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Particle size analysis for improved sedimentation and filtration in waste water treatment

机译:粒度分析可改善废水处理中的沉淀和过滤

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Size distributions of particle mass, chemical oxygen demand (COD) and phosphorus at four municipal waste water treatment plants were investigated by fractionation of samples through 0.1-8.0 #mu#m polycarbonate filters and 32-125 #mu#m sieves, respectively. Particle size analysis of primary and secondary effluents at each plant showed significantly different size distribution functions. These distribution functions remained constant with respect to time under dry weather conditions so they can be considered as characteristic patterns for each sample location. Advanced treatment by deep bed filtration can be improved by taking into consideration the distribution pattern in the secondary effluents. In raw sewage and primary effluents 45-90% of COD and 35-80% of phosphorus were associated with suspended solids. In the secondary effluents particulate COD drops to 14-45% but particulate phosphorus increases to 55-80%. Conclusions are drawn for a better design of advanced contaminant reduction in connection with suspended solids removal processes.
机译:通过分别通过0.1-8.0#μm的聚碳酸酯过滤器和32-125#μm的筛子对样品进行分级,研究了四个市政废水处理厂的颗粒质量,化学需氧量(COD)和磷的粒度分布。每个工厂的一级和二级流出物的粒度分析表明,粒度分布函数存在显着不同。这些分布函数在干旱天气条件下相对于时间保持恒定,因此可以将它们视为每个样本位置的特征模式。通过考虑次要废水中的分布方式,可以改善通过深床过滤进行的深度处理。在原始污水和主要废水中,COD的45-90%和磷的35-80%与悬浮固体有关。在次级废水中,COD含量下降到14-45%,而磷含量增加到55-80%。得出了与悬浮物去除工艺相关的先进污染物减少的更好设计的结论。

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