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Preparation of chitosan/cellulose acetate blend hollow fibers for adsorptive performance

机译:壳聚糖/醋酸纤维素共混中空纤维的制备及其吸附性能

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Novel chitosan/cellulose acetate blend hollow fibers were prepared by the wet spinning method to obtain adsorptive membranes. In the hollow fiber membranes, cellulose acetate (CA) acted as a matrix polymer and chitosan (CS) as a functional polymer to provide the membrane with coupling or reactive sites for affinity-based separations. Formic acid was used as the co-solvent for both CA and CS to prepare the dope solution and NaOH solution was used as the external and internal coagulants in the wet spinning fabrication process. The mixability and possible interactions between CA and CS in the blend hollow fibers were investigated through FTIR and XRD analyses. FTIR spectroscopy revealed that the blending of CS with CA involved some chemical interactions. XRD results showed a single peak for CS and CA blend hollow fibers, similar to the one for CA, suggesting that good mixability was achieved between the two polymers. The properties of the blend hollow fibers were characterized through water flux measurements, surface and cross-section examinations and adsorption performances to copper ions and bovine serum albumin (BSA) on the surfaces, and were compared with those for CA hollow fibers. SEM image clearly showed the sponge-like and macrovoids-free porous structures of the hollow fibers. The blend hollow fibers displayed good tensile stress even though the tensile stress reduced with the increase of the CS content in the blend. The blend hollow fibers achieved significantly better adsorption performance as compared to that of CA hollow fibers, indicating the benefit in adding CS into CA to make novel blend hollow fibers in improving the performance of the traditional CA hollow fibers, especially for the affinity-based separation applications.
机译:通过湿纺法制备了新型壳聚糖/醋酸纤维素共混中空纤维,得到了吸附膜。在中空纤维膜中,醋酸纤维素(CA)充当基质聚合物,壳聚糖(CS)充当功能聚合物,从而为膜提供基于亲和力分离的偶联或反应位点。甲酸用作CA和CS的助溶剂以制备涂料溶液,而NaOH溶液用作湿法纺丝制造过程中的内部和外部凝结剂。通过FTIR和XRD分析研究了CA和CS在共混中空纤维中的混合性以及可能的相互作用。 FTIR光谱显示CS与CA的共混涉及一些化学相互作用。 XRD结果显示CS和CA共混中空纤维有一个峰,与CA相似,表明这两种聚合物之间具有良好的混合性。通过水通量测量,表面和横截面检查以及表面对铜离子和牛血清白蛋白(BSA)的吸附性能来表征共混中空纤维的性能,并将其与CA中空纤维进行比较。 SEM图像清楚地显示出中空纤维的海绵状和无大孔的多孔结构。即使拉伸应力随着共混物中CS含量的增加而降低,混纺中空纤维仍显示出良好的拉伸应力。与CA中空纤维相比,共混中空纤维具有明显更好的吸附性能,表明将CS添加到CA中以制备新型共混中空纤维有利于改善传统CA中空纤维的性能,特别是基于亲和力的分离应用程序。

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