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Impacts of river impoundment on dissolved heavy metals in floodplain soils of the Lahn River (Germany)

机译:河流蓄水对拉恩河漫滩土壤中溶解的重金属的影响(德国)

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The effects of changing soil moisture conditions and oxidation-reduction (redox) processes on dissolved fractions of arsenic (As), cadmium (Cd), copper (Cu), iron (Fe), manganese (Mn), lead (Pb) and zinc (Zn) were studied in floodplain soils in the Lower Lahn Valley (Germany). Multiple weirs and locks affect the ground-water levels in the adjacent river banks by modifying the river's discharge rate. Redox conditions act as a key factor for sorption and desorption processes and are strongly regulated by groundwater levels. Hence, floodplain soils situated up-and downstream of impounded river segments were characterized by various contents of their mobile heavy metal fraction. To quantify the variations of the dissolved heavy metal concentrations during seasonal and periodic fluctuations of the groundwater levels, a 2-year field study was conducted. The results indicated that higher seasonal changes of river discharge downstream of a weir caused higher amplitudes of groundwater levels, redox changes and variations in dissolved As, Fe and Mn in soil depths (50-60 cm) with a strong groundwater influence. Upstream of a weir, higher dissolved concentrations and more smooth variations of As, Fe and Mn dominated within the same depths. A high rise of capillary waters within the same study site caused significant enrichments of dissolved Cd and Zn in the middle (25-35 cm) of the soil profile. The comparison of floodplain soils along the Lahn River showed how the stream regulations influence heavy metal concentrations of soil pore waters, which may in turn influence the quality of the river water.
机译:变化的土壤水分条件和氧化还原(redox)过程对砷(As),镉(Cd),铜(Cu),铁(Fe),锰(Mn),铅(Pb)和锌的溶解级分的影响在下拉恩河谷(德国)的洪泛区土壤中研究了锌(Zn)。多个堰和闸门通过修改河流的排泄速率来影响相邻河岸的地下水位。氧化还原条件是吸附和解吸过程的关键因素,并受地下水水平的强烈调节。因此,位于蓄水河段上游和下游的洪泛区土壤以其可移动重金属组分的含量不同为特征。为了量化地下水位的季节性和周期性波动过程中溶解的重金属浓度的变化,进行了为期两年的田间研究。结果表明,堰下游下游河水流量的较高季节变化会导致较高的地下水位,氧化还原变化以及土壤深度(50-60 cm)中溶解的As,Fe和Mn的变化,对地下水的影响很大。在堰的上游,较高的溶解浓度和相同深度内的As,Fe和Mn的变化更为平稳。同一研究地点内毛细水的高度上升导致土壤剖面中部(25-35厘米)中溶解的镉和锌大量富集。拉恩河沿岸漫滩土壤的比较表明,水流调节如何影响土壤孔隙水的重金属浓度,从而可能反过来影响河水的质量。

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