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具有梯度不对称结构的绿色溶剂可加工复合微/纳米纤维膜用于高效微滤

Green-Solvent-Processable Composite Micro/Nanofiber Membrane with Gradient Asymmetric Structure for Efficient Microfiltration.

作者信息

Ji Keyu, Liu Chengkun, He Haijun, Mao Xue, Wei Liang, Zhou Fenglei, Sun Runjun

机构信息

School of Textile Science and Engineering, Xi'an Polytechnic University, Xi'an, 710048, China.

Key Laboratory of Functional Textile Material and Product, Ministry of Education, Xi'an Polytechnic University, Xi'an, 710048, China.

出版信息

Small. 2023 Aug;19(33):e2207330. doi: 10.1002/smll.202207330. Epub 2023 Apr 20.

Abstract

Electrospinning technology has attracted extensive attention in recent decades and is widely used to prepare nanofiber membranes from hundreds of polymers. Polyvinyl formal acetal (PVFA), as a polymer with excellent properties such as high strength and heat resistance, is not reported on the electrospun water treatment membrane. In this paper, the preparation process of electrospun PVFA nanofiber membrane is optimized, and the effect of sodium chloride (NaCl) addition on the physical and mechanical properties and microfiltration performance of nanofiber membrane is also explored. And the hydrophobic PVFA nanofiber filter layer is then combined with a hydrophilic nonwoven support layer to construct a composite micro/nanofiber membrane with a pore-size gradient structure and a hydrophilic/hydrophobic asymmetric structure. Finally, unidirectional water transport and water treatment performance are further investigated. The results show that the tensile breaking strength of the composite membrane can reach up to 37.8 MPa, the retention rate for particles with the size of 0.1-0.3 µm is 99.7%, and the water flux is 513.4 L m h under the hydrostatic pressure. Moreover, it still has a retention of more than 98% after three repeated uses. Therefore, the electrospun PVFA composite membrane has a great potential in microfiltration.

摘要

近几十年来,静电纺丝技术备受关注,并被广泛用于由数百种聚合物制备纳米纤维膜。聚乙烯醇缩甲醛(PVFA)作为一种具有高强度、耐热性等优异性能的聚合物,尚未见有关其静电纺丝水处理膜的报道。本文优化了静电纺丝PVFA纳米纤维膜的制备工艺,并探讨了添加氯化钠(NaCl)对纳米纤维膜物理力学性能和微滤性能的影响。然后将疏水性PVFA纳米纤维过滤层与亲水性非织造支撑层相结合,构建具有孔径梯度结构和亲水/疏水不对称结构的复合微/纳米纤维膜。最后,进一步研究了其单向输水性能和水处理性能。结果表明,复合膜的拉伸断裂强度可达37.8 MPa,对0.1-0.3 µm粒径颗粒的截留率为99.7%,静水压下的水通量为513.4 L m h。此外,经过三次重复使用后,其截留率仍超过98%。因此,静电纺丝PVFA复合膜在微滤方面具有巨大潜力。

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