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首页> 外文期刊>Journal of Colloid and Interface Science >Surface glycosylation of polysulfone membrane towards a novel complexing membrane for boron removal
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Surface glycosylation of polysulfone membrane towards a novel complexing membrane for boron removal

机译:聚砜膜向新型络合膜去除硼的表面糖基化

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In this study, a novel complexing membrane was synthesized for boron removal from aqueous solution. A glycopolymer, poly(2-gluconamidoethyl methacrylate) (PGAMA), was grafted onto the chloromethylated polysulfone (CMPSF) microporous membrane via surface-initiated ATRP (SIATRP). The glycosylated PSF (GlyPSF) membrane was characterized by attenuated total refection-Flourier transform infrared spectroscopy (ATR-FTIR), X-ray photoelectron spectroscopy (XPS), and field emission scanning electron microscopy (FESEM). It was demonstrated that PGAMA was successfully anchored onto the membrane surface and the grafting yield can be tuned in a wide range up to 5.9mg/cm ~2 by varying the polymerization time. The complexing membrane can adsorb boron rapidly with the equilibrium reached within 2h and has a remarkable high boron adsorption capacity higher than 2.0mmol/g at optimized conditions. Freundlich, Langmuir, and Dubinin-Radushkevich adsorption isotherms were applied, and the data were best described by Langmuir model. Kinetic data were analyzed, and the data fitted very well to the pseudo-second-order rate expression. The optimal pH for boron uptake is in a wide range of 6-9, and the optimal initial boron concentration is over 300mg/L. Studies of ionic strength effects indicated the formation of inner-sphere surface complexes. The complexed boron can be leached quantitatively under acid condition.
机译:在这项研究中,合成了一种新型络合膜,用于从水溶液中去除硼。经由表面引发的ATRP(SIATRP)将糖聚合物聚(甲基丙烯酸2-葡萄糖基氨基乙酯)(PGAMA)接枝到氯甲基化聚砜(CMPSF)微孔膜上。糖基化的PSF(GlyPSF)膜的特征在于衰减的总反射-傅里叶变换红外光谱(ATR-FTIR),X射线光电子能谱(XPS)和场发射扫描电子显微镜(FESEM)。已经证明,PGAMA成功地锚定在膜表面上,并且可以通过改变聚合时间在高达5.9mg / cm〜2的宽范围内调节接枝产率。络合膜可在2h内达到平衡,迅速吸附硼,在优化条件下具有显着高的硼吸附能力,高于2.0mmol / g。应用Freundlich,Langmuir和Dubinin-Radushkevich吸附等温线,并用Langmuir模型最好地描述了数据。分析了动力学数据,并且该数据非常适合伪二级速率表达。硼吸收的最佳pH值在6-9的宽范围内,并且硼的最佳初始浓度超过300mg / L。离子强度效应的研究表明内球表面复合物的形成。络合的硼可以在酸性条件下定量浸出。

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