Hydrological management strategies for the control of algal blooms in regulated lowland rivers

Reservoirs of lowland floodplain rivers with eutrophic backgrounds cause variations in the hydrological and hydraulic conditions of estuaries and low‐dam reservoir areas, which can promote planktonic algae to proliferate and algal bloom outbreaks. Understanding the ecological effects of variations i...

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Veröffentlicht in:Hydrological processes 2021-06, Vol.35 (6), p.n/a
Hauptverfasser: Li, Jian, Yin, Wei, Jia, Haiyan, Xin, Xiaokang
Format: Artikel
Sprache:eng
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Zusammenfassung:Reservoirs of lowland floodplain rivers with eutrophic backgrounds cause variations in the hydrological and hydraulic conditions of estuaries and low‐dam reservoir areas, which can promote planktonic algae to proliferate and algal bloom outbreaks. Understanding the ecological effects of variations in hydrological and hydraulic processes in lowland rivers is important for algal bloom control. In this study, the middle and lower reaches of the Han River, China, a typical regulated lowland river with a eutrophic background, are selected. Based on the effect of hydrological and hydraulic variability on algal blooms, a hydrological management strategy for river algal bloom control is proposed. The results showed that (a) differences in river morphology and background nutrient levels cause significant differences in the critical threshold flow velocities for algal bloom outbreaks between natural river and low‐dam reservoir sections; there is no uniform threshold flow velocity for algal bloom control. (b) There are significant differences in the river hydrological/hydraulic conditions between years with and without algal blooms. The average river flow, water level and velocity in years with algal blooms are significantly lower than those in years without algal blooms. (c) For different river sections where algal blooms occur and to meet the threshold flow velocities, the joint operation of cascade reservoirs and diversion projects is an effective method to prevent and control algal blooms in regulated lowland rivers. This study is expected to deepen our understanding of the ecological significance of special hydrological processes and guide algal bloom management in regulated lowland rivers. Special hydrological and hydraulic conditions provide a driving force for algal bloom outbreaks in eutrophic lowland rivers. High flow velocity has a significant inhibitory effect on the growth of algae, but a universal critical velocity for suppressing algal growth likely does not exist. Algal bloom control efforts require the formulation of different flow regulation schemes that correspond to the different river sections where algal blooms occur.
ISSN:0885-6087
1099-1085
DOI:10.1002/hyp.14171