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首页> 外文期刊>Separation and Purification Technology >Effect of Nafion and APTEOS functionalization on mixed gas separation of PEBA-FAU membranes: Experimental study and MD and GCMC simulations
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Effect of Nafion and APTEOS functionalization on mixed gas separation of PEBA-FAU membranes: Experimental study and MD and GCMC simulations

机译:Nafion和Apteos官能化对Peba-FAU膜混合气体分离的影响:实验研究和MD和GCMC模拟

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摘要

Many of the mixed matrix membranes (MMMs) face the challenge of fillers agglomeration. In this paper, the gas separation performance of MMMs based on poly (ether-block-amide) (PEBA, 60 wt% PEO and 40 wt% PA6) filled with different functionalized zeolite faujasite (FAU, X-type) fillers was investigated. To improve the interfacial adherence of the fillers with PEBA chains, Nafion (R) and 3-aminopropyl triethoxysilane (APTEOS) were used as sulfonic acid and aminosilane functionalizing agents, respectively. Different physicochemical and morphological characterizations such as XRD, FTIR, SEM, AFM, thermal, and mechanical tests were used to characterize the prepared membranes. The prepared membranes were evaluated for single gas and mixed gas separation performances. The results showed that CO2 permeability reached to 110 and 122 Barrer for sulfonic acid- and amine-FAU (1 wt%) filled PEBA, respectively. In addition, amine-MMM (1 wt%) had better performance for CO2/N-2 selectivity (117), while SO3-MMM (1 wt%) showed higher CO2/CH4 selectivity (31) due to their intrinsic properties. Molecular simulation was also carried out to study the structural and transport properties of the fabricated membranes. The solubility and diffusivity of CO2, CH4, and N-2 gas molecules were studied by Grand Canonical Monte Carlo (GCMC) and Molecular Dynamics (MD) methods, respectively. The acquired results revealed that experimental and simulation data were consistent in approach.
机译:许多混合基质膜(MMMS)面临着填充物附聚的挑战。本文研究了基于聚(醚嵌段 - 酰胺)(PEBA,60wt%PEO和40wt%PA6)的MMMS的气体分离性能填充有不同官能化沸石FAUJAAITE(FAU,X型)填料。为了改善PEBA链,Nafion和3-氨基丙基三乙氧基硅烷(APTEOS)分别用作磺酸和氨基硅烷官能化试剂的互核依乙氧基硅烷(APTEOS)。使用不同的物理化学和形态学特性,例如XRD,FTIR,SEM,AFM,热量和机械试验来表征制备的膜。评价制备的膜进行单一气体和混合气体分离性能。结果表明,CO 2渗透率分别达到磺酸和胺 - FAU(1wt%)填充的PEBA的110和122个渗透率。此外,胺-MMM(1wt%)具有更好的CO 2 / N-2选择性(117)的性能,而SO 3-MMM(1wt%)由于其固有特性而显示出更高的CO 2 / CH 4选择性(31)。还进行了分子模拟,以研究制造膜的结构和运输性能。通过Grand Canonical Monte Carlo(GCMC)和分子动力学(MD)方法研究了CO2,CH4和N-2气体分子的溶解度和扩散性。所获得的结果表明,实验和仿真数据的方法是一致的。

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