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Fabrication and characterization of cellulose triacetate porous membranes by combined nonsolvent-thermally induced phase separation

机译:纤维素三乙酸多孔膜组合的非溶剂热诱导相分离的制造与表征

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Cellulose triacetate (CTA) porous membranes were firstly prepared by the combined nonsolvent-thermally induced phase separation (N-TIPS) method. Dimethyl sulfone (DMSO2) and polyethylene glycol (PEG400) were respectively chosen as the TIPS solvent and additive of CTA, while water was used as the NIPS nonsolvent. Their Hansen solubility parameters were analyzed to understand the solution thermodynamics. Detailed investigation was applied on the effects of the polymer concentration, the coagulation bath temperature and the coagulation bath composition on the CTA porous membranes. It is found that both NIPS and TIPS effects simultaneously exist and compete with each other, and further affect the membrane morphology and performance. The NIPS effect can be promoted by lowering the CTA concentration or elevating the coagulation bath temperature, resulting in figure-like macropores and porous top surface. The obtained CTA porous membranes show a water flux as high as 2002.9 +/- 55.2 L/m(2)h. On the contrary, the TIPS effect becomes the dominant factor, and leads to the symmetric sponge-like pores, which facilitate to enhance the mechanical properties. Besides, CTA porous membranes present large surface pore size as well as low fraction of figure-like macropores as increasing the DMSO2 content in the coagulation bath. These CTA porous membranes with excellent water permeability and mechanical strength are promising candidates for microfiltration or the porous substrates of thin film composite membranes.
机译:通过组合的非olvent-热诱导的相分离(N-TIPS)方法首先制备纤维素三乙酸(CTA)多孔膜。分别选择二甲基砜(DMSO 2)和聚乙二醇(PEG400)作为CTA的尖端溶剂和添加剂,而水被用作NONSOLVENT。分析了汉森溶解度参数以了解溶液热力学。对CTA多孔膜上的聚合物浓度,凝血浴温度和凝血浴组合物的影响应用了详细的研究。结果发现,氮气和提示效果同时存在并相互竞争,并进一步影响膜形态和性能。通过降低CTA浓度或升高凝固浴温来促进NIPS效应,导致图状的大孔和多孔顶表面。所获得的CTA多孔膜显示出高达2002.9 +/- 55.2 L / m(2)H的水通量。相反,提示效果成为主导因素,并导致对称的海绵状孔,这有助于提高机械性能。此外,CTA多孔膜存在大的表面孔径以及低分数的图状大孔,因为增加了凝固浴中的DMSO2含量。这些CTA多孔膜具有出色的渗透性和机械强度是对微滤或薄膜复合膜的多孔基板的候选者。

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