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一种用于水处理的中空纤维膜组件开发的新方法:混合聚合物基质。

A New Approach to the Development of Hollow Fiber Membrane Modules for Water Treatment: Mixed Polymer Matrices.

作者信息

da Silva Biron Dionísio, Espíndola Jonathan Cawettiere, Subtil Eduardo Lucas, Mierzwa José Carlos

机构信息

International Reference Center on Water Reuse of the University of São Paulo (IRCWR-USP), Environmental and Hydraulic Department (PHA), Polytechnic School of the University of São Paulo (USP), São Paulo 05508-020, SP, Brazil.

Laboratório de Tecnologias de Tratamento de Águas Urbanas Servidas e Reúso de Água (LabTAUS) of the Federal University of ABC, L005-Block L-Campus Santo André, São Paulo 09210-580, SP, Brazil.

出版信息

Membranes (Basel). 2023 Jun 21;13(7):613. doi: 10.3390/membranes13070613.

Abstract

In this study, mixed matrix hollow fiber polymeric membranes were prepared using polyethersulfone (PES) and polyvinylidene fluoride (PVDF) as polymers in their composition. N-methyl-2-pyrrolidone (NMP) was used as a solvent and demineralized water with an electrical conductivity below 3 μS·cm was used as a non-solvent. A new approach to producing enhanced polymeric hollow fiber membranes based on the preparation of a simple blend PVDF/PES solution, and on the conformation of the composite membranes through the extrusion technique followed by the phase inversion process in a non-solvent bath, was applied. The investigation focused on the preparation of polymeric membranes with different polymer ratios and further assessment of the effects of these proportions on the membrane performance and in specific physical properties. The amount of PVDF ranged from 10 to 90% with 10% steps. The presence of PVDF, although it increased the membranes' plasticity, had a negative effect on the overall mechanical properties of the composite membranes. Scanning electron microscopy (SEM) results showed good dispersion of both polymers in the polymeric matrix. Furthermore, the membrane permeability showed a slight negative correlation with contact angle, suggesting that membrane hydrophilicity played an important role in membrane permeability. Finally, it was found that membranes with low ratios of PVDF/PES may have potential for water treatment applications, due to the combined advantageous properties of PES and PVDF.

摘要

在本研究中,采用聚醚砜(PES)和聚偏氟乙烯(PVDF)作为聚合物成分制备了混合基质中空纤维聚合物膜。以N-甲基-2-吡咯烷酮(NMP)作为溶剂,使用电导率低于3 μS·cm的去离子水作为非溶剂。应用了一种新方法来制备增强型聚合物中空纤维膜,该方法基于制备简单的PVDF/PES混合溶液,以及通过挤出技术制备复合膜,随后在非溶剂浴中进行相转化过程。研究重点在于制备具有不同聚合物比例的聚合物膜,并进一步评估这些比例对膜性能和特定物理性质的影响。PVDF的含量范围为10%至90%,步长为10%。PVDF的存在虽然增加了膜的可塑性,但对复合膜的整体机械性能有负面影响。扫描电子显微镜(SEM)结果表明两种聚合物在聚合物基质中分散良好。此外,膜的渗透率与接触角呈轻微负相关,这表明膜的亲水性在膜渗透率中起重要作用。最后发现,由于PES和PVDF的综合优势特性,低PVDF/PES比例的膜在水处理应用中可能具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bf1/10385592/c014b6c76f02/membranes-13-00613-g001.jpg

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