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Stable states, buffers and switches: An ecosystem approach to the restoration and management of shallow lakes in The Netherlands

机译:稳定的状态,缓冲区和转换:荷兰浅湖的恢复和管理的生态系统方法

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Lake restoration in the Netherlands has been focused mainly on the control of external P loading from point sources. However, this approach did not result in the water quality desired. The algae-dominated turbid water state may be extremely stable, and then additional measures are necessary to remove certain 'blockages' such as: the persistent bloom of Oscillatoria algae, the P release from the lake sediments, and the abundance of fish, preventing zooplankton and submerged macrophytes from developing. This paper addresses: (1) the need for an ecosystem approach, (2) the resistance of shallow lake ecosystems to changes in nutrient loading, (3) the concept of stable states, buffers and switches, and (4) the perspectives for lake restoration in the Netherlands. Priority should be given to fighting the Oscillatoria blooms. Winter flushing with water low in TP and algae proved to be an effective tool for reducing these blooms. Reduction of planktivorous fish, such as bream and roach, could enhance the top-down control of algae through the grazing by zooplankton, particularly by the large Daphnia species. (C) 1998 IAWQ. Published by Elsevier Science Ltd. [References: 79]
机译:荷兰的湖泊恢复工作主要集中在控制点源外部磷的装载。但是,这种方法没有达到所需的水质。以藻类为主的混浊水状态可能非常稳定,然后需要采取其他措施来消除某些“障碍”,例如:颤藻藻的持续开花,湖沉积物中的磷释放以及鱼类的丰富,从而防止了浮游动物并从发育中淹没大型植物。本文讨论了:(1)需要一种生态系统方法;(2)浅湖生态系统对养分含量变化的抵抗力;(3)稳定状态,缓冲和转换的概念;以及(4)湖泊的观点在荷兰恢复。应优先抗击Oscillatoria花。事实证明,冬季用总磷和藻类含量低的水冲洗是减少这些水华的有效工具。减少浮游鱼类,如鲷鱼和蟑螂,可以通过浮游动物(特别是大型水蚤)的放牧来增强对藻类的自上而下的控制。 (C)1998 IAWQ。由Elsevier Science Ltd.发布[参考:79]

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