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Sustainability of the Flooding of Lignite Mining Lakes as a Remediation Technique Against Acidification in the Lusatian Mining District, Germany

机译:荔枝矿泉湖水洪水洪水的可持续性,德国卢萨斯岛矿区酸化的补救技术

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Flooding with surface water is the preferred technique for the abatement of acidification from pyrite oxidation in the lakes of abandoned Lusatian lignite mines. However, water resources of the region are limited and in addition, interruption of water inflow during the summer and the termination of the flooding process after reaching the final water level can lead to a re-acidification of the lakes. The development of three mining lakes with a surface-water flooding history of six to 28 years was analysed - in two lakes on the basis of fortnightly to monthly hydrochemical monitoring data. During summer flooding interruption, the younger lakes showed a decrease in pH from neutral down to pH 4. The degree of the pH decrease depended on the intensity of the groundwater inflow from the overburden dumps and this affected the hypolimnion more than the epilimnion. The third lake was flooded 28 years ago and up to now, interruption of the surface water inflow resulted in re-acidification. These three examples were able to show the benefits and limits of the surface water flooding technique for the abatement of Lusatian mining lake acidification.
机译:地面水的洪水是废弃李山褐煤矿山湖泊中酸化酸化的优选技术。然而,该地区的水资源有限,此外,夏季期间水流入的中断,达到最终水位后的洪水过程可导致湖泊的重新酸化。分析了三至28岁的地表水淹历史的三个采矿湖的发展 - 两日湖的每两周一次,以每月水化学监测数据。在夏季洪水中断期间,年轻的湖泊显示了从中性下降到pH4的降低。pH值的程度降低依赖于覆盖层倾卸的地下水流入的强度,而这影响了超过癫痫的抗皱。第三湖于28年前淹没,现在的地表水流入的中断导致重新酸化。这三个例子能够展示用于缓解卢萨斯湖酸化的地表水驱技术的益处和限制。

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