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首页> 外文期刊>Journal of Applied Polymer Science >Effect of fractional free volume and T-g on gas separation through membranes made with different glassy polymers
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Effect of fractional free volume and T-g on gas separation through membranes made with different glassy polymers

机译:自由体积分数和T-g对通过不同玻璃态聚合物制成的膜进行气体分离的影响

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The aim of this work is to study how the characteristics of the polymer used to manufacture gas separation membranes influence its permeability and selectivity. It has been shown that the gas diffusivity decreases with the kinetic diameter of the gas except for CO2, probably due to its high condensability. While solubility increases with the gas condensation temperature and clearly with the glass transition temperature of the polymer for each gas. The permeabilities Of CO2, CH4, O-2, N-2 increase for increasing glass transition temperatures. Nevertheless only the selectivity Of CO2 versus the other gases increases significantly when polymers with high glass transition are used. The Robeson limit in a selectivity-versus-permeability plot is approached for CO2/CH4 when T-g, increases. This distance to the Robeson limit, for this pair of gases, results to decrease for increasing T-g For the case of the O-2/N-2 selectivity remains approximately constant with an appreciable increase in permeability for polymers with increasing Tg. Permeability increases due to the corresponcling increase in fractional free volume, FFV, that appears for increasing glass transition temperatures, T-g, This correlation of FFV with T-g has been confirmed by obtaining FFV by different methods. (C) 2007 Wiley Periodicals, Inc.
机译:这项工作的目的是研究用于制造气体分离膜的聚合物的特性如何影响其渗透性和选择性。已经表明,除了CO 2之外,气体扩散率随气体的动力学直径而降低,这可能是由于其高的可冷凝性。虽然溶解度随着气体冷凝温度而增加,并且显然随着每种气体而随着聚合物的玻璃化转变温度而增加。随着玻璃化转变温度的升高,CO2,CH4,O-2,N-2的渗透性增加。然而,当使用具有高玻璃化转变温度的聚合物时,只有CO2对其他气体的选择性显着提高。当T-g增加时,对于CO2 / CH4接近选择性-渗透率图中的Robeson极限。对于这对气体,到Robeson极限的距离导致增加的T-g减小。对于O-2 / N-2,选择性保持近似恒定,而随着Tg的增加,聚合物的渗透性显着增加。由于增加的玻璃化转变温度T-g而导致的自由体积分数FFV的相应增加,导致渗透率增加。通过使用不同方法获得FFV可以证实FFV与T-g的相关性。 (C)2007 Wiley期刊公司

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