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首页> 外文期刊>Journal of Environmental Science and Health >Integrated in-line coagulation-aerated ultrafiltration for drinking-water production: A case study from laboratory to pilot plant
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Integrated in-line coagulation-aerated ultrafiltration for drinking-water production: A case study from laboratory to pilot plant

机译:集成在线凝结-充气超滤用于饮用水生产:从实验室到中试工厂的案例研究

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A pilot-scale study was made for drinking-water production from low-quality influents with in-line coagulation as pre-treatment of aerated ultrafiltration. Optimum flocculation parameters were previously determined in the laboratory, searching for large and strong flocs that could resist aeration without increasing the membrane fouling. Nevertheless, the comparison of the jar tests and the pilot-scale results showed that the former could help pre-dimensioning the flocculation facilities but could not precisely reproduce the behavior of the flocs in the membrane tank. The optimum coagulant dosage enabled the highest dissolved organic carbon (DOC) removal without affecting membrane fouling. Additionally, as opposed to the jar-test results, long retention times led to the lowest fouling rates while the velocity gradient affected neither the effluent quality nor the membrane fouling. These findings suggested that the influence of the flocculation parameters was masked by aeration inside the membrane tank but, even so, 43% and 82% DOC and UVA(254) removals, respectively, were reached. Furthermore, the growth of the total membrane resistance with time was logarithmic instead of linear, confirming the suitability of the pre-treatment for low-quality influents.
机译:进行了一项中试研究,目的是通过在线凝结作为曝气超滤的预处理,从劣质进水中生产饮用水。最佳絮凝参数是先前在实验室中确定的,以寻找能够抵抗通气而又不会增加膜污染的大而结实的絮凝物。但是,震击试验和中试规模结果的比较表明,前者可以帮助预先确定絮凝设备的尺寸,但不能精确地再现膜罐中絮凝物的行为。最佳的混凝剂剂量可以最大程度地去除溶解的有机碳(DOC),而不会影响膜污染。另外,与震击试验结果相反,较长的保留时间导致最低的结垢率,而速度梯度既不影响废水质量也不影响膜结垢。这些发现表明,絮凝参数的影响被膜罐内的曝气所掩盖,但即使如此,分别达到了43%和82%的DOC和UVA(254)去除率。此外,总膜电阻随时间的增长是对数的,而不是线性的,这证实了预处理对于低质量进水的适用性。

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