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首页> 外文期刊>Journal of Polymer Research >Preparation and characterization of hydrophobic PVDF membranes by vapor-induced phase separation and application in vacuum membrane distillation
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Preparation and characterization of hydrophobic PVDF membranes by vapor-induced phase separation and application in vacuum membrane distillation

机译:气相诱导相分离法制备疏水性PVDF膜及其表征及在真空膜蒸馏中的应用

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Hydrophobic symmetric flat-sheet membranes of polyvinylidene fluoride (PVDF) for use in vacuum membrane distillation (VMD) were successfully fabricated by the vapor-induced phase separation (VIPS) method using the double-layer casting process. To avoid the delamination that often occurs in double-layered membranes, the same PVDF polymer was employed in both the upper layer and support layer casting solutions. Solutions with low and high PVDF contents were co-cast as the upper layer and support layer of the membrane that was formed. In the VIPS process, the low PVDF content solution favored the formation of a layer with a porous and hydrophobic surface, whereas the solution with a high PVDF concentration favored the formation of a layer with high mechanical strength. The effect of the vapor-induced time on the morphological properties of the membranes was studied. As the vapor-induced time was increased, the cross-section of the membrane changed from an asymmetrical finger-like structure to a symmetrical sponge-like structure, and the surface of the membrane became rough and porous. The membrane subjected to the longer vapor-induced time also exhibited a higher permeating flux during the VMD process. The best PVDF membrane fabricated in this study had a mean radial pore size of 0.49 μm, and the rough upper surface produced a static contact angle of 145 with water. During the VMD process with a 3.5 wt.% sodium chloride (NaCl) aqueous solution, the best membrane that was fabricated produced a permeating flux of 22.4 kg m~(-2) h~(-1) and an NaCl rejection rate of 99.9 % at a feed temperature of 73 C and a downstream pressure of 31.5 kPa. This performance is comparable to or superior to the performances of most of the flat-sheet PVDF membranes reported in the literature and a polytetrafluoroethylene membrane used in this study.
机译:通过采用双层浇铸工艺的气相诱导相分离(VIPS)方法成功制造了用于真空膜蒸馏(VMD)的聚偏二氟乙烯(PVDF)疏水对称平板膜。为了避免双层膜中经常发生的分层,在上层和支撑层浇铸溶液中均使用了相同的PVDF聚合物。将具有低和高PVDF含量的溶液共同浇铸为所形成膜的上层和支撑层。在VIPS工艺中,低PVDF含量的溶液有利于形成具有多孔疏水表面的层,而PVDF浓度高的溶液有利于形成具有高机械强度的层。研究了蒸汽诱导时间对膜的形态学特性的影响。随着蒸气诱导时间的增加,膜的横截面从不对称的手指状结构变为对称的海绵状结构,并且膜的表面变得粗糙且多孔。在VMD过程中,经受较长的蒸气诱导时间的膜还表现出较高的渗透通量。在这项研究中制造的最好的PVDF膜的平均径向孔径为0.49μm,粗糙的上表面与水的静态接触角为145。在使用3.5 wt。%氯化钠(NaCl)水溶液的VMD过程中,制造的最佳膜产生的渗透通量为22.4 kg m〜(-2)h〜(-1),NaCl截留率为99.9进料温度为73℃,下游压力为31.5 kPa时,碳氢化合物的含量为5%。该性能与文献中报道的大多数平板PVDF膜和本研究中使用的聚四氟乙烯膜的性能可比或更高。

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