应用化学 ›› 1991, Vol. 0 ›› Issue (6): 43-48.

• 研究论文 • 上一篇    下一篇

三甲基硅烷基丙炔与五甲基二硅烷基丙炔共聚物膜及其气体透过性

郑国栋1, 肖军1, 仲川勤2, 樋口亚绀2, 永井一清2   

  1. 1. 中国科学院长春应用化学研究所, 长春 130022;
    2. 日本明治大学理工学院工化部
  • 收稿日期:1990-08-25 修回日期:1991-01-03 出版日期:1991-12-10 发布日期:1991-12-10

MEMBRANE OF COPOLYMER OF TRIMETHYLSILYL PROPYNE WITH PENTAMETHYLDISILYL PROPYNE AND ITS GAS PERMEATION

Zheng Guodong1, Xia Jun1, T. Nakagawa2, A. Higuchi2, K. Nagai2   

  1. 1. Changchun Institute of Applied Chemistry, Academia Sinica, Changchun 130022;
    2. Department of Industrial Chemstry, Faculty of Science and Engineering, Meiji University, Kawasaki, Japan
  • Received:1990-08-25 Revised:1991-01-03 Published:1991-12-10 Online:1991-12-10

摘要: 研究了三甲基硅烷基丙块与五甲基二硅烷基丙块共聚物〔poly(TMSP-co-PMDSP)〕的成膜特点。poly(TMSP-co-PMDSP)膜的气体透过系数分别为:PO2:4×103~12×103,PN2:3×103~8×103和PCO2:2×104~4×104barrer,气体透过稳定性低,透过行为偏离第二Fick定律,过系数下降,其中溶解系数降低的比例远大于扩散系数的增加比例,在含有凝聚性气体的环境里,膜的气体透过出现表面吸附控制的特征。

关键词: 三甲基硅烷基丙块共聚物, 分离膜, 气体透过性

Abstract: The formation of membranes from copolymer of trimethylsilyl propyne with pentamethy-ldisilyl propyne poly(TMSP-co-PMDSP) has been investigated. The copolymer exhibited asimilar performance in membrane formation and gas permeability as the homopolymer PTMSP.Its permeability coefficients and separation factors were PO2 = 4×103~12×103, PN2 = 3×103~8×103, PCO2 = 2×104~4×104 Barrer and αO2/N2 = 1. 3~1. 9, respectively. The gas permeationbehaviour was dependent on the thickness of the membrane and deviated from the SecondFick law. In the presence of organic condensed gas, the gas permeability appeared to becontrolled by surface adsorption of gas. The gas permeability coefficient decreases withthe increase of the storage time and temperature because the solubility coefficient reductionΔS of the membrane was greater than its diffusibility coefficient increase ΔD. The gas per-meability was deeply influenced by the thermal history of the membrane.

Key words: trimethylsilypropyne, pentamethyldisilyl propyne, copolymer, membrane, gas permeability