首页> 外文期刊>Journal of Applied Polymer Science >Comparison of liquid-phase and methanol-swelling crosslinking processes of polyimide dense membrane forCO(2)/CH(4)separation
【24h】

Comparison of liquid-phase and methanol-swelling crosslinking processes of polyimide dense membrane forCO(2)/CH(4)separation

机译:聚酰亚胺致密膜FORCO(2)/ CH(4)分离的液相和甲醇溶胀交联过程的比较

获取原文
获取原文并翻译 | 示例
           

摘要

To overcome the plasticization effect in polyimide membranes, many researchers have proposed crosslinking method. This can reduce an inter-segmental mobility by tightening and rigidifying the polymer chains. However, it is difficult to modify the whole polymer chains throughout the membrane because the reaction can be hindered by the diffusion rate of the crosslinker. In particular, it is hard for bulky crosslinker to penetrate a dense membrane with a small d-spacing. This study investigated the effect of crosslinking a dense Matrimid membrane withp-phenylenediamine (p-PDA) via two different crosslinking methods (i.e., methanol-swelling crosslinking process [M-SCP] and liquid-phase crosslinking process [L-PCP]). Most of the crosslinking reaction in M-SCP occurs on the membrane surface due to difficulty in penetration of the bulkyp-PDA into the Matrimid dense membrane. In contrast, the L-PCP allows uniform crosslinking across the membrane. The membranes crosslinked using L-PCP showed excellent chemical resistance. Furthermore, the plasticization phenomenon was not observed in the membranes crosslinked using L-PCP withp-PDA more than 15%. Meanwhile, the membrane crosslinked using M-SCP exhibited poor plasticization and chemical resistance properties. These results showed that the L-PCP method can be more effective for the crosslinking of dense membrane to deliver both high plasticization and chemical resistance.
机译:为了克服聚酰亚胺膜中的塑化效应,许多研究人员提出了交联方法。这可以通过收紧和硬化聚合物链来降低段间流动性。然而,由于交联剂的扩散速度会阻碍反应,因此很难在整个膜上修饰整个聚合物链。特别是,大体积交联剂很难穿透d间距较小的致密膜。本研究通过两种不同的交联方法(即甲醇溶胀交联法[M-SCP]和液相交联法[L-PCP]),研究了对苯二胺(p-PDA)交联致密苦参酰胺膜的效果。M-SCP中的大部分交联反应发生在膜表面,因为bulkyp PDA难以渗透到中密度膜中。相比之下,L-PCP允许跨膜均匀交联。使用L-PCP交联的膜显示出优异的耐化学性。此外,在使用P-PDA超过15%的L-PCP交联的膜中未观察到塑化现象。同时,用M-SCP交联的膜表现出较差的增塑性和耐化学性。这些结果表明,L-PCP方法可以更有效地交联致密膜,以提供高塑化性和耐化学性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号