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首页> 外文期刊>Separation and Purification Technology >Preparation and characterization of novel triple layer hydrophilic-hydrophobic composite membrane for desalination using air gap membrane distillation
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Preparation and characterization of novel triple layer hydrophilic-hydrophobic composite membrane for desalination using air gap membrane distillation

机译:气隙膜蒸馏用于淡化的新型三层亲水-疏水复合膜的制备与表征

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Conventional membrane distillation (MD) membranes typically consist of two layers i.e. a support layer and a microporous hydrophobic layer that is usually casted onto the support layer. In this paper a triple layer configuration, consisting of a thin hydrophobic nanofiber layer over the conventional casted micro-porous layer in addition to the support layer is prepared. The layers are bound to each other by heat pressing and solvent binding. The unique membrane was characterized using the measurement of the liquid entry pressure of water (LEPw), scanning electron microscopy (SEM), pore size, mat thickness and the surface water contact angle (CA). The triple layer membranes, conventional dual layer membranes and nanofiber only membranes were tested in an Air-Gap Membrane Distillation (AGMD) process using a feed solution containing 3.5 wt.% NaCl. The water contact angle of the nanofiber selective layer, middle micro porous layer and the hydrophilic supportive layers are approximately 145°, 92° and 30° respectively. The LEPw of the triple layer composite membrane was found to be 1.6 times higher than the conventional dual layer membrane (i.e. without the nanofiber selective layer) and more than 8.7 times higher than that of the nanofiber membrane. The fabricated triple layer composite membranes were tested in an AGMD process and the flux was also found to be 1.5 times higher than that for the dual layer membrane (i.e. without nanofiber selective layer). In terms of salt penetration, the triple layer membrane had the lowest salt penetration <0.02% at different feed water temperatures, while the salt penetration of the dual layer membrane was higher at <0.07% and increased with increasing feed water temperature. The nanofiber only membrane's salt penetration increased dramatically to more than 90% within the first few minutes of filtration indicating severe pore wetting. The triple layer membrane could be operated continuously for more than 40 h without any significant change to permeate quality, whereas the dual layer membrane could only be operated for 10 h before pore wetting occurred. Based on the results it is proposed that the triple layer configuration with nanofiber based selective layer above the conventional dual layer could be a promising membrane for membrane distillation.
机译:常规的膜蒸馏(MD)膜通常由两层组成,即支撑层和通常浇铸在支撑层上的微孔疏水层。在本文中,制备了三层结构,该结构由除支撑层之外的常规浇铸微孔层上的疏水纳米纤维薄层组成。这些层通过热压和溶剂粘合而彼此粘合。通过测量水的液体进入压力(LEPw),扫描电子显微镜(SEM),孔径,垫层厚度和表面水接触角(CA)来表征独特的膜。使用包含3.5重量%的NaCl的进料溶液,在气隙膜蒸馏(AGMD)方法中测试了三层膜,常规双层膜和仅纳米纤维膜。纳米纤维选择层,中间微孔层和亲水性支撑层的水接触角分别为约145°,92°和30°。发现三层复合膜的LEPw比常规双层膜(即,没有纳米纤维选择层)高1.6倍,比纳米纤维膜高8.7倍。在AGMD工艺中测试了制成的三层复合膜,其通量也比双层膜(即无纳米纤维选择层)高1.5倍。在盐渗透方面,三层膜在不同进水温度下的盐渗透率最低,小于0.02%,而双层膜的盐渗透在<0.07%时较高,并随进水温度的升高而增加。仅纳米纤维膜的盐渗透率在过滤的最初几分钟内急剧增加到90%以上,表明严重的孔润湿。三层膜可以连续运行40个小时以上,而渗透质量没有明显变化,而双层膜只能在发生孔润湿之前运行10个小时。基于该结果,提出在常规双层之上具有基于纳米纤维的选择性层的三层构造可能是用于膜蒸馏的有前途的膜。

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