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Alum Treatment of Stormwater Runoff -An Innovative BMP for Urban Runoff Problems

机译:矾土处理雨水径流-解决城市径流问题的创新BMP

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Alum treatment of Stormwater runoff was begun in 1986 as part of a lake restoration project at Lake Ella in Tallahassee, Florida in 1986. Our system provides treatment of Stormwater runoff entering the lake by injecting liquid alum into major stormsewer lines on a flow-weighted basis during rain events. When added to runoff, alum forms non-toxic precipitates of Al(OH)_3 and AIPO_4 which combine with phosphorus, suspended solids and heavy metals, causing them to be rapidly removed from the treated water. The alum Stormwater treatment system resulted in immediate and substantial improvements to water quality in Lake Ella which led to implementation of similar systems on other urban lakes. There are currently 23 alum Stormwater treatment systems either operational or under construction in Florida, and one experimental system in Seattle, Washington. Alum treatment of Stormwater runoff has consistently achieved a 90% reduction in total phosphorus, 50-70% reduction in total nitrogen, 50-90% reduction in heavy metals, and >99% reduction in fecal coliform. Ultimate water quality improvements in the receiving water body have been related to the percentage of total inputs treated by the system. Heavy metal and phosphorus associations with alum floc have been shown to be extremely stable over a wide range of pH and redox conditions. In general, alum treatment of runoff is substantially less expensive than traditional treatment methods and often requires no additional land purchase. Recent designs have incorporated automatic floc collection and removal systems with disposal to drying beds or sanitary sewer.
机译:1986年开始对明矾径流进行明矾处理,这是1986年在佛罗里达州塔拉哈西的艾拉湖修复工程的一部分。我们的系统通过以流量加权的方式将液体明矾注入主要的下水道管线中来提供对进入湖泊的暴雨径流的处理。在下雨的时候。当添加到径流中时,明矾会形成无毒的Al(OH)_3和AIPO_4沉淀物,这些沉淀物与磷,悬浮固体和重金属结合,使它们迅速从处理过的水中去除。明矾雨水处理系统使埃拉湖的水质立即得到实质性改善,从而导致在其他城市湖泊中实施了类似的系统。佛罗里达州目前有23座明矾雨水处理系统正在运行或在建中,华盛顿的西雅图有1个实验系统。明矾处理雨水径流一直实现总磷减少90%,总氮减少50-70%,重金属减少50-90%,粪大肠菌类减少99%以上。接收水体的最终水质改善与系统处理的总投入量的百分比有关。已证明重金属和磷与明矾的缔合在很大的pH和氧化还原条件下都非常稳定。通常,用明矾处理径流要比传统处理方法便宜得多,并且通常不需要额外购买土地。最近的设计已将自动絮凝物收集和清除系统与处置干燥床或下水道的污水相结合。

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