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Formulation of Mixed-Matrix Membrane (PSF/Zeolite) for CO2/N2 Separation: Screening of Polymer Concentration

机译:用于CO2 / N2分离的混合基质膜(PSF /沸石)的配制:聚合物浓度的筛选

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摘要

This research investigates the permeability of CO2 and N2 as well as selectivity of CO2 over N2 of polysulfone (PSF) mixed matrix membranes filled with zeolite 4Å particles. The membranes were prepared by solution-casting method and utilized to determine the permeation rates of N2 and CO2. It was characterized by FTIR and the gas separation performance was analysed by Design of Expert (DOE) method. FTIR result revealed the intensity of peak for sulfone S=O vibration at 1322 cm-1; it was related to O=S=O bound of polysulfone in the sample. The single concentration variable has low outcome, however the mixture concentration interaction was effectively to lead better selectivity of CO2 over N2. In terms of interaction between mixture concentrations, interaction between PSF and N-Methyl-2-pyrrolidone (NMP) has considerable effect on the permeability of CO2 with the highest F value of 0.46 membrane. NMP exhibited a high degree of polarity and hydrogen bonding which led to effect of selective skin and permeation rate. The model regression equations were developed as the potential use for screening the permeability of CO2 and N2 based on the deviation effect of polymer concentration.
机译:本研究研究了填充有4Å沸石颗粒的聚砜(PSF)混合基质膜的CO2和N2的渗透性以及N2上的CO2选择性。通过溶液流延法制备膜,并用于确定N 2和CO 2的渗透速率。通过FTIR对其进行表征,并通过专家设计(DOE)方法分析了气体分离性能。 FTIR结果表明,在1322 cm-1处砜S = O振动的峰强度。这与样品中聚砜的O = S = O键有关。单一浓度变量的结果较低,但是混合物浓度相互作用有效地导致了CO2对N2的更好选择性。就混合物浓度之间的相互作用而言,PSF和N-甲基-2-吡咯烷酮(NMP)之间的相互作用对CO2的渗透性具有相当大的影响,最高F值为0.46膜。 NMP表现出高度的极性和氢键,从而导致选择性皮肤和渗透率的影响。建立了模型回归方程,可作为基于聚合物浓度偏差效应筛选CO2和N2渗透性的潜在方法。

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