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首页> 外文期刊>Frontiers in Marine Science >Phosphorus contents re-visited after 40 years in muddy and sandy sediments of a temperate lagoon system
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Phosphorus contents re-visited after 40 years in muddy and sandy sediments of a temperate lagoon system

机译:40年后温带泻湖系统泥泞和沙质沉积物中的磷含量再次出现

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Worldwide, coastal water bodies suffer from anthropogenically elevated nutrient inputs, which led to eutrophication. Sediments in eutrophic systems are assumed to be an important internal nutrient source. The total phosphorus (TP) concentration (mg g-1 dry mass) is widely used as a proxy for the sediment nutrient load. 2-D distribution maps of TP concentrations are used for management plans, where areas of high TP values are marked in red. However, the sediment density is lowered at increasing water content, which can lead to different TP stocks per g m-2. The aim of this study was, to do a re-evaluation of TP concentrations and stocks in the model ecosystem of the Dar?-Zingst Bodden chain, a typical lagoon system of the southern Baltic Sea. Sediment cores were taken at eight stations along transects from shallow to deeper parts of the lagoon. Samples were analyzed for TP, water and organic content, as well as density. This data set was compared to results from a sediment survey during the time of highest nutrient inputs (40 years ago) at the same sampling stations. TP concentrations from 40 years ago and today were in the same range. The highest TP concentrations (up to 0.6 mg TP g-1 dry mass) were found in the deeper basins and lowest concentrations in the shallow areas of the lagoon (down to 0.05 mg TP g-1 dry mass). However, normalization over dry bulk density reversed some results. The highest TP stocks (up to 5 g TP m-2) were then found in the shallow areas and lowest stocks (down to 0.2 g TP m-2) in the deeper parts of the lagoon. Some stations did not exhibit any differences of TP at all, even after including the dry bulk density. These findings suggest that there seems to be no up-, or downward trend in nutrient concentrations of sediments even after 25 years of reduced external nutrient inputs. Furthermore, TP stocks point to possible diffuse P entry pathways that counteract external nutrient reductions. These findings can have an impact on possible countermeasures for ecosystems rehabilitation, like sediment removal or nutrient reductions in the adjacent land.
机译:在世界范围内,沿海水域人为地增加了养分投入,导致富营养化。富营养化系统中的沉积物被认为是重要的内部营养源。总磷(TP)浓度(mg g-1干质量)被广泛用作沉积物养分负荷的替代指标。 TP浓度的二维分布图用于管理计划,其中TP值高的区域标记为红色。但是,随着水含量的增加,沉积物密度会降低,这可能导致每g m-2的TP储量不同。这项研究的目的是,对波罗的海南部典型的泻湖系统Dar?-Zingst Bodden链的模型生态系统中的TP浓度和种群进行重新评估。沉积岩心是在从泻湖的浅层到较深部分的样带的八个位置采集的。分析样品的总磷,水和有机物含量以及密度。将该数据集与同一采样站的最高养分输入时期(40年前)的沉积物调查结果进行了比较。从40年前到今天的TP浓度都在同一范围内。在较深的盆地中发现最高的TP浓度(最高0.6 mg TP g-1干物质),在泻湖的浅水区发现最低的TP浓度(低至0.05 mg TP g-1干物质)。但是,对干堆积密度进行归一化可以逆转某些结果。然后在浅水区发现了最高的TP储量(高达5 g TP m-2),而在泻湖的较深处发现了最低的储量(最低0.2 g TP m-2)。即使包括干体积密度,有些站点根本没有表现出任何TP差异。这些发现表明,即使减少了25年的外部养分投入,沉积物中养分浓度似乎也没有上升或下降的趋势。此外,总磷储量表明可能存在抵消外部养分减少的扩散性磷进入途径。这些发现可能会对生态系统恢复的可能对策产生影响,例如清除邻近土地上的沉积物或减少养分。

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