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Analysis of nanofiltration membrane performance during softening process of simulated brackish groundwater

机译:模拟微咸水软化过程中纳滤膜的性能分析

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In this paper, one brackish water quality, which typically represented the water quality in the Huanghuai region of China, was simulated and used as feedwater to run an ultrafiltration (UF)-nanofiltration (NF) integrated membrane system. Laboratory-scale experiments were carried out to evaluate NF softening performance. The influences of transmembrane pressure (0.6-2.2 MPa), inlet tangential flow velocity (0.087-0.384 m.s(-1)) and feedwater temperature (7-35 degrees C) on the softening efficiencies of two NF membranes denoted as DK (termed as NF1) and DL (termed as NF2) were investigated. The experimental results revealed that the calculated total hardness and the bivalent ion (SO42-, CO32-, Mg2+ and Ca2+) concentrations in NF2 product water on the same operation were all slightly lower than those in NF1 permeate in two schemes. Additionally, pH value of NF permeate decreased prominently than those in feedwater with increasing of transmembrane pressure, inlet tangential flow velocity or decreasing of feedwater temperature within the testing scope. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文模拟了一种微咸水水质,通常代表中国黄淮地区的水质,并将其用作给水,以运行超滤(UF)-纳滤(NF)集成膜系统。进行了实验室规模的实验以评估NF软化性能。跨膜压力(0.6-2.2 MPa),入口切向流速(0.087-0.384 ms(-1))和给水温度(7-35摄氏度)对两个表示为DK的NF膜的软化效率的影响研究了NF1)和DL(称为NF2)。实验结果表明,在两种操作下,相同操作下NF2产水中计算的总硬度和二价离子(SO42-,CO32-,Mg2 +和Ca2 +)浓度均略低于NF1渗透液。另外,在试验范围内,随着膜压力的升高,入口切向流速的增加或给水温度的降低,NF渗透物​​的pH值明显低于给水。 (C)2016 Elsevier B.V.保留所有权利。

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