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Effect of coagulant temperature and composition on surface morphology and mass transfer properties of cellulose acetate hollow fiber membranes

机译:混凝剂温度和组成对醋酸纤维素中空纤维膜表面形态和传质性能的影响

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摘要

Cellulose acetate (CA) hollow fibers were spun via the dry-jet wet spinning technique under various external coagulant compositions and temperatures. The surface morphology of the resulting hollow fiber was examined using field emission scanning electron microscopy (FESEM) and tapping mode atomic force microscopy (TMAFM). The pure water permeability (PWP) and the retention of dextran of the hollow fiber were also measured. The results showed that both the temperature and composition can affect greatly the surface morphology and hence the permeation performance of hollow fiber membranes when the temperature was over 55℃ and the dimethyl for-mamide (DMF) content was higher than 15%. The on-line draw ratio increased with the coagulant temperature and DMF content (in the range of 0 to 10%) in the external coagulant. The ultimate tensile strength also increased when the fibers were coagulated in 5-10% DMF and at 70℃. The PWP increased with the DMF content in the coagulant and the coagulant temperature. The retention of dextran decreased with the increase of the DMF content in the coagulant and the coagulant temperature.
机译:乙酸纤维素(CA)中空纤维通过干喷湿纺技术在各种外部凝结剂组成和温度下纺丝。使用场发射扫描电子显微镜(FESEM)和敲击模式原子力显微镜(TMAFM)检查所得中空纤维的表面形态。还测量了中空纤维的纯水渗透率(PWP)和葡聚糖的保留率。结果表明,温度和组成均会影响中空纤维膜的表面形貌,从而影响中空纤维膜的渗透性能,温度超过55℃且二甲基甲酰胺(DMF)含量高于15%。在线吸引比随凝结剂温度和外部凝结剂中DMF含量(0至10%)的增加而增加。当纤维在5-10%DMF中和70℃下凝固时,极限抗拉强度也会增加。 PWP随凝结剂中DMF含量和凝结剂温度的增加而增加。右旋糖酐的保留量随凝结剂中DMF含量的增加和凝结剂温度的降低而降低。

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