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Development of novel hydrophilic ionic liquid membranes for the recovery of biobutanol through pervaporation

机译:通过渗透蒸发回收生物丁醇的新型亲水性离子液体膜的开发

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摘要

This paper aims to develop novel hydrophilic ionic liquid membranes using pervaporation for the recovery of biobutanol. Multiple polyvinyl alcohol (PVA) membranes based on three commercial ionic liquids with different loading were prepared for various experimental trials. The ionic liquids selected for the study include tributyl (tetradecyl) phosphonium chloride ([TBTDP] [Cl]), tetrabutyl phosphonium bromide ([TBP] [Br]) and tributyl methyl phosphonium methylsulphate ([TBMP] [MS]). The synthesized membranes were characterized and tested in a custom-built pervaporation set-up. All ionic liquid membranes showed better results with total flux of 1.58 kg/m(2)h, 1.43 kg/m(2)h, 1.38 kg/m(2)h at 30% loading of [TBP] [Br], [TBMP] [MS] and [TBTDP] [Cl] respectively. The comparison of ionic liquid membranes revealed that by incorporating [TBMP]MS to PVA matrix resulted in a maximum separation factor of 147 at 30 wt% loading combined with a relatively higher total flux of 1.43 kg/m(2)h. Density functional theory (DFT) calculations were also carried out to evaluate the experimental observations along with theoretical studies. The improved permeation properties make these phosphonium based ionic liquid a promising additive in PVA matrix for butanol-water separation under varying temperature conditions.
机译:本文旨在开发利用全蒸发回收生物丁醇的新型亲水性离子液体膜。基于各种负载的三种市售离子液体制备了多种聚乙烯醇(PVA)膜,用于各种实验。选择用于研究的离子液体包括氯化三丁基(十四烷基)nium([TBTDP] [Cl]),溴化四丁基phospho([TBP] [Br])和甲基硫酸三丁基甲基phospho([TBMP] [MS])。对合成的膜进行了表征,并在定制的渗透蒸发装置中进行了测试。所有离子液体膜在[TBP] [Br],[30%负载]下的总通量分别为1.58 kg / m(2)h,1.43 kg / m(2)h,1.38 kg / m(2)h时显示出更好的结果。 TBMP] [MS]和[TBTDP] [Cl]。离子液体膜的比较显示,通过将[TBMP] MS掺入PVA基质,在30 wt%的负载量下,最大分离系数为147,而总通量为1.43 kg / m(2)h,相对较高。还进行了密度泛函理论(DFT)计算,以评估实验观察结果以及理论研究。改进的渗透性能使这些properties基离子液体成为PVA基质中用于在不同温度条件下分离丁醇和水的有希望的添加剂。

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