4.4 Article

Impact of a drought on nutrient concentrations in the Lower Lakes (Murray Darling Basin, Australia)

Journal

INLAND WATERS
Volume 1, Issue 3, Pages 159-176

Publisher

FRESHWATER BIOLOGICAL ASSOC
DOI: 10.5268/IW-1.3.409

Keywords

anoxia; drought; Lake Albert (Australia); Lake Alexandrina (Australia); nitrogen; organic carbon; phosphorus; resuspension; salinity

Funding

  1. Land & Water Australia Environmental Water Allocation Program
  2. CSIRO National Flagships Collaboration Fund

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Nutrient concentrations increased in 2 lakes (Lake Alexandrina and Lake Albert) located at the downstream end of the Murray Darling Basin, Australia, as a result of water level drawdown and salinisation associated with a severe drought. Between January 2007 and March 2008 the salinity difference between the inlet and outlets (5 barrages) increased from 0.9 to 21.0 g L-1, resulting primarily from seawater leakage through the barrages. Subsequently, in relatively sheltered areas upstream of the barrages, permanent salinity-derived density stratification developed, leading to the development of an anoxic hypolimnion. This seemingly favoured the regeneration of dissolved nutrients from the sediments, with standing stocks of ammonium and filterable reactive phosphorus increasing by 250 and 142%, respectively. However, the source of leakage water through the barrages also contributed to the increase. While dissolved organic carbon concentrations also increased, this was a result of evapoconcentration because calculated standing stocks changed little during the study period. In the open water areas, vertical density stratification was not evident, but sediment resuspension seemed to increase during the drawdown. Total organic nitrogen and total phosphorus concentrations were closely related to light attenuation, suggesting increased resuspension of particulate nutrients during the water level drawdown or increased assimilation of dissolved nutrients by phytoplankton. Overall, sediment resuspension seemed to have had a greater impact on nutrient concentrations in open water areas of Lake Alexandrina and Lake Albert, while saline intrusions were more significant in relatively sheltered areas located close to the lake outlets.

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