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Mowing Submerged Macrophytes in Shallow Lakes with Alternative Stable States: Battling the Good Guys?
Kuiper, Jan J; Verhofstad, Michiel J J M; Louwers, Evelien L M; Bakker, Elisabeth S; Brederveld, Robert J; van Gerven, Luuk P A; Janssen, Annette B G; de Klein, Jeroen J M; Mooij, Wolf M.
Afiliación
  • Kuiper JJ; Department of Aquatic Ecology, Netherlands Institute of Ecology, P.O. Box 50, Wageningen, 6700 AB, The Netherlands. jankuiper87@gmail.com.
  • Verhofstad MJ; Aquatic Ecology and Water Quality Management Group, Department of Environmental Sciences, Wageningen University, P.O. Box 47, Wageningen, 6700 AA, The Netherlands. jankuiper87@gmail.com.
  • Louwers EL; Department of Aquatic Ecology, Netherlands Institute of Ecology, P.O. Box 50, Wageningen, 6700 AB, The Netherlands.
  • Bakker ES; Department of Aquatic Ecology, Netherlands Institute of Ecology, P.O. Box 50, Wageningen, 6700 AB, The Netherlands.
  • Brederveld RJ; Witteveen+Bos, P.O. Box 233, Deventer, 7400 AV, The Netherlands.
  • van Gerven LP; Ecology & Biodiversity, Institute of Environmental Biology, Utrecht University, P.O. Box 80.084, 3508 TB, Utrecht, The Netherlands.
  • Janssen AB; Department of Aquatic Ecology, Netherlands Institute of Ecology, P.O. Box 50, Wageningen, 6700 AB, The Netherlands.
  • de Klein JJ; Witteveen+Bos, P.O. Box 233, Deventer, 7400 AV, The Netherlands.
  • Mooij WM; Department of Aquatic Ecology, Netherlands Institute of Ecology, P.O. Box 50, Wageningen, 6700 AB, The Netherlands.
Environ Manage ; 59(4): 619-634, 2017 Apr.
Article en En | MEDLINE | ID: mdl-28044182
ABSTRACT
Submerged macrophytes play an important role in maintaining good water quality in shallow lakes. Yet extensive stands easily interfere with various services provided by these lakes, and harvesting is increasingly applied as a management measure. Because shallow lakes may possess alternative stable states over a wide range of environmental conditions, designing a successful mowing strategy is challenging, given the important role of macrophytes in stabilizing the clear water state. In this study, the integrated ecosystem model PCLake is used to explore the consequences of mowing, in terms of reducing nuisance and ecosystem stability, for a wide range of external nutrient loadings, mowing intensities and timings. Elodea is used as a model species. Additionally, we use PCLake to estimate how much phosphorus is removed with the harvested biomass, and evaluate the long-term effect of harvesting. Our model indicates that mowing can temporarily reduce nuisance caused by submerged plants in the first weeks after cutting, particularly when external nutrient loading is fairly low. The risk of instigating a regime shift can be tempered by mowing halfway the growing season when the resilience of the system is highest, as our model showed. Up to half of the phosphorus entering the system can potentially be removed along with the harvested biomass. As a result, prolonged mowing can prevent an oligo-to mesotrophic lake from becoming eutrophic to a certain extent, as our model shows that the critical nutrient loading, where the lake shifts to the turbid phytoplankton-dominated state, can be slightly increased.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Fitoplancton / Lagos / Ecosistema / Conservación de los Recursos Naturales / Hydrocharitaceae / Modelos Teóricos Idioma: En Revista: Environ Manage Año: 2017 Tipo del documento: Article País de afiliación: Países Bajos

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Fitoplancton / Lagos / Ecosistema / Conservación de los Recursos Naturales / Hydrocharitaceae / Modelos Teóricos Idioma: En Revista: Environ Manage Año: 2017 Tipo del documento: Article País de afiliación: Países Bajos