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Wastewater Discharge through a Stream into a Mediterranean Ramsar Wetland: Evaluation and Proposal of a Nature-Based Treatment System

机译:废水通过溪流排放到地中海拉姆马尔湿地:基于自然的治疗系统的评估和提议

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摘要

Impacts on wetlands are becoming more pressing every day. Among them, habitat loss, overexploitation of aquifers and changes in land use are considered the most important. However, the impacts linked to wastewater discharges are increasing worldwide. In this context, this study analyses the impacts of input of wastewater to a Mediterranean Ramsar temporary wetland (Fuente de Piedra, south of Spain). To this end, systematic sampling was carried out in the Charcón stream which receives water from a wastewater treatment plant (WWTP) and discharges it into the wetland. The results showed a slight decrease in the nutrient concentrations, particularly for nitrogen compounds. Heterotrophic and fecal bacteria concentration, as well as phytoplankton and zooplankton abundance and biomass, all significantly decreased from the treatment plant to the wetland. When comparing the effect of this discharge with other similar occurring to the same wetland, it was evident that the Charcón stream was responsible for a greater impact. At this point, it is relevant to note that the main difference among both treated wastewater discharges lies in the different water retention time once the wastewater was released from the WWTP. In fact, we recommend an increase in the water retention time by building seminatural ponds, together with the use of biofilters, which will notably contribute to improve the processes of assimilation of nutrients and to decrease the impact generated in the wetland by this spill.
机译:对湿地的影响每天都在变得越来越迫切。其中,栖息地丧失,含水层和改变土地用途的过度开发被认为是最重要的。然而,影响连接到废水排放在世界范围内不断增加。在此背景下,本研究分析了废水输入到地中海拉姆萨尔湿地临时(丰德彼德拉,西班牙南部)的影响。为此,系统的取样,从废水处理厂(WWTP)接收水,并将其排放到湿地CHARCON流中进行。结果表明:在营养物浓度略有下降,特别是对于氮化合物。异养和粪便细菌浓度,以及浮游植物和浮游动物数量和生物量,所有显著从处理植物减少到湿地。当比较该放电与其他类似的发生到相同的湿地的效果,很明显的是,CHARCON流负责产生更大的影响。在这一点上,它是相关地注意到,处理后的废水中的主要区别在于排放在不同的水滞留时间,一旦污水从污水处理厂释放。事实上,我们通过建立半自然池塘与使用生物过滤器,这将有助于显着改善营养物质的吸收的过程,并减少由此溢出湿地产生的影响,建议在水中停留时间的增加,共同提高。

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