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Control of non-point source pollution by a natural wetland

机译:天然湿地控制面源污染

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Wetland creation and restoration is a reliable and efficient technology for the remediation of contaminated water. Knowledge from the natural wetland systems would be necessary to enhance the operational efficiency of constructed wetlands. In this study, a mountainous wetland located in McDowell County, North Carolina, USA was selected to demonstrate the effects of the natural filtration and restoration system on the maintenance of surface water quality. The hydraulic retention time (HRT) for the wetland was 10.5 days based on the results from a dye release study. Water quality monitoring of the wetland was conducted from May to August 1997. One major storm event and baseline water quality samples were collected and analyzed. Analytical results indicate that this wetland removed a significant amount of nonpoint source (NPS) pollutants [more than 80% N removal, 91% of total suspended solid removal, 59% of total phosphorus removal, and 66% of chemical oxygen demand (COD) removal] caused by the studied storm event. Sediment accretion monitoring results indicate that the accretion rate in the wetland was only 4 mm/year. Therefore, the wetland would require 100 years to fill at the measured sediment accretion rate. The high organic content of sediments (16%) indicates that the wetland is building the characteristic organic layer on the bottom of the wetland. Results from this study would be very useful in the maintenance of natural wetlands and design of constructed wetlands for water treatment. [References: 12]
机译:湿地的创建和修复是一种可靠,有效的技术,用于修复受污染的水。来自自然湿地系统的知识对于提高人工湿地的运营效率将是必要的。在这项研究中,选择了位于美国北卡罗来纳州麦克道威尔县的山区湿地,以证明自然过滤和恢复系统对维持地表水水质的影响。根据染料释放研究的结果,湿地的水力停留时间(HRT)为10.5天。 1997年5月至8月对湿地进行了水质监测。收集并分析了一次重大风暴事件和基准水质样本。分析结果表明,该湿地去除了大量的非点源(NPS)污染物[N去除量超过80%,悬浮固体去除量占91%,磷去除量占59%,化学需氧量(COD)占66%清除]是由研究的风暴事件引起的。泥沙积聚监测结果表明,湿地的积聚速率仅为4毫米/年。因此,湿地将需要100年才能达到测得的沉积物积聚速率。沉积物的高有机含量(16%)表明,湿地正在湿地的底部建立有特色的有机层。这项研究的结果对于维护天然湿地和设计用于水处理的人工湿地非常有用。 [参考:12]

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