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Fundamental understanding on the preparation conditions of high-performance polyimide-based hollow fiber membranes for organic solvent nanofiltration (OSN)

机译:关于高性能聚酰亚胺中空纤维膜的有机溶剂纳滤(OSN)的高性能聚酰亚胺中空纤维膜的制备条件的基础知识

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摘要

Integrally skinned asymmetric (ISA) polyimide-based hollow fiber (HF) membranes were prepared via phase inversion followed by chemical crosslinking for organic solvent nanofiltration (OSN). The effect of preparation conditions including air gap length, bore composition, and dope flow rate (expressed as shear rate in the spinneret) on structure, separation performance and solvent stability of the HF-OSN membranes were extensively investigated. Among these conditions, the air gap length has a profound effect on the compactness of the skin layer. The separation performance of the OSN membrane can be effectively tuned by changing the air gap length. The composition of the bore fluid influenced the membrane structure from the synergetic effect of both thermodynamic and kinetic aspects. The variation in elongation ratio due to the swelling of the HF-OSN membrane in different organic solvents is a crucial factor that should be considered during the design of hollow fiber modules for real OSN applications. The shear rate of the spinning solution in the spinneret remarkably impacted the swelling properties and solvent stability of the HF- OSN membrane. Under the optimized shear rate, the prepared HF-OSN membranes had a relatively low swelling tendency in both NMP and DMF and maintained a 99.5% rejection for RDB after 7 days' immersion in DMF. The above investigation might provide both fundamental understanding for the preparation mechanism of high-performance HF-OSN membranes and insightful guidance for the scaling-up of them.
机译:采用相转化和化学交联的方法制备了有机溶剂纳滤(OSN)用整体外皮不对称(ISA)聚酰亚胺基中空纤维(HF)膜。研究了制备条件对HF-OSN膜结构、分离性能和溶剂稳定性的影响,包括气隙长度、孔径组成和涂料流速(以喷丝板中的剪切速率表示)。在这些条件中,气隙长度对表皮层的致密性有着深远的影响。通过改变气隙长度可以有效地调节OSN膜的分离性能。钻井液的组成从热力学和动力学方面的协同效应影响膜结构。HF-OSN膜在不同有机溶剂中溶胀导致的伸长率变化是设计用于实际OSN应用的中空纤维组件时应考虑的一个关键因素。纺丝溶液在喷丝板中的剪切速率显著影响HF-OSN膜的溶胀性能和溶剂稳定性。在最佳剪切速率下,制备的HF-OSN膜在NMP和DMF中的溶胀趋势相对较低,在DMF中浸泡7天后,对RDB的截留率保持在99.5%。上述研究为高性能HF-OSN膜的制备机理提供了基础性的认识,也为其放大提供了深刻的指导。

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