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Preparation and characterization of cellulose triacetate membranes via thermally induced phase separation

机译:通过热诱导相分离制备和表征三醋酸纤维素膜

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摘要

A series of cellulose triacetate (CTA) membranes were prepared via thermally induced phase separation (TIPS) process with dimethyl sulfone (DMSO2) and polyethylene glycol (PEG400) as a crystallizable diluent and an additive, respectively. The phase separation behavior of CTA/DMSO2/PEG400 ternary system was investigated in detail by optical microscopy, differential scanning calorimetry and wide angle X-ray diffraction. This ternary system dynamically undergoes solid-solid phase separation and thus the CTA membranes possess cellular, lacy, plate-, or even ellipse-shaped pores. However, we can modulate the pore structure, porosity, water flux, and mechanical properties of the membranes by varying polymer concentration, composition of the mixed diluent, and cooling condition. Due to the intrinsic hydrophilicity, the prepared CTA membranes have better antifouling property than polysulfone membranes. These porous membranes were used as supports to fabricate thin-film composite forward osmosis (FO) membranes, which show good water permeability and selectivity. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 44454.
机译:以二甲基砜(DMSO2)和聚乙二醇(PEG400)为可结晶稀释剂和添加剂,采用热诱导相分离(TIPS)工艺制备了一系列三醋酸纤维素(CTA)膜。采用光学显微镜、差示扫描量热法和广角X射线衍射法对CTA/DMSO2/PEG400三元体系的相分离行为进行了详细研究。这种三元系统动态地经历固-固相分离,因此CTA膜具有细胞状、花边状、板状甚至椭圆形的孔隙。然而,我们可以通过改变聚合物浓度、混合稀释剂的组成和冷却条件来调节膜的孔隙结构、孔隙率、水通量和机械性能。由于其固有的亲水性,制备的CTA膜比聚砜膜具有更好的防污性能。这些多孔膜被用作制造薄膜复合正渗透(FO)膜的载体,具有良好的透水性和选择性。(c) 2016 Wiley Periodicals, Inc. J. Appl. Polym.科学 2017, 134, 44454.

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