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New Approach to Evaluate Pollutant Removal by Storm-Water Treatment Devices

机译:评价雨水处理装置去除污染物的新方法

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A methodology was developed to monitor and evaluate the removal of solids and associated constituents by a nutrient separating baffle box NSBB storm-water treatment device treating runoff from a 4.3 ha 10.6 acre residential watershed discharging into the Indian River Lagoon, Florida. The NSBB was monitored over a 359-day time period using autosamplers to quantify water column removal during runoff events, and by quantifying and analyzing solids that accumulated within the NSBB. Flow composited influent and effluent samples were collected to represent water column performance. Event mean concentration EMC reduction was moderate mean: 17% and variable range: 39 to 68% for suspended solids, and negative for nitrogen, phosphorus, fecal coliforms chromium, and copper. The mass of solids that accumulated in bottom chambers and in a strainer screen was quantified and analyzed for nitrogen, phosphorus, heavy metals, and polycyclic aromatic hydrocarbons. A quantitative evaluative framework was devised to estimate the total pollutant mass removal by NSBB, which consisted of the summation of the separately calculated mass removals for water column, bottom chamber material, and strainer screen material. The water column accounted for only 4% of total solids that accumulated in the NSBB, which was equally divided between bottom chamber and strainer screen. Removal of nitrogen, phosphorus, and metals could be accounted for only by considering mass accumulations. Results suggest that overall assessment of pollutant removal by NSBB must be cognizant of the materials not captured by typical autosamplers: larger size sediment particles, large floating and suspended matter, and the pollutants associated with these materials. Using water column EMCs as the sole measure of performance significantly underestimated loading reduction of storm-water constituents by the NSBB. The monitoring and evaluative methodology applied to the NSBB may be applicable to load reduction evaluations for other storm-water treatment devices with a similar function.
机译:开发了一种方法,通过营养分离挡板箱NSBB雨水处理设备来监测和评估固体和相关成分的去除,该设备处理从4.3公顷10.6英亩的居民流域排放到佛罗里达州印度河泻湖的径流。使用自动进样器在359天的时间内对NSBB进行了监测,以量化径流事件中水柱的去除量,并通过定量和分析NSBB中累积的固体来对其进行监测。收集流动复合的进水和出水样品以代表水柱性能。事件平均浓度EMC降低为中度:17%,可变范围:悬浮固体为39%至68%,而氮,磷,粪大肠菌群铬和铜为阴性。量化并分析了底部腔室和滤网中积聚的固体物质的氮,磷,重金属和多环芳烃。设计了一个定量评估框架来估算NSBB去除的污染物总量,其中包括水柱,底部室材料和滤网筛分材料的分别计算出的质量去除量的总和。水柱仅占NSBB中累积的总固体的4%,在底部室和滤网之间均分。氮,磷和金属的去除只能通过考虑质量累积来解决。结果表明,NSBB对污染物去除的总体评估必须认识到典型自动进样器无法捕获的材料:较大尺寸的沉积物颗粒,较大的漂浮物和悬浮物以及与这些材料相关的污染物。使用水柱EMC作为性能的唯一衡量标准,大大低估了NSBB减少雨水成分的负荷。应用于NSBB的监测和评估方法可适用于其他具有类似功能的雨水处理设备的负荷减少评估。

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