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Optimisation of hydraulic performance to maximise faecal coliform removal in maturation ponds

机译:优化水力性能以最大限度地去除成熟池中的粪便大肠菌

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The present study was conducted with the aim of improving faecal coliform (FC) and faecal streptococcus (FS) removal efficiencies in tertiary maturation stages of a sewage treatment plant in Southern England, where climatic conditions are sub-optimal. The research used intensive field assessments (bacteriological, general quality and hydraulic) to identify the parameters that affect the bacteriological quality of the effluent from three parallel maturation ponds (North, Central and South) of similar geometry and dimensions. An engineering intervention was carried out to convert the South pond to three channels to increase the L/W ratio from 9:1 to 79:1. Hydraulic tracer studies in the South pond with Rhodamine WT showed that the dispersion number 'd' was reduced from 0.37 (dispersed flow) to 0.074 by this intervention under similar flow conditions (4.5 l/s). Hydraulic retention time was thus increased by 5h, delay in jet flow short-circuiting was increased from 2.5 to 17.5 h thus increasing the exposure times for all elements. As a result of the intervention FC removal increased substantially. Maximum channel-lagoon efficiency of 99.84% was obtained at 4.51/s and 19℃, when exposure to sunlight was 17 h in summer. It is concluded that the channel configuration produces a higher hydraulic efficiency than conventional maturation ponds. It is therefore recommended as a viable engineering solution which permits a low-cost upgrading of plant performance, requiring no additional land, and with minimal maintenance costs.
机译:进行本研究的目的是提高英格兰南部污水处理厂的三级成熟阶段的粪便大肠菌群(FC)和粪便链球菌(FS)去除效率,那里的气候条件欠佳。该研究使用了密集的现场评估(细菌学,一般质量和水力)来确定影响几何形状和尺寸相似的三个平行成熟池(北部,中部和南部)的出水细菌学质量的参数。进行了工程干预,将南池转换为三个通道,以将长宽比从9:1增加到79:1。在罗丹明WT的南塘中进行的水力示踪研究表明,在类似的流量条件下(4.5 l / s),这种干预将分散数d从0.37(分散流)降低到0.074。水力停留时间因此增加了5小时,射流短路的延迟从2.5小时增加到17.5小时,从而增加了所有元件的暴露时间。干预的结果是,FC去除量大大增加。当夏季暴露于阳光下17 h时,在4.51 / s和19℃下获得的最大通道泻湖效率为99.84%。结论是,与常规的成熟池相比,通道配置产生更高的水力效率。因此,建议将其作为可行的工程解决方案,以低成本升级工厂性能,不需要额外的土地,并且维护成本最低。

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