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Chemical phosphorus removal to extremely low levels: experience of two plants in the Washington, DC area

机译:化学除磷量极低:华盛顿特区地区两家工厂的经验

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Chemical phosphorus removal using metal (iron and aluminium) salts is frequently used to control effluent soluble phosphorus levels in wastewater treatment plants. In the Washington DC area effluent phosphorus requirements are extremely stringent to protect the Chesapeake Bay. Full-scale data from two plants in the area were analysed to establish phosphate behaviour in the presence of iron. Titration experiments and mathematical modelling were performed to determine the role of ferric phosphate and hydroxide precipitation and other mechanisms that may potentially be involved in phosphorus removal. Iron addition is described in the model using a chemical equilibrium approach extended with surface charges and adsorption. The model verifies key observations from full-scale data: (a) extremely low orthophosphate levels can be achieved over a wide range of pH values, (b) a mixture of ferric phosphate and ferric hydroxide precipitate is forming with the hydroxide acting as sorbent, (c) molar ratios of Fe/P (iron dosed to phosphate removed) vary widely (1.0-3.9) based on the technology used and residual phosphate levels. The model will be a useful tool for engineers to optimise preliminary, simultaneous and tertiary P removal, both for design and plant operation.
机译:使用金属(铁和铝)盐去除化学磷的方法通常用于控制废水处理厂中废水中可溶性磷的含量。在华盛顿特区,对磷的排放要求极为严格,以保护切萨皮克湾。分析了该地区两家工厂的全面数据,以建立铁存在下的磷酸盐行为。进行了滴定实验和数学建模,以确定磷酸铁和氢氧化铁沉淀的作用以及其他可能与除磷有关的机理。在模型中使用化学平衡方法描述了铁的添加,并扩展了表面电荷和吸附。该模型通过全面的数据验证了主要观察结果:(a)在很宽的pH值范围内均可达到极低的正磷酸盐水平;(b)形成了磷酸铁和氢氧化铁沉淀物的混合物,其中氢氧化物充当吸附剂, (c)Fe / P摩尔比(铁与磷酸盐的去除量)基于所使用的技术和残留的磷酸盐含量变化很大(1.0-3.9)。该模型将是工程师在设计和工厂操作中优化初步,同时和三次去除P的有用工具。

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