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用离子液体接枝醋酸纤维素制备用于生物燃料净化膜的纤维素:阴离子的影响。

Grafting cellulose acetate with ionic liquids for biofuel purification membranes : Influence of the anion.

机构信息

Laboratoire de Chimie Physique Macromoléculaire, Université de Lorraine, CNRS, LCPM, ENSIC, 1 rue Grandville, BP 20451, F-54 000 Nancy, France.

Laboratoire IMP@Lyon1, Université Claude Bernard Lyon 1, Univ Lyon, CNRS UMR 5223, 15 Bd. André Latarjet, 69622 Villeurbanne Cedex, France.

出版信息

Carbohydr Polym. 2018 Sep 15;196:176-186. doi: 10.1016/j.carbpol.2018.05.008. Epub 2018 May 10.

Abstract

Membranes made from cellulose acetate grafted with imidazolium or ammonium ionic liquids (ILs) containing different anions were considered for ethyl tert-butyl ether biofuel purification by pervaporation. The new cellulosic materials were obtained after bromide (Br) exchange by different anions (TfN, BF, AcO). IL structure-membrane property relationships revealed that the membrane properties were strongly improved by varying the anion structure, molecular size and hydrogen bonding acceptor ability β in the Kamlet-Taft polarity scale. The grafted ammonium IL with AcO anion combined the highest parameter β with big cation/anion sizes and finally led to the best membrane properties with a normalized pervaporation flux of 0.41 kg/h m (almost 20 times that of virgin cellulose acetate) for a reference thickness of 5 μm and a permeate ethanol content of 100%. Such properties thus corresponded to an outstanding separation factor at 50 °C.

摘要

将接枝了咪唑鎓或铵离子液体(IL)的醋酸纤维素膜(其中 IL 含有不同的阴离子)用于乙基叔丁基醚生物燃料的渗透蒸发提纯。新的纤维素材料是通过溴化物(Br)与不同的阴离子(TfN、BF、AcO)交换得到的。IL 结构-膜性能关系表明,通过改变阴离子结构、分子大小和氢键接受能力β(在 Kamlet-Taft 极性标度中),可以显著改善膜性能。带有 AcO 阴离子的接枝铵 IL 结合了最高的参数β与较大的阳离子/阴离子尺寸,最终导致最好的膜性能,在 5 µm 的参考厚度下归一化渗透蒸发通量为 0.41 kg/h m(几乎是原始醋酸纤维素的 20 倍),且渗透物中乙醇含量为 100%。在 50°C 时,这些性能对应的分离因子非常高。

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