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Gas permeation performance of cellulose hollow fiber membranes made from the cellulose/N-methylmorpholine-N-oxide/H2O system

机译:由纤维素/ N-甲基吗啉-N-氧化物/ H2O体系制成的纤维素中空纤维膜的气体渗透性能

摘要

Cellulose hollow fiber membranes (CHFM) were prepared using a spinning solution containing N-methylmorpholine-N-oxide as solvent and water as a nonsolvent additive. Water was also used as both the internal and external coagulant. It was demonstrated that the phase separation mechanism of this system was delayed demixing. The CHFM was revealed to be homogeneously dense structure after desiccation. The gas permeation properties of CO2, N2, CH4, and H2 through CHFM were investigated as a function of membrane water content and operation pressure. The water content of CHFM had crucial influence on gas permeation performance, and the permeation rates of all gases increased sharply with the increase of membrane water content. The permeation rate of CO2 increased with the increase of operation pressure, which has no significant effect on N2, H2, and CH4. At the end of this article a detailed comparison of gas permeation performance and mechanism between the CHFM and cellulose acetate flat membrane was given.
机译:使用包含N-甲基吗啉-N-氧化物作为溶剂和水作为非溶剂添加剂的纺丝溶液制备纤维素中空纤维膜(CHFM)。水也用作内部和外部凝结剂。证明了该系统的相分离机理是延迟的混合。干燥后,显示出CHFM为均匀致密的结构。通过CHFM研究了CO2,N2,CH4和H2的气体渗透特性与膜水含量和操作压力的关系。 CHFM的含水量对气体的渗透性能有关键影响,并且随着膜水含量的增加,所有气体的渗透率均急剧增加。 CO2的渗透率随操作压力的增加而增加,而对N2,H2和CH4的影响不明显。最后,给出了CHFM与醋酸纤维素平膜之间气体渗透性能和机理的详细比较。

著录项

  • 作者

    Lin B; Cao Y; Jie X; Yuan Q;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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