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Effectiveness of differently designed small-scale constructed wetlands to decrease the acidity of acid mine drainage under field conditions

机译:不同设计的小型人工湿地在田间条件下降低酸性矿山排水酸性的有效性

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摘要

Constructed wetlands are a near-natural method for the treatment of acid mine drainages (AMD). Because of the different site-specific wastewater qualities and the variability of the used constructed wetlands regarding design, it is difficult to compare their efficiencies on the basis of literature data (often specific removal rates are missing). The AMD treatment efficiencies (pH, acidity) of differently designed planted and unplanted small-scale constructed wetlands (subsurface flow - SSF, surface flow - SF, and hydroponic - HP systems with an area of 0.55 m2 each) were compared under long-term field conditions. The planted SF was found to be most effective, reaching mean acidity removal in the range of 80-90%, and most resistant in view of external influences (i.e., heavy rain events). The planted SSF also showed high efficiency (50-90%), but much more sensitivity to rain events. In both systems, the pH increased from 3.3 (mean of the inflows) to above 4.5 in the outflows. The efficiencies of the unplanted SF were insufficient and in the range of the (planted and unplanted) HP, i.e., smaller than 40%. In general, the importance of plants for the success of the neutralization processes could be concluded..
机译:人工湿地是处理酸性矿山排水渠(AMD)的近乎自然的方法。由于特定地点的废水质量不同,并且所使用的人工湿地在设计方面存在差异,因此难以根据文献数据比较其效率(通常缺少特定的去除率)。长期比较了不同设计的已种植和未种植的小规模人工湿地(地下流量-SSF,表面流量-SF和水培-HP系统,面积分别为0.55 m2)的AMD处理效率(pH,酸度)现场条件。发现所种植的SF是最有效的,达到平均酸度去除率在80-90%的范围内,并且由于外部影响(即大雨事件)而最耐。种植的SSF还显示出高效率(50-90%),但对降雨事件的敏感性更高。在这两个系统中,pH值从流出物中的3.3(流入平均值)增加到4.5以上。未植入SF的效率不足,并且在(已植入和未植入)HP的范围内,即小于40%。通常,可以得出结论,植物对成功进行中和过程的重要性。

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