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Performance Analysis of Blended Membranes of Cellulose Acetate with Variable Degree of Acetylation for CO2/CH4 Separation

机译:CO2 / CH4分离具有可变乙酸纤维素混纺膜的性能分析

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摘要

The separation and capture of CO2 have become an urgent and important agenda because of the CO2-induced global warming and the requirement of industrial products. Membrane-based technologies have proven to be a promising alternative for CO2 separations. To make the gas-separation membrane process more competitive, productive membrane with high gas permeability and high selectivity is crucial. Herein, we developed new cellulose triacetate (CTA) and cellulose diacetate (CDA) blended membranes for CO2 separations. The CTA and CDA blends were chosen because they have similar chemical structures, good separation performance, and its economical and green nature. The best position in Robeson’s upper bound curve at 5 bar was obtained with the membrane containing 80 wt.% CTA and 20 wt.% CDA, which shows the CO2 permeability of 17.32 barrer and CO2/CH4 selectivity of 18.55. The membrane exhibits 98% enhancement in CO2/CH4 selectivity compared to neat membrane with only a slight reduction in CO2 permeability. The optimal membrane displays a plasticization pressure of 10.48 bar. The newly developed blended membranes show great potential for CO2 separations in the natural gas industry.
机译:由于二氧化碳诱导的全球变暖和工业产品要求,二氧化碳的分离和捕获已成为迫切和重要的议程。基于膜的技术已被证明是有助于替代二氧化碳分离的替代品。为了使气体分离膜方法更具竞争力,具有高透气性和高选择性的高效膜至关重要。在此,我们开发了新的纤维素三乙酸(CTA)和纤维素二乙酸酯(CDA)混合膜,用于CO 2分离。选择CTA和CDA共混物,因为它们具有类似的化学结构,分离性能良好,以及其经济和绿色的性质。罗伯森上染色曲线的最佳位置在5巴下用含有80重量%的CTA和20重量%CDA的膜获得,其显示为17.32个漏气和CO 2 / CH 4选择性为18.55的CO 2渗透性。与纯膜相比,膜在CO 2 / CH 4选择性中表现出98%的增强,仅略微降低CO 2渗透性。最佳膜显示为10.48巴的增塑压力。新开发的混合膜表现出天然气工业二氧化碳分离的巨大潜力。

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