should be monitored, to identify whether a reduction in external P loading results in a decrease in epilimnetic TP concentrations, and in turn whether this causes changes to the biological community structure of the lake. A diatom-phosphorus (P) transfer function was applied to fossil diatom assemblages in sediment cores from three Anglesey lakes of conservation importance, in order to reconstruct quantitatively the recent history of total P (TP) concentrations for each lake. The results indicate that all three lakes have been eutrophic throughout the period represented by the cores. The model suggests that Llyn Coron and Llyn Dinam experienced gradual increases in TP concentration (core base to 20 cm), followed by marked, rapid increases from the time represented by a sediment depth of 20 cm (early 1970s for Llyn Coron), most probably associated with agricultural intensification. A recent decline in TP concentration at Llyn Coron and Llyn Dinam, associated with reductions in external P loading, is indicated by the model, although current levels are still considerably higher than those estimated for the base of the cores (Dinam: current = 112 mu g/L; base = 65 mu g/L, and Coron: current = 156 mu g/L: base = 70 mu g/L). No clear changes in diatom-inferred TP concentration were observed for Llyn Penrhyn over the 70 year period represented by the core. However, the reconstruction for this lake is inaccurate because: (a) the sediment record appears to be disturbed, and (b) unlike Llyn Coron and Llyn Dinam, diatom preservation and modern analogues are poor, and the present TP concentration (>1 mg/L) is beyond the TP range of the model. Continued control of the external TP loads from agricultural sources is essential to prevent further increases in lake TP concentrations at Llyn Coron and Llyn Dinam. Given the problems with the Llyn Penrhyn data, it is not possible to draw any firm conclusions regarding future site management. However, the impact of the recent installation of a phosphate stripping plant at the local sewage works should be monitored, to identify whether a reduction in external P loading results in a decrease in epilimnetic TP concentrations, and in turn whether this causes changes to the biological community structure of the lake. |
Author | JUGGINS, S. BENNION, H. ANDERSON, N. J. HAWORTH, E. Y. MONTEITH, D. T. ALLOTT, T. E. H. DUIGAN, C. A. |
Author_xml | – sequence: 1 givenname: H. surname: BENNION fullname: BENNION, H. organization: Environmental Change Research Centre, Department of Geography, University College London, 26 Bedford Way, London WC1H 0AP, UK – sequence: 2 givenname: C. A. surname: DUIGAN fullname: DUIGAN, C. A. organization: Directorate of Science and Policy Development, Cyngor Cefn Gwlad Cymru/Countryside Council for Wales, Plas Penrhos, Ffordd Penrhos, Bangor, Gwynedd LL57 2LQ, UK – sequence: 3 givenname: E. Y. surname: HAWORTH fullname: HAWORTH, E. Y. organization: Institute of Freshwater Ecology, Windermere Laboratory, Far Sawrey, Ambleside, Cumbria LA22 0LP, UK – sequence: 4 givenname: T. E. H. surname: ALLOTT fullname: ALLOTT, T. E. H. organization: Environmental Change Research Centre, Department of Geography, University College London, 26 Bedford Way, London WC1H 0AP, UK – sequence: 5 givenname: N. J. surname: ANDERSON fullname: ANDERSON, N. J. organization: Geobotany Division, Danish Geological Survey, Thoravej 8, DK-2400, Copenhagen NV, Denmark – sequence: 6 givenname: S. surname: JUGGINS fullname: JUGGINS, S. organization: Department of Geography, University of Newcastle, Newcastle upon Tyne NE1 7RU, UK – sequence: 7 givenname: D. T. surname: MONTEITH fullname: MONTEITH, D. T. organization: Environmental Change Research Centre, Department of Geography, University College London, 26 Bedford Way, London WC1H 0AP, UK |
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Cites_doi | 10.1111/j.1365-2427.1995.tb00887.x 10.2134/jeq1994.00472425002300030006x 10.1007/BF00006480 10.1007/BF00682511 10.1007/BF00026729 10.1111/j.1365-2427.1990.tb00266.x 10.1098/rstb.1990.0062 10.1021/ba-1994-0237.ch001 10.1111/j.1365-2427.1994.tb01153.x 10.1080/0269249X.1995.9705326 10.1111/j.1365-2427.1992.tb00551.x 10.1007/BF00028046 10.1016/S0380-1330(81)72063-X 10.1098/rstb.1978.0001 10.1111/j.1365-2427.1987.tb01062.x 10.1002/aqc.3270020202 10.1007/BF00024907 10.1007/BF00044408 10.1016/0169-5347(93)90219-F 10.1007/978-3-642-79464-3_19 10.1002/aqc.3270050304 10.4319/lo.1967.12.3.0513 10.1002/(SICI)1099-0755(199603)6:1<31::AID-AQC173>3.0.CO;2-S 10.1007/BF00026730 10.1002/(SICI)1099-0755(199606)6:2<61::AID-AQC181>3.0.CO;2-Q 10.1016/S0169-5347(00)89019-9 10.1111/j.1365-2427.1995.tb00901.x 10.1007/BF00050761 10.1130/SPE171-p1 10.1007/BF00006028 |
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Snippet | 1. A diatom‐phosphorus (P) transfer function was applied to fossil diatom assemblages in sediment cores from three Anglesey lakes of conservation importance,... A diatom-phosphorus (P) transfer function was applied to fossil diatom assemblages in sediment cores from three Anglesey lakes of conservation importance, in... |
SourceID | proquest crossref wiley istex |
SourceType | Aggregation Database Publisher |
StartPage | 81 |
SubjectTerms | Freshwater |
Title | The Anglesey lakes, Wales, UK - Changes in trophic status of three standing waters as inferred from diatom transfer functions and their implications for conservation |
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