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A Novel pH-sensitive Composite Nanofiltration Membrane

机译:新型pH敏感型复合纳滤膜

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Positively charged composite nanofiltration (NF) membranes were prepared through interfacial polymerization of poly[2-(N,N-dimethyl amino)ethyl methacrylate](PDMAEMA) on porous polysulfone (PSF) substrate membranes. The effects of pH on swelling ratio (SR) of the pure crosslinked PDMAEMA membrane and on separation performances of the composite NF membrane were investigated. The results show that the quaternized amino groups produced through interfacial polymerization technique are soluble in both phases, which accelerate the crosslinking reaction as self-catalysts. The swelling / contracting behavior of the pure crosslinked PDMAEMA exhibited a well reversible pH sensitive property. Importantly, the rejection and flux of the composite NF membrane show pH-sensitive behavior in NF process. Furthermore, with the help of a relatively novel method to measure membrane conduction, the true zeta potentials calculated on the basis of the streaming potential measurements proved the pH-sensitive behavior of the NF membrane.
机译:通过聚[2-(N,N-二甲基氨基)甲基丙烯酸乙酯](PDMAEMA)在多孔聚砜(PSF)基质膜上的界面聚合反应,制备了带正电荷的复合纳米滤膜。研究了pH对纯交联PDMAEMA膜的溶胀率(SR)和复合NF膜分离性能的影响。结果表明,通过界面聚合技术产生的季铵化氨基可溶于两个相中,从而加速了作为自催化剂的交联反应。纯交联的PDMAEMA的溶胀/收缩行为表现出良好的可逆pH敏感性。重要的是,复合NF膜的截留率和通量在NF过程中显示出pH敏感行为。此外,借助于相对新颖的测量膜传导的方法,基于流电势测量值计算出的真实的ζ电势证明了NF膜的pH敏感行为。

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