首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Effect of spinning conditions on the structure and the gas permeation properties of high flux polyethersulfone-polyimide blend hollow fibers
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Effect of spinning conditions on the structure and the gas permeation properties of high flux polyethersulfone-polyimide blend hollow fibers

机译:纺丝条件对高通量聚醚砜-聚酰亚胺共混中空纤维结构和透气性能的影响

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摘要

In this work, the effects of major spinning parameters, such as: polymer concentration, air gap distance, bore fluid composition, and take-up velocity on the structure and the permeation properties of polyethersulfone-polyimide gas separation hollow fibers are discussed in detail. It is shown that a spinning dope starts to exhibit significant chain entanglement at a critical polymer concentration. Fibers spun from this critical concentration exhibit theoretically the thinnest skin layer and minimum surface porosity. The longer the nascent hollow fiber membrane is exposed to a humid air-gap, the higher the water content in the top layer before demixing occurs. This results in higher surface porosity and gas permeance. Better mixing between the polymer solution and the bore liquid is achieved by adjusting the composition of the bore fluid (NMP/H_2O). Finally, by increasing the velocity of the take-up drum, the permeance of both CO_2 and N_2 decreasw hile their permselectivity remains constant. Suitable selection of the spinning conditions results in gas separation hollow fibers with thin skin layers (0.1 mug), macrovoid-free substructure, high permeation rates (CO_2:40-60 GPU) and selectivity coefficients (a CO_2/N_2: 40). These results compete directly with the performance of commercial gas separation membranes.
机译:在这项工作中,详细讨论了主要纺丝参数,例如:聚合物浓度,气隙距离,膛孔流体成分和吸收速度对聚醚砜-聚酰亚胺气体分离中空纤维的结构和渗透性能的影响。结果表明,纺丝原液在临界聚合物浓度下开始表现出明显的链缠结。从该临界浓度纺出的纤维在理论上表现出最薄的表皮层和最小的表面孔隙率。新生的中空纤维膜暴露于潮湿空气中的时间越长,在发生混合之前顶层中的水含量越高。这导致较高的表面孔隙率和气体渗透性。聚合物溶液和井眼液体之间的更好混合可通过调节井眼流体(NMP / H_2O)的组成来实现。最后,通过提高卷纸滚筒的速度,CO_2和N_2的渗透率都会降低,而其渗透选择性却保持恒定。适当选择纺丝条件可得到具有薄皮层(0.1马克杯),无大孔隙的亚结构,高渗透率(CO_2:40-60 GPU)和选择性系数(CO_2 / N_2:40)的中空纤维气体分离装置。这些结果直接与商用气体分离膜的性能竞争。

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