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Wastewater treatment by slow sand filters using uncoated and iron-coated fine sand: impact of hydraulic loading rate and media depth

机译:使用未涂层和铁涂层细砂的缓慢砂膜过滤器进行废水:液压加载速率和介质深度的影响

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Two lab-scale slow sand filters (SSFs), packed with uncoated fine sand (SSFu) and iron-coated fine sand (SSFco), were operated to study their efficiency in treating municipal wastewater. The effects of sand coating; hydraulic loading rates (HLRs) (0.56, 0.85, and 1.12?cm/h); and filter depths (22, 32, and 42?cm) were evaluated. Sand coating did not have any significant effect on wastewater treatment by the SSF at all depths (p?>?0.05). The removals of total suspended solids (TSS), chemical oxygen demand (COD), and phosphate decreased with increase in HLR. On the other hand, media depth had positive effects on the removal of turbidity, TSS, COD, and total coliforms (TC). At HLR of 0.56?cm/h, the average removals of each studied parameter, i.e., turbidity, TSS, and COD, at filter depth d42 in SSFu and SSFco were 94.3, 90.1, and 56% and 92.7, 93, and 30.95%, respectively. Both filters efficiently removed the total coliforms (>?90%) and fecal coliform (up to 99%) but inefficient in nitrate removal. Frequent clogging was observed in SSFu due to the colonization of microorganisms on the sand surface, which was confirmed by SEM images. Biofilm formation or microbial colonization was absent in SSFco, which might be responsible for uninterrupted operation of SSFco. Overall, the sand coating is beneficial for long-term operation of SSF.
机译:两个实验室规模的慢砂过滤器(单一股票期货),挤满了无涂层细砂(社会保障办事处)和铁包覆细砂(SSFco),进行操作,以研究它们的效率在处理城市污水。砂涂层的影响;水力负荷率(HLR的)(0.56,0.85,和1.12厘米/小时);和过滤器深度(22,32,和42?厘米)进行了评价。砂涂层并没有对废水处理由SSF在所有深度任何显著影响(p?>?0.05)。总悬浮固体(TSS)的清除,化学需氧量(COD)和磷酸与HLR增加而降低。在另一方面,媒体深度对去除浊度的积极影响,TSS,COD,和总大肠菌群(TC)。在0.56?厘米/小时HLR,每个研究的参数的平均清除,即,浊度,TSS,和COD,在社会保障办事处的滤波器深度D42和SSFco为94.3,90.1和56%和92.7%,93%和30.95% , 分别。两个过滤器有效地除去了总大肠菌群(>?90%)和粪便大肠菌(高达99%),但在去除硝酸盐低效的。在社会保障办事处观察由于砂表面,其通过SEM图像证实微生物的定植频繁堵塞。生物膜形成或微生物的定植缺席在SSFco,这可能是负责SSFco的不间断运行。总体而言,砂涂层对于SSF的长期运行是有益的。

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