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首页> 外文期刊>Polymer engineering and science >Preparation of Cationic Grafted‐Microfiltration Membrane of PSF‐g‐QPDMAEMA and Study on its Adsorption and Rejection Performance for Acid Dye
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Preparation of Cationic Grafted‐Microfiltration Membrane of PSF‐g‐QPDMAEMA and Study on its Adsorption and Rejection Performance for Acid Dye

机译:PSF-G-QPDMAEMA的阳离子接枝微滤膜的制备及其对酸性染料的吸附和排斥性能研究

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摘要

> Chloromethylated polysulfone (CMPSF) microfiltration membrane were first prepared by using immersion‐precipitation phase transformation method, and then CMPSF membrane was modified into aminated PSF membrane (AMPSF membrane). A surface‐initiating system of –NH 2 /S 2 O 8 2? was constituted at the interface between AMPSF membrane and a aqueous solution, in which monomer dimethylaminoethyl methacrylate (DMAEMA) and initiator ammonium persulfate were dissolved. The graft polymerization of DMAEMA was successfully realized on AMPSF membrane, resulting in the grafted membrane PSF‐ g ‐PDMAEMA. And then quaternization modification of the grafted membrane PSF‐ g ‐PDMAEMA was performed, resulting in the cationic microfiltration membrane of PSF‐ g ‐QPDMAEMA. The isothermal adsorption experiments of PSF‐ g ‐QPDMAEMA membrane for two acid dyes, reactive brilliant red (RBR), and reactive light yellow (RLY), were carried out, and the permeation experiments were also conducted. The experimental results show that PSF‐ g ‐QPDMAEMA membrane has strong adsorption ability for acid dyes by right of the electrostatic interaction between the quaternary ammonium cations on the surface of PSF‐ g ‐QPDMAEMA membrane and the sulfonate anions in the molecules of acid dyes as well as by right of cation‐π interaction between the quaternary ammonium cations on PSF‐ g ‐QPDMAEMA membrane and the aromatic rings in the molecules of acid dyes. PSF‐ g ‐QPDMAEMA membrane displays excellent rejection and removing performance for acid dyes in water. POLYM. ENG. SCI., 60:900–908, 2020. ? 2020 Society of Plastics Engineers
机译: > 首先通过使用浸渍沉淀相转移方法制备氯甲基化的聚砜(CMPSF)微滤膜,然后将CMPSF膜改变为胺化PSF膜(AMPSF膜)。 -NH的表面启动系统 2 / s. 2 O. 8 2? 在安培膜和水溶液之间的界面上构成,其中溶解单体二甲基氨基甲基甲基丙烯酸甲酯(DMAEMA)和引发剂铵过硫酸铵。 DMAEMA的接枝聚合在安培膜上成功实现,导致接枝膜PSF- g -pdmaema。然后嫁接膜PSF的季铵化修饰 g 进行-PDMAEMA,得到PSF的阳离子微滤膜 g -qpdmaema。 PSF的等温吸附试验 g -QPDMAEMA膜对两种酸性染料,进行反应性亮红色(RBR)和反应性浅黄色(RLY),还进行渗透实验。实验结果表明psf- g -QPDMAEMA膜对季铵阳离子在PSF表面上的静电相互作用的右侧具有强的吸附能力 g -qpdmaema膜和酸染料分子中的磺酸盐阴离子以及季铵阳离子对PSF之间的阳离子-π相互作用 g -qpdmaema膜和酸染料分子中的芳环。 PSF- g -QPDMAEMA膜显示出水中酸性染料的优异排斥和去除性能。聚合物。 eng。 SCI。,60:900-908,2020。 2020塑料工程师协会

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