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首页> 外文期刊>Journal of Applied Polymer Science >Influence of binding interface between active and support layers in composite PDMS membranes on permeation performance
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Influence of binding interface between active and support layers in composite PDMS membranes on permeation performance

机译:PDMS复合膜中活性层和支撑层之间的结合界面对渗透性能的影响

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摘要

Effect of the binding interfaces of composite polydimethylsiloxane (PDMS) membranes on their pervaporation performance was studied. The membranes were made up of PDMS as active skin layer and polysulfone (PSF) or polyamide (PA) as supporting layer. PDMS-PSF membrane was numbered 1, and PDMS-PA membrane numbered 2. The pervaporation experiments were carried out by using the composite membranes and dilute ethanol-water mixture. The experimental measurements for the permeation performance under various operating conditions (e.g., feed concentration and temperature) showed that the specific permeation rate of membrane 2 was over membrane I by seven times at least. A resistance-in-series model was applied to formularize the transport of the permeants. Influence of the binding interfaces between the active skin layer and support layers in these membranes on pervaporation performance was analyzed. The cross section morphology of the membranes and chemical element distribution along membrane thickness were examined by using SEM and EDS. It was found that, although the PDMS intrusion layer into PSF near the interface was only about 2 pm, it gave significant effect on the permeation performance. It implied that the resistance produced by the intrusion layer into PSF was apparently larger than that of PDMS intruding PA and over intrinsic PDMS resistance. These should be probably attributed to structures and formation of the binding interfaces. (c) 2007 Wiley Periodicals, Inc.
机译:研究了复合聚二甲基硅氧烷(PDMS)膜的结合界面对其全蒸发性能的影响。膜由PDMS作为活性表层,聚砜(PSF)或聚酰胺(PA)作为支撑层。 PDMS-PSF膜编号为1,PDMS-PA膜编号为2。使用复合膜和稀乙醇-水混合物进行渗透蒸发实验。在各种操作条件下(例如进料浓度和温度)的渗透性能的实验测量表明,膜2的比渗透率至少是膜I的七倍。应用串联电阻模型来计算渗透物的传输。分析了这些膜中的活性皮肤层和支撑层之间的结合界面对全蒸发性能的影响。使用SEM和EDS检查膜的横截面形态和沿膜厚度的化学元素分布。已发现,尽管进入界面附近的PSF的PDMS入侵层仅约2 pm,但它对渗透性能产生了显着影响。这表明,入侵层进入PSF的电阻明显大于入侵PA的PDMS的电阻,并且超过了固有的PDMS电阻。这些可能应该归因于绑定界面的结构和形成。 (c)2007年Wiley Periodicals,Inc.

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