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Impact of preparation method on physical properties and gas separation performance of fluorinated copolymer membranes

机译:制备方法对含氟共聚物膜物理性能和气体分离性能的影响

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Two batches of poly(vinylidene fluoride hexafluoropropylene) [P(VDF-HFP)] copolymer with different monomer ratios were thoroughly characterised and cast into membranes to relate the fundamental properties of this copolymer with its performance in CO2 separation. Solubility testing revealed that the PVDF part of the copolymer was dominating and calculations with Hansen's solubility parameters corroborated the outcome. A very slow solvent evaporation rate and use of solvents with a high boiling point were found to be essential in the formation of defect-free membranes from this copolymer for gas separations. Physical examination, DSC, XRD and TGA were also performed to better link the fundamental membrane properties to the gas separation performance. A low crystallinity in the prepared P(VDF-HFP) membranes was favourable in terms of compatibility, solubility, membrane formation and CO2 separations. (C) 2014 Elsevier B.V. All rights reserved.
机译:对两批不同单体比例的聚偏二氟乙烯六氟丙烯[P(VDF-HFP)]共聚物进行了彻底表征,并将其浇铸成膜,以表明该共聚物的基本性能与其在CO2分离中的性能有关。溶解度测试表明,共聚物的PVDF部分占主导地位,用Hansen溶解度参数进行的计算证实了这一结果。发现非常缓慢的溶剂蒸发速率和使用高沸点的溶剂对于由该共聚物形成用于气体分离的无缺陷膜至关重要。还进行了物理检查,DSC,XRD和TGA,以更好地将基本膜性能与气体分离性能联系起来。就相容性,溶解性,膜形成和CO 2分离而言,所制备的P(VDF-HFP)膜的低结晶度是有利的。 (C)2014 Elsevier B.V.保留所有权利。

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