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首页> 外文期刊>Chemical engineering journal >Fouling behavior of dissolved organic matter in nanofiltration membranes from a pilot-scale drinking water treatment plant: An autopsy study
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Fouling behavior of dissolved organic matter in nanofiltration membranes from a pilot-scale drinking water treatment plant: An autopsy study

机译:中试规模的饮用水处理厂纳滤膜中溶解有机物的结垢行为:尸检研究

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This study investigated the fouling behavior and mechanisms of nariofiltration (NF) membranes fed with surface water pre-treated using a combined coagulation and microfiltration (CC-MF) process in a pilot scale drinking water treatment plant through membrane autopsies and characterization of the desorbed foulants. The CC-MF process removed hydrophobic DOM components preferentially and mitigated biofouling of the NF membranes efficiently. This clearly shows that the fouling characteristics of the NF membranes can be influenced by the CC-MF process. The fouling formation of the NF membranes was dominated by chemically removable DOM components primarily consisting of hydrophilic fractions and inorganic scaling. However, the surfaces of the fouled NF membrane (contact angle = 65) were more hydrophobic than those of the virgin NF membrane (contact angle = 57). This is attributed to the differences in the fouling behavior of hydrophobic and hydrophilic DOM components in relation to the surface features of the NF membranes (i.e., surface zeta potential and contact angle). The initial formation of organic fouling layers on the NF membranes surfaces was caused by deposition of hydrophilic DOM components, which can decrease electrostatic repulsive forces between humic substances and the negatively charged NF membrane surfaces by reducing the negative surface zeta potential. Therefore, hydrophobic DOM components accumulated more readily onto the NF membrane surfaces. The covering hydrophilic organic fouling layers with hydrophobic fractions may intensify the subsequent adsorption of hydrophobic DOM components on the NF membrane surfaces by increasing the contact angle. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究调查了中试规模的饮用水处理厂中采用混凝和微滤(CC-MF)工艺预处理的地表水处理的纳滤膜(NF)膜的结垢行为和机理,并对膜解吸的污垢进行了表征。 CC-MF工艺可优先去除疏水DOM成分,并有效减轻NF膜的生物污染。这清楚地表明,NF-膜的结垢特性会受到CC-MF工艺的影响。 NF膜的结垢形成主要由化学上可去除的DOM组分决定,这些组分主要由亲水部分和无机垢组成。但是,被污染的NF膜(接触角= 65)的表面比未处理的NF膜(接触角= 57)的表面更疏水。这归因于疏水和亲水DOM组分的结垢行为相对于NF膜的表面特征(即,表面ζ电位和接触角)的差异。 NF膜表面上最初形成的有机污垢层是由亲水性DOM组分的沉积引起的,可以通过降低负表面Zeta电位来降低腐殖质与带负电荷的NF膜表面之间的静电排斥力。因此,疏水性DOM成分更容易累积在NF膜表面上。用疏水部分覆盖亲水性有机污垢层可以通过增加接触角来增强随后的疏水性DOM组分在NF膜表面上的吸附。 (C)2016 Elsevier B.V.保留所有权利。

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