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The Effect of Artificial Recharge on Hydrochemistry: A Comparison of Two Fluvial Gravel Pit Lakes with Different Post-Excavation Uses in The Netherlands

机译:人工补给对水化学的影响:荷兰两个不同发掘后利用的砾石坑湖的比较

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Gravel pit lakes form when gravel deposits are excavated below the water table. We studied two fluvial gravel pit lakes called De Lange Vlieter (DLV Lake) and the Boschmolen Plas (BP Lake), in the Meuse River valley (The Netherlands). Water from the Meuse River is pumped only into the DLV Lake that is used for drinking water production. The mean values, the linear trends and seasonal patterns of time series data (2003–2014), of temperature, pH, nitrate, phosphate and sulphate were compared using one-way tests of variance and tests of differences. The effects of river water infiltration on DLV Lake are (1) a change in lake water temperature; (2) an increase in nitrate concentration (3) an increase in phosphate concentration and (4) a decrease in sulphate concentration. The effects of the air blowers in DLV Lake are (1) mixing of lake water; (2) decreasing pH in spring and summer (3) water oxygenation. Linear regression analysis shows an initially increasing nitrate concentration in DLV Lake that can be explained by the input of nitrate rich Meuse river water. Instead decreasing nitrate and phosphate concentrations in BP Lake and Meuse River reflect a diminished use of fertilizers. The gravel pit lake water temperature does not reflect climatic changes but the use of DLV Lake for artificial recharge has an impact on the seasonal and long-term trends in hydrochemistry. This poses a challenge to lake managers to find the right balance between reduction of eutrophication and accumulation of nutrients and sulphate.
机译:当在地下水位以下挖掘碎石沉积物时,会形成碎石坑湖。我们研究了位于默兹河谷(荷兰)的两个河流砾石坑湖,分别叫De Lange Vlieter(DLV湖)和Boschmolen Plas(BP湖)。来自默兹河的水仅被泵送到DLV湖中,该湖用于生产饮用水。使用单向方差检验和差异检验比较了时间序列数据(2003-2014),温度,pH,硝酸盐,磷酸盐和硫酸盐的平均值,线性趋势和季节性模式。河流水渗透对DLV湖的影响是:(1)湖水温度的变化; (2)硝酸盐浓度的增加(3)磷酸盐浓度的增加和(4)硫酸盐浓度的减少。 DLV湖中鼓风机的作用是(1)混合湖水; (2)在春季和夏季降低pH(3)水的氧合。线性回归分析显示,DLV湖中的硝酸盐浓度开始升高,这可以通过输入富含硝酸盐的默兹河水来解释。取而代之的是,BP湖和默兹河中硝酸盐和磷酸盐的浓度下降反映了肥料的使用减少。砾石坑湖的水温不能反映气候变化,但是使用DLV湖进行人工补给会对水化学的季节性和长期趋势产生影响。这对湖泊管理者提出了挑战,要在减少富营养化与养分和硫酸盐的积累之间找到合适的平衡。

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