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首页> 外文期刊>Limnologica >Flood effects on phosphorus immobilisation in a river water filled pit lake—Case study Lake Goitsche (Germany)
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Flood effects on phosphorus immobilisation in a river water filled pit lake—Case study Lake Goitsche (Germany)

机译:洪水对充满水的坑湖中磷固定化的影响-以戈特切湖为例(德国)

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摘要

Between 1999 and 2002, a former open-cast mine was filled with river water forming the recent Lake Goitsche. During filling initially acid water was neutralised. Phosphorus (P) imported from Mulde River was nearly completely removed from the water column by co-precipitation with iron (Fe) and aluminium (Al) and deposited in the sediment. During extremely high waters of the Mulde River in 2002, a dike breach facilitated a second high import of P into Lake Goitsche with suspended and dissolved matter. The analysis of total phosphorus (TP), however, showed that P again had been eliminated from the water body a few months after the flood event. Sediment investigations before filling with river water, during filling, and after the flood event were used to analyse the process of P immobilisation in a lake with acid mine drainage history. The ratios of Fe to soluble reactive P (SRP) of sediment pore water were up to three orders of magnitudes higher than in natural lakes and can serve as an indicator for potential internal P loading from sediments. The SRP concentrations at the oxic/anoxic boundary were near or below the limit of quantification (o 0.2 mmol/L). Fe and manganese (Mn) redox cycling were responsible for hindering P dissolution from sediment to lake water. Finally it can be stated, that the risk of eutrophication for such a lake seems to be low.
机译:在1999年至2002年之间,一个前露天矿场充满了河水,形成了最近的Goitsche湖。在填充期间,最初将酸性水中和。通过与铁(Fe)和铝(Al)共同沉淀,从Mulde河进口的磷(P)几乎完全从水柱中除去,并沉积在沉积物中。在2002年穆尔德河的极高水位期间,堤坝的破裂促使磷的第二次大量进口,其中的悬浮物和溶解物进入了Goitsche湖。但是,对总磷(TP)的分析表明,洪水发生几个月后,磷又再次从水体中消除。充填河水之前,充填过程中以及洪水事件发生后的泥沙调查被用来分析具有酸性矿山排水历史的湖泊中磷的固定化过程。沉积物孔隙水中的铁与可溶性反应性P(SRP)之比比天然湖泊高3个数量级,可作为沉积物内部潜在P负荷的指标。在有氧/缺氧边界处的SRP浓度接近或低于定量极限(o 0.2 mmol / L)。铁和锰(Mn)的氧化还原循环是阻碍磷从沉积物到湖水中溶解的原因。最后可以说,这种湖泊富营养化的风险似乎很低。

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