Preparation and air-separation properties of membrane blends of low-molecular-weight liquid crystals with cellulose derivatives

Mei-Rong Huang, Xin-Gui Li
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引用次数: 19

Abstract

Four kinds of low-molecular-weight liquid crystals (LCs) (cholesteryl oleyl carbonate (COC), the benzoate-containing mixture LC DYC, p-heptyl-p′-cyanobiphenyl (7CB), p-pentylphenol-p′-methoxybenzoate (5PMB) and four cellulose derivatives (ethyl cellulose (EC), cellulose diacetate, cellulose triacetate, cellulose nitrate) were used to prepare blend membranes of thickness 13–45 μm by a solution casting technique. The oxygen permeability, the oxygen/nitrogen separation factor, the permeation flux QOEA and the oxygen concentration YO2 of the oxygen-enriched air (OEA) through the cellulose derivative membranes with different LCs were studied by a constant pressure-variable volume method. The experimental results show that the membrane-forming ability, uniformity, toughness and air-separation properties of the cellulose derivatives have been improved by adding no more than 12 wt% LC. The air-separation properties of the resulting membranes vary significantly with membrane composition, temperature and pressure difference. Of all the membranes, the COC/EC(4/96) membrane of thickness 18 μm exhibits the highest QOEA value of 1.8 × 10−4 cm3(STP) s−1 cm−2 and maintains the YO2 value of 38.8% in a single operation.

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低分子液晶与纤维素衍生物共混膜的制备及空分性能
采用溶液浇铸法制备了4种低分子液晶(胆固醇油酯(COC)、含苯甲酸酯混合物LC DYC、对辛基-对′-氰苯(7CB)、对戊基苯酚-对′-甲氧基苯甲酸酯(5PMB)和4种纤维素衍生物(乙基纤维素(EC)、二乙酸纤维素、三乙酸纤维素、硝酸纤维素),共混膜厚度为13 ~ 45 μm。采用恒压变体积法研究了不同LCs纤维素衍生物膜对富氧空气(OEA)的透氧性、氧氮分离系数、透氧通量QOEA和氧浓度YO2。实验结果表明,添加不超过12 wt%的LC可提高纤维素衍生物的成膜能力、均匀性、韧性和空气分离性能。所得膜的空气分离性能随膜的组成、温度和压差的不同而有显著差异。在所有膜中,厚度为18 μm的COC/EC(4/96)膜的QOEA值最高,为1.8 × 10−4 cm3(STP) s−1 cm−2,单次操作的YO2值保持在38.8%。
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