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中试规模的聚砜超滤图案化膜:卷对卷浇铸系统上的相转化参数优化

Pilot-Scale Polysulfone Ultrafiltration Patterned Membranes: Phase-Inversion Parametric Optimization on a Roll-to-Roll Casting System.

作者信息

Ilyas Ayesha, Vankelecom Ivo F J

机构信息

Membrane Technology Group (MTG), Division cMACS, Faculty of Bioscience Engineering, KU Leuven, Celestijnenlaan 200F, P.O. Box 2454, 3001 Leuven, Belgium.

出版信息

Membranes (Basel). 2025 Jul 31;15(8):228. doi: 10.3390/membranes15080228.

Abstract

The scalability and processability of high-performance membranes remain significant challenges in membrane technology. This work focuses on optimizing the pilot-scale production of patterned polysulfone (PSf) ultrafiltration membranes using the spray-modified non-solvent-induced phase separation (s-NIPS) method on a roll-to-roll pilot line. s-NIPS has already been studied extensively at lab-scale to prepare patterned membranes for various applications including membrane bioreactors (MBR), reverse osmosis (RO) and forward osmosis (FO). Although studied at the lab scale, membranes prepared at a larger scale can significantly differ in performance; therefore, phase inversion parameters, including polymer concentration, molecular weight, and additive type (i.e., polyethylene glycol (PEG) or polyvinylpyrolidine (PVP)) and concentration, were systematically varied when casting on a roll-to-roll, 12″ wide pilot line to identify optimal conditions for achieving defect-free, high-performance, patterned PSf membranes. The membranes were characterized for their pure water permeance, BSA rejection, casting solution viscosities, and resulting morphology. s-NIPS patterned membranes exhibit 150-350% increase in water flux as compared to their reference flat membrane, thanks to very high pattern heights up to 825 µm and formation of finger-like macrovoids. This work bridges the gap between lab-scale and pilot-scale membrane preparation, while proposing an upscaled membrane with great potential for use in water treatment.

摘要

高性能膜的可扩展性和可加工性仍然是膜技术中的重大挑战。这项工作的重点是在卷对卷中试生产线上,使用喷雾改性非溶剂诱导相分离(s-NIPS)方法优化图案化聚砜(PSf)超滤膜的中试规模生产。s-NIPS已经在实验室规模上进行了广泛研究,用于制备适用于各种应用的图案化膜,包括膜生物反应器(MBR)、反渗透(RO)和正向渗透(FO)。尽管在实验室规模上进行了研究,但大规模制备的膜在性能上可能存在显著差异;因此,在12英寸宽的卷对卷中试生产线上浇铸时,系统地改变了相转化参数,包括聚合物浓度、分子量、添加剂类型(即聚乙二醇(PEG)或聚乙烯吡咯烷酮(PVP))和浓度,以确定制备无缺陷、高性能、图案化PSf膜的最佳条件。对这些膜的纯水通量、牛血清白蛋白截留率、浇铸溶液粘度和所得形态进行了表征。与参考平板膜相比,s-NIPS图案化膜的水通量提高了150-350%,这得益于高达825 µm的非常高的图案高度和指状大孔的形成。这项工作弥合了实验室规模和中试规模膜制备之间的差距,同时提出了一种具有巨大水处理应用潜力的放大膜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d187/12388136/544a3d6ba3aa/membranes-15-00228-g001.jpg

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