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Pure- and Mixed-Gas Permeation Properties of Highly Selective and Plasticization Resistant Hydroxyl-Diamine-Based 6FDA Polyimides for CO2/CH4 Separation

机译:高度选择性和可塑化的基于羟基二胺的6FDA聚酰亚胺的纯气体和混合气体渗透特性,用于CO2 / CH4分离

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摘要

The effect of hydroxyl functionalization on the m-phenylene diamine moiety of 6FDA dianhydride-based polyimides was investigated for gas separation applications. Pure-gas permeability coefficients of He, H2, N2, O2, CH4, and CO2 were measured at 35 °C and 2 atm. The introduction of hydroxyl groups in the diamine moiety of 6FDA-diaminophenol (DAP) and 6FDA-diamino resorcinol (DAR) polyimides tightened the overall polymer structure due to increased charge transfer complex formation compared to unfunctionalized 6FDA-m-phenylene diamine (mPDA). The BET surface areas based on nitrogen adsorption of 6FDA-DAP (54 m2g−1) and of 6FDA-DAR (45 m2g−1) were ~18% and 32% lower than that of 6FDA-mPDA (66 m2g−1). 6FDA-mPDA had a pure-gas CO2 permeability of 14 Barrer and CO2/CH4 selectivity of 70. The hydroxyl-functionalized polyimides 6FDA-DAP and 6FDA-DAR exhibited very high pure-gas CO2/CH4 selectivities of 92 and 94 with moderate CO2 permeability of 11 and 8 Barrer, respectively. It was demonstrated that hydroxyl-containing polyimide membranes maintained very high CO2/CH4 selectivity (~ 75 at CO2 partial pressure of 10 atm) due to CO2 plasticization resistance when tested under high-pressure mixed-gas conditions. Functionalization with hydroxyl groups may thus be a promising strategy towards attaining highly selective polyimides for economical membrane-based natural gas sweetening.
机译:研究了羟基官能化对基于6FDA二酐的聚酰亚胺的间苯二胺部分的影响,用于气体分离应用。在35°C和2个大气压下测量He,H2,N2,O2,CH4和CO2的纯气体渗透系数。与未官能化的6FDA-间苯二胺(mPDA)相比,由于电荷转移复合物形成的增加,在6FDA-二氨基苯酚(DAP)和6FDA-二氨基间苯二酚(DAR)的聚酰亚胺的二胺部分引入羟基会收紧整个聚合物结构。与6FDA-mPDA(66 m2g-1)相比,基于6FDA-DAP(54 m2g-1)和6FDA-DAR(45 m2g-1)氮吸附的BET表面积分别低18%和32%。 6FDA-mPDA的纯气体CO2渗透率为14 Barrer,CO2 / CH4选择性为70。羟基官能化的聚酰亚胺6FDA-DAP和6FDA-DAR在中等CO2的情况下表现出非常高的纯气CO2 / CH4选择性,分别为92和94。渗透率分别为11和8 Barrer。结果表明,在高压混合气体条件下进行测试时,由于具有抗CO2增塑性,因此含羟基的聚酰亚胺膜可保持很高的CO2 / CH4选择性(在10atm的CO2分压下约为75)。因此,用羟基官能化可能是实现用于经济的基于膜的天然气脱硫的高选择性聚酰亚胺的有前途的策略。

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