Liang Can Zeng, Askari Mohammad, Choong Looh Tchuin Simon, Chung Tai-Shung
Department of Chemical & Biomolecular Engineering, National University of Singapore, Singapore, Singapore.
Gradiant International Holdings Pte. Ltd., 1 Cleantech Loop #03-04/05/06, Singapore, Singapore.
Nat Commun. 2021 Apr 20;12(1):2338. doi: 10.1038/s41467-021-22684-1.
Osmotically assisted reverse osmosis (OARO) has become an emerging membrane technology to tackle the limitations of a reverse osmosis (RO) process for water desalination. A strong membrane that can withstand a high hydraulic pressure is crucial for the OARO process. Here, we develop ultra-strong polymeric thin film composite (TFC) hollow fiber membranes with exceptionally high hydraulic burst pressures of up to 110 bar, while maintaining high pure water permeance of around 3 litre/(m h bar) and a NaCl rejection of about 98%. The ultra-strong TFC hollow fiber membranes are achieved mainly by tuning the concentration of the host polymer in spinning dopes and engineering the fiber dimension and morphology. The optimal TFC membranes display promising water permeance under the OR and OARO operation modes. This work may shed new light on the fabrication of ultra-strong TFC hollow fiber membranes for water treatments and desalination.
渗透辅助反渗透(OARO)已成为一种新兴的膜技术,用于解决反渗透(RO)海水淡化过程的局限性。对于OARO过程而言,能够承受高液压的坚固膜至关重要。在此,我们开发出了超强的聚合物薄膜复合(TFC)中空纤维膜,其具有高达110巴的异常高的液压爆破压力,同时保持约3升/(平方米·小时·巴)的高纯水渗透率和约98%的NaCl截留率。这种超强的TFC中空纤维膜主要通过调整纺丝原液中主体聚合物的浓度以及设计纤维尺寸和形态来实现。优化后的TFC膜在OR和OARO操作模式下展现出了良好的透水性能。这项工作可能为用于水处理和海水淡化的超强TFC中空纤维膜的制造提供新的思路。