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Assessing the Integration of Wetlands along Small European Waterways to Address Diffuse Nitrate Pollution

机译:评估欧洲小水道沿线的湿地整合以解决硝酸盐扩散污染

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Nitrate concentrations in numerous European fresh watercourses have decreased due to end-of-pipe measures towards manure and fertilization management, but fail to meet the environmental objectives. The implementation of complementary measures to attenuate diffuse nitrate pollution in densely populated regions characterised by limited available area has been barely studied. To tackle this issue, this study evaluates the feasibility of integrating Constructed Wetlands (CWs) along waterways as a promising tool to facilitate compliance with the nitrate regulations. The aim is to calculate the required area of land alongside a specific watercourse to integrate CWs to reduce nitrate concentrations consistently below the 11.3 and 5.65 mgNO 3 -N/L levels, according to the Nitrates Directive and the Flemish Environmental Regulations. Nitrate-nitrogen removal efficiencies achieved at case study CWs were compared and validated with reported values to estimate the needed wetland areas. In addition, the removal efficiencies and areas needed to meet the standards were calculated via the kinetic model by Kadlec and Knight. The predicted areas by both methods indicated that CWs of 1.4–3.4 ha could be implemented in certain regions, such as Flanders (Belgium), with restricted available land. To conclude, three designs for ICWs (Integrated Constructed Wetlands) are proposed and evaluated, assessing the feasibility of their implementation.
机译:由于对粪便和施肥管理采取了末端措施,欧洲许多淡水河道中的硝酸盐浓度有所下降,但未能达到环境目标。几乎没有研究过采取补充措施来减轻人口稠密地区硝酸盐弥散性硝酸盐污染的情况。为了解决这个问题,本研究评估了将人工湿地(CW)沿水道整合为促进遵守硝酸盐法规的有前途的工具的可行性。目的是根据《硝酸盐指令》和《佛兰德环境法规》,计算一条特定河道所需的土地面积,以整合化学废物,以将硝酸盐浓度持续降低至低于11.3和5.65 mgNO 3 -N / L的水平。比较了案例研究连续水处理厂实现的硝酸盐氮去除效率,并用报告的值进行了验证,以估算所需的湿地面积。此外,通过Kadlec和Knight的动力学模型计算了达到标准所需的去除效率和面积。两种方法的预测面积均表明,在某些地区(如比利时的法兰德斯)可以实施1.4-3.4公顷的连续水。最后,提出并评估了ICW(综合人工湿地)的三种设计,评估了其实施的可行性。

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