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Retention and Internal Loading of Phosphorus in Shallow Eutrophic Lakes

机译:浅水富营养化湖泊中磷的保留和内部负载

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摘要

This paper gives a general overview of the nature and important mechanisms behind internal loading of phosphorus (P), which is a phenomenon appearing frequently in shallow, eutrophic lakes upon a reduction of the external loading. Lake water quality is therefore not improved as expected. In particular summer concentrations rise and P retention may be negative during most of the summer. The P release originates from a pool accumulated in the sediment when the external loading was high. In most lake sediments, P bound to redox-sensitive iron compounds or P fixed in more or less labile organic forms constitute major fractions forms that are potentially mobile and eventually may be released to the lake water. The duration of the recovery period following P loading reduction depends on the loading history, but it may last for decades in lakes with a high sediment P accumulation. During the phase of recovery, both the duration and net P release rates from the sediment seem to decline progressively. Internal P loading is highly influenced by the biological structure as illustrated by lakes shifting from the turbid to the clearwater state as a result of, for example, biomanipulation. In these lakes P concentrations may be reduced to 50% of the pre-biomanipulation level and the period with negative retention during summer can thus be reduced considerably. The duration of internal loading can be reduced significantly by different restoration methods such as dredging to remove accumulated P or addition of iron or alum to elevate the sorption capacity of sediments. However, an important prerequisite for achieving long-term benefits to water quality is a sufficient reduction of the external P loading.
机译:本文概述了内部磷(P)的性质和重要机理,磷是在外部富集减少时在浅水富营养化湖泊中经常出现的现象。因此,湖泊水质没有得到预期的改善。特别是在夏季的大部分时间内,夏季的浓度会升高,磷的保留量可能为负。当外部负荷高时,磷的释放源于沉积物中积累的池。在大多数湖泊沉积物中,与氧化还原敏感的铁化合物结合的P或以或多或少不稳定的有机形式固定的P构成了主要的馏分形式,这些形式可能会移动并最终释放到湖泊水中。减少磷负荷后恢复期的长短取决于负荷的历史,但是在沉积物磷含量高的湖泊中可能会持续数十年。在恢复阶段,沉积物的持续时间和净磷释放速率似乎都在逐渐下降。内部P含量受生物学结构的影响很大,例如由于生物操纵,湖泊从浑浊转变为清水状态。在这些湖泊中,磷的浓度可降至生物操纵前水平的50%,因此夏季的负滞留期可大大减少。内部负荷的持续时间可以通过不同的恢复方法来显着减少,例如通过疏to去除积聚的P或添加铁或明矾来提高沉积物的吸附能力。但是,要获得长期的水质效益,重要的前提条件是充分减少外部磷的负荷。

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