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设计并制备一种用于渗透汽化脱盐的新型亲水性/疏水性复合膜。

Design and Preparation a New Composite Hydrophilic/Hydrophobic Membrane for Desalination by Pervaporation.

作者信息

Eljaddi Tarik, Favre Eric, Roizard Denis

机构信息

LRGP-Laboratoire Réactions et Génie des Procédés, UMR 7274, 54001 Nancy, France.

出版信息

Membranes (Basel). 2023 Jun 13;13(6):599. doi: 10.3390/membranes13060599.

Abstract

Herein, experimental and theoretical approaches were used to design a new composite membrane for desalination by pervaporation. The theoretical approaches demonstrate the possibility to reach high mass transfer coefficients quite close to those obtained with conventional porous membranes if two conditions are verified: (i) a dense layer with a low thickness and (ii) a support with a high-water permeability. For this purpose, several membranes with a cellulose triacetate (CTA) polymer were prepared and compared with a hydrophobic membrane prepared in a previous study. The composite membranes were tested for several feed conditions, i.e., pure water, brine and saline water containing a surfactant. The results show that, whatever the tested feed, no wetting occurred during several hours of desalination tests. In addition, a steady flux was obtained together with a very high salt rejection (close to 100%) for the CTA membranes. Lastly, the CTA composite membrane was tested with real seawater without any pretreatment. It was shown that the salt rejection was still very high (close to 99.5%) and that no wetting could be detected for several hours. This investigation opens a new direction to prepare specific and sustainable membranes for desalination by pervaporation.

摘要

在此,采用实验和理论方法设计了一种用于渗透汽化脱盐的新型复合膜。理论方法表明,如果满足两个条件,就有可能获得与传统多孔膜相当接近的高质量传递系数:(i)具有低厚度的致密层;(ii)具有高透水性的支撑体。为此,制备了几种含三醋酸纤维素(CTA)聚合物的膜,并与先前研究中制备的疏水膜进行了比较。对复合膜在几种进料条件下进行了测试,即纯水、盐水和含表面活性剂的盐水。结果表明,无论测试的进料如何,在数小时的脱盐测试过程中均未发生润湿现象。此外,CTA膜获得了稳定的通量以及非常高的脱盐率(接近100%)。最后,对未经任何预处理的实际海水进行了CTA复合膜测试。结果表明,脱盐率仍然非常高(接近99.5%),并且在数小时内未检测到润湿现象。这项研究为制备用于渗透汽化脱盐的特定且可持续的膜开辟了一个新方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b02/10301471/3d99c42bec9f/membranes-13-00599-g001.jpg

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