首页> 外文OA文献 >High Performance Thin-film Composite Membranes with Mesh-Reinforced Hydrophilic Sulfonated Polyphenylenesulfone (sPPSU) Substrates for Osmotically Driven Processes
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High Performance Thin-film Composite Membranes with Mesh-Reinforced Hydrophilic Sulfonated Polyphenylenesulfone (sPPSU) Substrates for Osmotically Driven Processes

机译:具有网眼增强的亲水性磺化聚苯砜(sPPSU)基材的高性能薄膜复合膜,用于渗透驱动工艺

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摘要

We have for the first time combined the strength of hydrophilic sulfonated material and thin woven open-mesh via a continuous casting process to fabricate mesh-reinforced ultrafiltration (UF) membrane substrates with desirable structure and morphology for the development of high-performance thin-film composite (TFC) osmosis membranes. A new sulfonated polyphenylenesulfone (sPPSU) polymer with super-hydrophilic nature is used as the substrate material, while a hydrophilic polyester (PET) open-mesh with a small thickness of 45 μm and an open area of 44.5% is employed as the reinforcing fabric during membrane casting. The newly developed sPPSU-TFC membranes not only exhibit a fully sponge-like cross-section morphology, but also possess excellent water permeability (A=3.4–3.7 L m−2 h−1 bar−1) and selectivity toward NaCl (B=0.10–0.23 L m−2 h−1). Due to the hydrophilic nature and low membrane thickness of 53–67 μm, the PET-woven reinforced sPPSU substrates have remarkably small structural parameters (S) of less than 300 μm. The sPPSU-TFC membranes thereby display impressive water fluxes (Jw) of 69.3–76.5 L m−2 h−1 and 38.7–47.0 L m−2 h−1 against a deionized water feed using 2 M NaCl as the draw solution under pressure retarded osmosis (PRO) and forward osmosis (FO) modes, respectively. This performance surpasses the state-of-the-art commercially available FO membranes. The sPPSU-TFC membranes also show exciting performance for synthetic seawater (3.5 wt% NaCl) desalination and water reclamation from real municipal wastewater. The newly developed PET-woven sPPSU-TFC membranes may have great potential to become a new generation membrane for osmotically driven processes.
机译:我们首次通过连续流延工艺将亲水性磺化材料和薄机织开孔网的强度相结合,以制造具有所需结构和形态的网状增强超滤(UF)膜基材,从而开发出高性能薄膜复合(TFC)渗透膜。一种具有超亲水性的新型磺化聚苯砜(sPPSU)聚合物被用作基材,而亲水性聚酯(PET)的网孔厚度为45μm,开口面积为44.5%,用作增强织物。在膜浇铸过程中。新开发的sPPSU-TFC膜不仅表现出完全的海绵状横截面形态,而且还具有出色的透水性(A = 3.4–3.7 L m-2 h-1 bar-1)和对NaCl的选择性(B = 0.10–0.23 L m-2 h-1)。由于亲水性和53-67μm的低膜厚,PET编织增强sPPSU基材的结构参数(S)非常小,小于300μm。 sPPSU-TFC膜在使用压力为2 M NaCl的去离子水进料中显示出令人印象深刻的水通量(Jw),分别为69.3-76.5 L m-2 h-1和38.7-47.0 L m-2 h-1延迟渗透(PRO)模式和正向渗透(FO)模式。该性能超过了最新的市售FO膜。 sPPSU-TFC膜还表现出令人兴奋的性能,可用于从实际市政废水中脱除合成海水(3.5 wt%NaCl)和进行水回收。新开发的PET编织sPPSU-TFC膜可能具有巨大的潜力,成为用于渗透驱动工艺的新一代膜。

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