Suppr超能文献

纳米复合聚醚砜膜的机械增强及水处理效率:阿克恰伊大坝水过滤应用研究

Mechanical Enhancement and Water Treatment Efficiency of Nanocomposite PES Membranes: A Study on Akçay Dam Water Filtration Application.

作者信息

Güneş-Durak Sevgi, Acarer-Arat Seren, Tüfekci Mertol, Pir İnci, Üstkaya Zeynep, Öz Nurtaç, Tüfekci Neşe

机构信息

Department of Environmental Engineering, Faculty of Engineering-Architecture, Nevsehir Haci Bektas Veli University, Nevsehir 50300, Turkey.

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

出版信息

ACS Omega. 2024 Jul 15;9(29):31556-31568. doi: 10.1021/acsomega.4c01410. eCollection 2024 Jul 23.

Abstract

Polymeric membranes are widely used in water treatment because of their ease of fabrication and low cost. The flux and purification performance of membranes can be significantly improved by incorporating appropriate amounts of nanomaterials into the polymeric membrane matrices. In this study, neat poly(ether sulfone) (PES), PES/nano copper oxide (CuO), and PES/nano zinc oxide (ZnO) membranes are fabricated via phase inversion. The pure water flux of the neat PES membrane, which is 355.14 L/m·h, is increased significantly with the addition of nano-CuO and nano-ZnO, and the pure water fluxes of the nanocomposite membranes vary in the range of 392.65-429.74 L/m·h. Moreover, nano CuO and nano ZnO-doped PES nanocomposite membranes exhibit higher conductivity, color, total organic carbon, boron, iron, selenium, barium, and total chromium removal efficiencies than neat PES membranes. The membrane surfaces examined by Scanning Electron Microscopy (SEM) after water filtration revealed that those containing 0.5% wt. nano CuO and nano ZnO are more resistant to fouling than the membrane surfaces containing 1% wt. nano CuO and nano ZnO. Based on the results of this study, 0.5% wt. nano ZnO-doped PES membrane is found to be the most suitable membrane for use in water treatment due to its high pure water flux (427.14 L/m·h), high pollutant removal efficiency, and high fouling resistance. When the mechanical properties of the membranes are examined, the addition of CuO and ZnO nanoparticles increases the membrane stiffness and modulus of elasticity. The addition of 0.5% and 1% for CuO leads to an increase in the modulus of elasticity by 57.95% and 324.43%, respectively, while the addition of 0.5% and 1% for ZnO leads to an increase in the modulus of elasticity by 480.68% and 1802.43%, respectively. At the same time, the tensile strength of the membranes also increases with the addition of nanomaterials.

摘要

聚合物膜因其易于制备和成本低廉而被广泛应用于水处理领域。通过将适量的纳米材料掺入聚合物膜基质中,可以显著提高膜的通量和净化性能。在本研究中,通过相转化法制备了纯聚醚砜(PES)膜、PES/纳米氧化铜(CuO)膜和PES/纳米氧化锌(ZnO)膜。纯PES膜的纯水通量为355.14L/m·h,添加纳米CuO和纳米ZnO后,纯水通量显著增加,纳米复合膜的纯水通量在392.65 - 429.74L/m·h范围内。此外,纳米CuO和纳米ZnO掺杂的PES纳米复合膜在电导率、颜色、总有机碳、硼、铁、硒、钡和总铬的去除效率方面均高于纯PES膜。水过滤后通过扫描电子显微镜(SEM)检查膜表面发现,含有0.5%重量的纳米CuO和纳米ZnO的膜表面比含有1%重量的纳米CuO和纳米ZnO的膜表面更耐污染。基于本研究结果,发现0.5%重量的纳米ZnO掺杂的PES膜因其高纯水通量(427.14L/m·h)、高污染物去除效率和高抗污染性而最适合用于水处理。当检查膜的机械性能时,CuO和ZnO纳米颗粒的添加增加了膜的硬度和弹性模量。添加0.5%和1%的CuO分别导致弹性模量增加57.95%和324.43%,而添加0.5%和1%的ZnO分别导致弹性模量增加480.68%和1802.43%。同时,膜的拉伸强度也随着纳米材料的添加而增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf8f/11270565/b876565f0531/ao4c01410_0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验