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首页> 外文期刊>Reactive & Functional Polymers >An investigation on structural and gas transport properties of modified cross-linked PEG-PU membranes for CO_2 separation
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An investigation on structural and gas transport properties of modified cross-linked PEG-PU membranes for CO_2 separation

机译:CO_2分离改性交联PEG-PU膜结构和气体运输性能研究

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In this paper, modified poly(ethylene glycol)-polyurethane (PEG-PU) membranes were synthesized applying thiol-epoxy click polymerization to separate CO2 (the most important greenhouse gas) form light gases. PEG was initially reacted with isophorone diisocyanate (IPDI) and the NCO-terminated prepolymer was end-capped with glycidol to form epoxy-terminated prepolymer (EPU). The cross-linked membranes were eventually obtained through thiol-epoxy click polymerization reaction using a tetrathiol cross-linker (PETMP) in presence of poly (ethylene glycol) diglycidyl ether (PEGDE). The prepared membranes were characterized by ATR-FTIR, DSC, TGA and tensile analyses. The best fabricated membrane was chosen and named EMT2 which exhibited promising structural, thermal and mechanical properties. It was then employed for further gas transport properties studies. Permeability, solubility, and diffusion coefficients of CO2, N-2, CH4, and O-2 gases over wide ranges of temperature (308-348 K) and pressure (2-16 bar) were investigated. It was found that EMT2 membrane offers higher CO2 permeability coefficients, compared to some other PEG-PU membranes in the literature fabricated with a same length of soft segment.
机译:在本文中,合成了改性聚(乙二醇) - 聚核(PEG-PU)膜施用硫醇 - 环氧树脂咔啉咔哒聚合,以分离CO 2(最重要的温室气体)形成光气体。 PEG最初与异佛尔酮二异氰酸酯(IPDI)反应,并将NCO封端的预聚物用缩水甘油结束,以形成环氧终止的预聚物(EPU)。最终通过硫醇 - 环氧树脂咔啉单击聚合反应得到交联膜,在聚(乙二醇)二缩水甘油醚(PEGDE)存在下,通过硫醇 - 环氧树脂咔啉键聚合反应。通过ATR-FTIR,DSC,TGA和拉伸分析表征制备的膜。选择最佳制造的膜并命名为EMT2,其表现出有前途的结构,热和机械性能。然后用于进一步的气体运输性质研究。研究了CO 2,N-2,CH4和O-2在宽温度范围内(308-348k)和压力(2-16巴)的渗透性,溶解度和o-2气体的扩散系数。发现EMT2膜具有较高的CO2渗透系数,与用相同长度的软段制造的文献中的一些其他PEG-PU膜相比。

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