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Spatial identification of critical nutrient loads of large shallow lakes: Implications for Lake Taihu (China).
Janssen, Annette B G; de Jager, Victor C L; Janse, Jan H; Kong, Xiangzhen; Liu, Sien; Ye, Qinghua; Mooij, Wolf M.
Afiliação
  • Janssen ABG; Netherlands Institute of Ecology (NIOO-KNAW), Department of Aquatic Ecology, PO Box 50, 6700 AB, Wageningen, The Netherlands; Wageningen University & Research, Department of Aquatic Ecology and Water Quality Management, PO Box 47, 6700 AA, The Netherlands. Electronic address: a.janssen@nioo.knaw
  • de Jager VCL; Netherlands Institute of Ecology (NIOO-KNAW), Department of Aquatic Ecology, PO Box 50, 6700 AB, Wageningen, The Netherlands.
  • Janse JH; Netherlands Institute of Ecology (NIOO-KNAW), Department of Aquatic Ecology, PO Box 50, 6700 AB, Wageningen, The Netherlands; PBL, Netherlands Environmental Assessment Agency, P.O. Box 30314, 2500 GH, Den Haag, The Netherlands.
  • Kong X; Netherlands Institute of Ecology (NIOO-KNAW), Department of Aquatic Ecology, PO Box 50, 6700 AB, Wageningen, The Netherlands; MOE Laboratory for Earth Surface Processes, College of Urban and Environmental Sciences, Peking University, Beijing, 100871, PR China.
  • Liu S; Deltares, P.O. Box 177, 2600 MH, Delft, The Netherlands; Faculty of Civil Engineering and Geosciences, Section of Hydraulic Engineering, Delft University of Technology, P.O. Box 5048, 2600 GA, Delft, The Netherlands.
  • Ye Q; Deltares, P.O. Box 177, 2600 MH, Delft, The Netherlands; Faculty of Civil Engineering and Geosciences, Section of Hydraulic Engineering, Delft University of Technology, P.O. Box 5048, 2600 GA, Delft, The Netherlands.
  • Mooij WM; Netherlands Institute of Ecology (NIOO-KNAW), Department of Aquatic Ecology, PO Box 50, 6700 AB, Wageningen, The Netherlands; Wageningen University & Research, Department of Aquatic Ecology and Water Quality Management, PO Box 47, 6700 AA, The Netherlands.
Water Res ; 119: 276-287, 2017 08 01.
Article em En | MEDLINE | ID: mdl-28477543
ABSTRACT
Ongoing eutrophication frequently causes toxic phytoplankton blooms. This induces huge worldwide challenges for drinking water quality, food security and public health. Of crucial importance in avoiding and reducing blooms is to determine the maximum nutrient load ecosystems can absorb, while remaining in a good ecological state. These so called critical nutrient loads for lakes depend on the shape of the load-response curve. Due to spatial variation within lakes, load-response curves and therefore critical nutrient loads could vary throughout the lake. In this study we determine spatial patterns in critical nutrient loads for Lake Taihu (China) with a novel modelling approach called Spatial Ecosystem Bifurcation Analysis (SEBA). SEBA evaluates the impact of the lake's total external nutrient load on the local lake dynamics, resulting in a map of critical nutrient loads for different locations throughout the lake. Our analysis shows that the largest part of Lake Taihu follows a nonlinear load-response curve without hysteresis. The corresponding critical nutrient loads vary within the lake and depend on management goals, i.e. the maximum allowable chlorophyll concentration. According to our model, total nutrient loads need to be more than halved to reach chlorophyll-a concentrations of 30-40 µg L-1 in most sections of the lake. To prevent phytoplankton blooms with 20 µg L-1 chlorophyll-a throughout Lake Taihu, both phosphorus and nitrogen loads need a nearly 90% reduction. We conclude that our approach is of great value to determine critical nutrient loads of lake ecosystems such as Taihu and likely of spatially heterogeneous ecosystems in general.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fitoplâncton / Monitoramento Ambiental / Eutrofização Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fitoplâncton / Monitoramento Ambiental / Eutrofização Idioma: En Ano de publicação: 2017 Tipo de documento: Article