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有前景的可持续纳米增强材料对聚砜/聚乙烯吡咯烷酮基膜的影响:增强机械性能和水过滤性能

Effect of Promising Sustainable Nano-Reinforcements on Polysulfone/Polyvinylpyrrolidone-Based Membranes: Enhancing Mechanical Properties and Water Filtration Performance.

作者信息

Acarer Arat Seren, Pir İnci, Tüfekci Mertol, Öz Nurtaç, Tüfekci Neşe

机构信息

Department of Environmental Engineering, Istanbul University-Cerrahpaşa, Avcilar, Istanbul 34320, Turkey.

Faculty of Mechanical Engineering, Istanbul Technical University, Gumussuyu, Istanbul 34437, Turkey.

出版信息

Polymers (Basel). 2024 Dec 18;16(24):3531. doi: 10.3390/polym16243531.

Abstract

In this study, polysulfone/polyvinylpyrrolidone (PSf/PVP, 20 wt%/5 wt%)-based ultrafiltration (UF) membranes reinforced with different ratios (0.5 and 1 wt%) of cellulose nanocrystals (CNCs) and cellulose nanofibres (CNFs) were prepared by the phase inversion method. The effect of CNC, CNF, and CNC-CNF reinforcement on the morphology, roughness, crystallinity, porosity, average pore size, mechanical properties, and filtration performance of PSf/PVP-based membrane was investigated. Distilled water and surface water (lake water) fluxes of the membranes were determined at 3 bar using a dead-end filtration system. The distilled water flux of the fouled-hydraulic cleaned membranes was determined, and scanning electron microscopy (SEM) images of the fouled-cleaned membranes were examined. The flux recovery ratio (FRR) and fouling parameters were calculated to examine the fouling behaviour of the membranes. The mechanical properties of the membranes were modelled by the Mori-Tanaka, finite element, Voigt-Reuss, self-consistent scheme, and Halpin-Tsai methods using Digimat and/or analytically. In addition, the von Mises equivalent stress distributions of the nanocomposites were presented. Among the investigated membranes, PSf/PVP/CNC-0.5 had the highest distilled water flux (475.5 ± 17.77 L/m.h), PSf/PVP/CNF-1 exhibited the stiffest behaviour with an elasticity modulus of 70.63 ± 3.15 MPa, and PSf/PVP/CNC-1 had the best organic matter removal efficiency. The finite element was the most successful modelling method for estimating the mechanical properties of nanocellulose-reinforced flat sheet membranes.

摘要

在本研究中,采用相转化法制备了用不同比例(0.5重量%和1重量%)的纤维素纳米晶体(CNC)和纤维素纳米纤维(CNF)增强的聚砜/聚乙烯吡咯烷酮(PSf/PVP,20重量%/5重量%)基超滤(UF)膜。研究了CNC、CNF以及CNC-CNF增强对PSf/PVP基膜的形态、粗糙度、结晶度、孔隙率、平均孔径、力学性能和过滤性能的影响。使用死端过滤系统在3巴压力下测定了膜的蒸馏水通量和地表水(湖水)通量。测定了污染-水力清洗后膜的蒸馏水通量,并检查了污染-清洗后膜的扫描电子显微镜(SEM)图像。计算了通量恢复率(FRR)和污染参数,以研究膜的污染行为。使用Digimat和/或通过解析法,采用Mori-Tanaka、有限元、Voigt-Reuss、自洽方案和Halpin-Tsai方法对膜的力学性能进行了建模。此外,还给出了纳米复合材料的冯·米塞斯等效应力分布。在所研究的膜中,PSf/PVP/CNC-0.5具有最高的蒸馏水通量(475.5±17.77 L/m·h),PSf/PVP/CNF-1表现出最硬的性能,弹性模量为70.63±3.15 MPa,而PSf/PVP/CNC-1具有最佳的有机物去除效率。有限元法是估计纳米纤维素增强平板膜力学性能最成功的建模方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ee6/11678235/a98c864c3bb8/polymers-16-03531-g001.jpg

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