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Influence of flocculation and adsorption as pretreatment on the fouling of ultrafiltration and nanofiltration membranes: Application with biologically treated sewage effluent

机译:絮凝和吸附预处理对超滤和纳滤膜结垢的影响:生物处理污水的应用

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摘要

Membrane fouling is a critical limitation on the application of membranes to wastewater reuse. This work aims to understand the fouling phenomenon which occurs in ultrafiltration (UF; 17500 molecular weight cutoff (MWCO)) and nanofiltration (NF; 250 MWCO) membranes, with and without pretreatment. For this purpose, the molecular weight (MW) distribution of the organics has been used as a parameter to characterize the influent, the permeate, and the foulant on the membrane surface. The variation of foulant concentration on the membrane due to pretreatment of the influent by flocculation and/or adsorption was investigated in detail. With the UF membrane, the peak of the MW distribution of organics in the permeate depended on the pretreatment; for example, the weight-averaged MW (M-w) of 675 without pretreatment shifted down to 314 with pretreatment. In the case of the NF membrane, the Mw of organics in the permeate was 478 (without pretreatment) and 310 (with flocculation followed by adsorption). The Mw of the organics in the foulant on the membrane surface was 513 (UF) and 192 (NF) without pretreatment and 351 (UF) and 183 (NF) after pretreatment with flocculation followed by adsorption, respectively. Without the pretreatment, the foulant concentration was higher on both membranes. The difference was more significant on the UF membrane than on the NF membrane. For both membranes, the flocculation-and-then-adsorption pretreatment proved very effective
机译:膜结垢是将膜应用于废水回用的关键限制。这项工作旨在了解在有或没有预处理的情况下,超滤膜(UF; 17500分子量截留(MWCO))和纳滤膜(NF; 250 MWCO)膜中发生的结垢现象。为此,有机物的分子量(MW)分布已用作表征膜表面上的进水,渗透液和污垢的参数。详细研究了通过絮凝和/或吸附对进水进行预处理后,膜上污染物浓度的变化。使用超滤膜时,渗透物中有机物的MW分布峰值取决于预处理。例如,未经预处理的重均分子量MW(M-w)为675,经过预处理后降低为314。对于NF膜,渗透液中有机物的Mw为478(未经预处理)和310(经絮凝然后吸附)。在未经预处理的情况下,膜表面污垢中有机物的Mw分别为513(UF)和192(NF),在经过絮凝然后吸附的预处理之后,分别为351(UF)和183(NF)。如果不进行预处理,则两个膜上的污垢浓度都较高。 UF膜上的差异比NF膜上的差异更大。对于两种膜,絮凝然后吸附预处理都非常有效

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