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Controlling internal phosphorus loading in lakes by physical methods to reduce cyanobacterial blooms: a review

机译:通过物理方法控制湖泊内部磷的含量以减少蓝藻水华:综述

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摘要

The aim of this paper was to summarize the current knowledge on how physical methods can reduce or control internal P release from sediments in lakes and reservoirs. Particular emphasis is given to the role of internal phosphorus load in fueling cyanobacterial blooms which are predicted to increase in frequency and intensity in response to climate change and eutrophication. We present selective case studies (both successful and unsuccessful) to assess the applicability and efficiency of major physical approaches used for decades to reduce internal loading in different systems of various morphology. In particular, we concentrate on where and when (1) hypolimnetic aeration/oxygenation, (2) hypolimnetic withdrawal and (3) sediment dredging are likely to reduce cyanobacterial blooms and whether these methods have an adverse impact on other organisms. We conclude that each method has its strength and weakness depending on the system considered. Sufficient knowledge of all lake nutrient sources and their dynamics together with detailed lake and sediment characteristics is an essential prerequisite for choosing an appropriate control method. We also report that many experiences demonstrated that a combination of restoration methods is often more successful than a single method.
机译:本文的目的是总结有关物理方法如何减少或控制湖泊和水库沉积物中内部磷释放的现有知识。特别强调内部磷负荷在推动蓝藻水华中的作用,预计蓝藻水华的频率和强度会随着气候变化和富营养化而增加。我们提供了选择性的案例研究(成功和失败的案例)来评估数十年来减少各种形态的不同系统中内部负荷所使用的主要物理方法的适用性和效率。特别是,我们着眼于何时何地(1)通气不足/充氧,(2)通气不足和(3)泥沙疏are可能减少蓝藻水华,以及这些方法是否对其他生物产生不利影响。我们得出结论,每种方法都有其优缺点,取决于所考虑的系统。对所有湖泊养分来源及其动态以及详细的湖泊和沉积物特征有足够的了解是选择适当控制方法的必要前提。我们还报告说,许多经验表明,恢复方法的组合通常比单个方法更成功。

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