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Spatial distribution and risk assessment of heavy metals in bottom sediments of two small dam reservoirs (south-east Poland)

机译:两个小型水坝水库(波兰东南部)底部沉积物中重金属的空间分布和风险评估

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Sediments of two dam reservoirs in SE Poland, Zalew Zemborzycki (ZZ) and Brody Ilzeckie (BI) were studied. The sediments from both reservoirs were sampled in the transects perpendicular to the shoreline, at the river inflow and the frontal dam. The total concentration of Mn, Zn, Pb, Cd, Cu, Cr and Ni was determined by ICP-EAS method after the sample digestion in the mixture of concentrated HNO3 and HClO4 acids. The statistical analyses: value intervals, mean values, variation coefficient, the median and the skewed distribution were performed. To estimate differences between the means for transects, Tukey's test was applied with least significant difference (LSD) determination. The maps of the metal spatial distribution were drawn and sediment quality according to the geochemical and ecotoxicological criteria evaluated. Differences between the reservoirs in terms of heavy metals concentration in bottom sediments, and regularities in their spatial distribution were found. In the ZZ sediments the concentration was at the level of geochemical background (Zn, Cr), slightly (Cd, Cu, Ni) or moderately (Pb) contaminated sediments. The metal concentration in the sediments of the BI was up to eight times higher as compared to the ZZ. Moreover, sediments from the BI reservoir showed a greater variability of metal concentration than those from ZZ, which resulted from the dredging operation performed in the part of the reservoir. Metal concentration in sediments of the dredged part was ca. 2-5 times lower than in the undredged one, which indicates that after the dredging operation, accumulation of these metals was slight. The concentrations of Zn, Pb and Cd from the undredged part of BI were at the level of contaminated sediments and exceeded the probable effects level (PEL). In the ZZ, the greatest accumulation of metals occurred in the upper part of the reservoir and at the frontal dam, and the lowest in the middle part of the reservoir. In BI, the lower outflow of water in this reservoir caused a lower metal concentration in the sediments at the frontal dam, as compared with the other sediments in the undredged part of the reservoir. The results indicate that in small and shallow reservoirs, areas of accumulation of heavy metals depend on such factors as a parent river current, reservoir depth, water waving, reservoir shape (narrowing, coves/bays), and type of water outflow.
机译:研究了波兰东南部Zalew Zemborzycki(ZZ)和Brody Ilzeckie(BI)两个水库的沉积物。来自两个水库的沉积物均在垂直于海岸线,河流流入处和额坝处的横断面取样。在浓HNO3和HClO4的混合物中消解样品后,通过ICP-EAS法测定Mn,Zn,Pb,Cd,Cu,Cr和Ni的总浓度。统计分析:值区间,平均值,变异系数,中位数和偏斜分布。为了估计样线平均值之间的差异,应用了Tukey检验,并采用最小显着差异(LSD)确定。根据地球化学和生态毒理学标准绘制金属空间分布图并评估沉积物质量。发现储层之间在底部沉积物中重金属含量方面的差异,以及它们在空间分布上的规律性。 ZZ沉积物中的浓度处于地球化学背景(Zn,Cr),轻度(Cd,Cu,Ni)或中度(Pb)污染的沉积物水平。与ZZ相比,BI沉积物中的金属浓度高出八倍。此外,BI储层的沉积物比ZZ沉积物显示出更大的金属浓度变异性,这是由于在该储层部分进行的疏operation操作造成的。疏part部分沉积物中的金属浓度约为。比未挖泥船低2-5倍,这表明在挖泥作业之后,这些金属的积累很小。 BI中未疏松部分的Zn,Pb和Cd浓度处于受污染的沉积物水平,并且超过了可能的影响水平(PEL)。在ZZ中,金属的最大堆积发生在储层的上部和前坝,而最低的发生在储层的中部。在BI中,与水库未挖部分中的其他沉积物相比,该水库中较低的水流出量导致前坝处沉积物中的金属浓度较低。结果表明,在小而浅的水库中,重金属的积累区域取决于母流,水库深度,水流,水库形状(变窄,海湾/海湾)和水流类型等因素。

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