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A novel nanofiltration membrane prepared with PAMAM and TMC by in situ interfacial polymerization on PEK-C ultrafiltration membrane

机译:在PEK-C超滤膜上原位界面聚合由PAMAM和TMC制备的新型纳滤膜

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A novel nanofiltration membrane (PEK-C NF membrane) prepared with poly(amidoamine) (PAMAM) dendrimer and trimesoyl chloride (TMC) by in situ interfacial polymerization on phenolphthalein poly(ether ether ketone) (PEK-C) ultratiltration membrane was investigated. FTIR-ATR, XPS, SEM and contact angle of the water were employed to characterize the chemical and physical changes of resulting membranes. The flux and rejection of resulting membranes increased with increasing concentrations of PAMAM and/or generation numbers of PAMAM for NaCl concentration. Both rejection and flux decrease with an increase of MGSO(4) concentration. The salts rejections order of resulting membrane is MaCl(2) > MaSO(4) > NaCl > NaSO4, which shows that resulting membranes were all positively charged NF membrane. Influences of operating temperature on flux and rejection of different solutes show that resulting membrane is thermostable at higher temperature (e.g. 80 degrees C). The PEK-C NF membrane is especially suitable for separating cationic solutes from others by increasing operating temperature. The pH in the feed increase from 2 to 9 resulted in over two-fold increase in the flux for NaCl solution. Therefore the PEK-C NF membrane is also particularly suitable for treating acidic feed. The studied membrane possesses maximum operating pressure lower than 2.0 MPa and excellent stability during 1080 h (1.5 months) of continuous filtration at 30 degrees C. (c) 2005 Elsevier B.V. All rights reserved.
机译:研究了一种新型的纳滤膜(PEK-C NF膜),该膜是通过在酚酞聚醚醚酮(PEK-C)上进行原位界面聚合,由聚(酰胺基胺)(PAMAM)树状大分子和均苯三甲酰氯(TMC)制得的。使用FTIR-ATR,XPS,SEM和水的接触角来表征所得膜的化学和物理变化。随着PAMAM浓度的增加和/或NaCl浓度下PAMAM的生成数增加,所得膜的通量和截留率也增加。随着MGSO(4)浓度的增加,排斥和通量均降低。所得膜的排盐顺序为MaCl(2)> MaSO(4)> NaCl> NaSO4,这表明所得膜均为带正电的NF膜。工作温度对通量和不同溶质截留率的影响表明,所得的膜在较高温度(例如80摄氏度)下是热稳定的。 PEK-C NF膜特别适用于通过提高操作温度将阳离子溶质与其他离子分离。进料中的pH从2增加到9,导致NaCl溶液的通量增加了两倍以上。因此,PEK-C NF膜也特别适用于处理酸性饲料。所研究的膜的最大工作压力低于2.0 MPa,并且在30摄氏度下连续过滤1080小时(1.5个月)期间具有出色的稳定性。(c)2005 Elsevier B.V.保留所有权利。

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