High performance polyamine-based acid-resistant nanofiltration membranes catalyzed with 1,4-benzenecarboxylic acid in interfacial cross-linking polymerization process

纳滤 化学 聚砜 渗透 聚合 界面聚合 色谱法 化学工程 核化学 聚合物 有机化学 生物化学 单体 工程类
作者
Kayode Hassan Lasisi,Weihao Yao,Qiang Xue,Qin Liu,Kaisong Zhang
出处
期刊:Journal of Membrane Science [Elsevier BV]
卷期号:640: 119833-119833 被引量:51
标识
DOI:10.1016/j.memsci.2021.119833
摘要

Acid-resistant nanofiltration (NF) membranes with both improved permeability and acid stability are in desperate demand for acidic wastewater treatment. Herein, we report a novel polyamine-based nanofiltration membrane with improved flux and excellent acid stability prepared via interfacial cross-linking polymerization reaction of branched polyethyleneimine (BPEI) and 1,4-benzenecarboxylic acid (TPA) with cyanuric chloride (CC) on porous polysulfone support. Evaluated using various characterization techniques, the optimized NF membrane achieved at 1.0% (w/v) BPEI, 0.10% (w/v) CC and 0.15 g/L TPA at 90 °C for 10 min exhibited high rejection of different model salt solutions in the order MgCl 2 > Na 2 SO 4 > NaCl, with excellent permeation flux up to 12.8 LMHbar −1 . Furthermore, membrane exhibited good acid stability even at extreme conditions. After exposure to 25% (w/w) H 2 SO 4 and 5% (w/w) HNO 3 acid solutions at 25 °C, 55 °C and 80 °C for 720 h, 72 h and 24 h respectively, the fluxes increased with a slight decline in their rejection levels. Meanwhile, a long hour stability test slightly dropped the MgCl 2 rejection level by ∼10%. The dynamic CuSO 4 /H 2 SO 4 mixed solution acid test of the membrane also revealed good permselectivity. This fabricated membrane thus provides a prospect of good application in acidic wastewater treatment and acid recovery process. • Successful formation of polyamine-based acid-resistant NF membrane by BPEI with TPA and CC in IP. • Formation of a moderately dense PA layer network via heat post-treatment to improve performance. • SDS surfactant (SDS) was effective in PSf wettability and aided the dispersal of BPEI/TPA solution. • TPA-BPEI 1.00 /CC NF membrane shows excellent acid stability even at 55 ± 1°C. • TPA-BPEI 1.00 /CC NF membrane have 12.8 LMHbar −1 water flux and 94.7% of MgCl 2 rejection.
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