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Preparation and characterization of negatively charged hollow fiber nanofiltration membrane by plasma-induced graft polymerization

机译:等离子体诱导接枝聚合制备带负电荷的中空纤维纳滤膜及其表征

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摘要

A new negatively charged nanofiltration (NF) membrane has been prepared by grafting of 2-acrylamido-2-methylpropanesulfonic acid (AMPS) on the polysulfone (PSf) hollow fiber ultrafiltration membrane using two-step plasma method. First, PSf substrate was pretreated by plasma. Then, the pretreated membrane was soaked in AMPS solution and the loaded monomer was grafted on the membrane by plasma-induced. ATR-FTIR, FESEM, water contact angle (WCA) and breaking strength were employed to characterize the structural and morphological changes of membranes. The effects of pretreatment time, AMPS concentration and grafting reaction time on the membrane performances were studied. In addition, the rejections to single salt solutions and mixed salt solutions were examined. The results indicated that the pretreatment of PSf substrate played an important role in the preparation of this NF membrane. The NF membrane, pretreated for 30 sand grafted for 80s with 5% AMPS solution, showed a rejection to 1 g/L Na2SO4 of 80.8 ± 1.2% with a permeate flux of 6.4±0.2 Lm~(-2) h~(-1) at 0.2 MPa and at 23 ± 1 °C. The rejection sequence of single salts was Na2SO4>MgSO4>NaCl>MgCl2. And the negatively charged NF membrane showed a better selectivity to SO4~(2-) than cr in a mixed salt solution.
机译:通过使用两步等离子体法将2-丙烯酰胺基-2-甲基丙烷磺酸(AMPS)接枝到聚砜(PSf)中空纤维超滤膜上,制备了一种新型的带负电荷的纳滤(NF)膜。首先,通过等离子体预处理PSf基板。然后,将预处理的膜浸入AMPS溶液中,并通过等离子体诱导将负载的单体接枝到膜上。 ATR-FTIR,FESEM,水接触角(WCA)和断裂强度被用来表征膜的结构和形态变化。研究了预处理时间,AMPS浓度和接枝反应时间对膜性能的影响。另外,检查了对单盐溶液和混合盐溶液的排斥。结果表明,PSf底物的预处理在该NF膜的制备中起着重要作用。 NF膜用5%AMPS溶液预处理了30沙接枝80s,对1 g / L Na2SO4的截留率为80.8±1.2%,渗透通量为6.4±0.2 Lm〜(-2)h〜(-1) )在0.2 MPa和23±1°C下。单盐的排阻顺序为Na2SO4> MgSO4> NaCl> MgCl2。在混合盐溶液中,带负电的NF膜对SO4〜(2-)的选择性优于Cr。

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