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首页> 外文期刊>Journal of Membrane Science >Development of asymmetric 6FDA-2,6DAT hollow fiber membranes for CO_2/CH_4 separation Part 2. Suppression of plasticization
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Development of asymmetric 6FDA-2,6DAT hollow fiber membranes for CO_2/CH_4 separation Part 2. Suppression of plasticization

机译:用于CO_2 / CH_4分离的不对称6FDA-2,6DAT中空纤维膜的开发(第2部分)

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摘要

We have studied the CO_2 -induced plasticization phenomenon of asymmetric poly(2,6-toluene-2,2-bis(3,4-dicarboxyphenyl) hexafluoropropane diimide) (6FDA-2,6 DAT) hollow fiber membranes for CO_2/CH_4 applications. Several processing and thermal approaches have been investigated to study their effectiveness to enhance anti-plasticization characteristics. Experimental results indicate that hollow fiber membranes spun at different shear rates and take-up rates cannot effectively suppress the CO_2 induced plasticization. Thermally treated 6FDA-2,6 DAT hollow fiber membranes show significant reduction in CO2-induced plasticization. Wide-angle XRD spectra reveal no visible change in d-space after thermal treatment, while solubility data imply no cross-links occurred. Scanning electron microscopy (SEM) pictures illustrate heat treatment results in more compact selective-skin layer and substructure, thus strengthening the anti-plasticization characteristics of hollow fibers. By considering the degree of plasticization, dense-layer thickness, and heat treatment temperature, an optimal temperature of 250℃ (for 5 min) is identified for the heat treatment of 6FDA-2,6 DAT hollow fiber membranes. NMR spectra suggest the cause of forming a highly densified skin after heat treatment is mainly due to chain relaxation and enhanced nodule interaction at elevated temperatures.
机译:我们研究了用于CO_2 / CH_4应用的不对称聚(2,6-甲苯-2,2-双(3,4-二羧苯基)六氟丙烷二酰亚胺)(6FDA-2,6 DAT)中空纤维膜的CO_2增塑现象。已经研究了几种加工和热方法以研究其增强抗塑化特性的有效性。实验结果表明,中空纤维膜在不同的剪切速率和吸收速率下均不能有效抑制CO_2诱导的增塑作用。经过热处理的6FDA-2,6 DAT中空纤维膜在二氧化碳诱导的可塑化方面显示出显着降低。广角XRD光谱显示热处理后d空间无可见变化,而溶解度数据表明未发生交联。扫描电子显微镜(SEM)图片显示了热处理过程中更紧密的选择性皮层和子结构,从而增强了中空纤维的抗塑化特性。考虑到塑化程度,致密层厚度和热处理温度,确定了对6FDA-2,6 DAT中空纤维膜进行热处理的最佳温度为250℃(持续5分钟)。 NMR光谱表明,热处理后形成高度致密化皮肤的原因主要是由于链松弛和在高温下结节相互作用增强。

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