期刊文献+

High-permeance crosslinked PTMSP thin-film composite membranes as supports for CO_2 selective layer formation 被引量:1

High-permeance crosslinked PTMSP thin-film composite membranes as supports for CO_2 selective layer formation
下载PDF
导出
摘要 In the development of the composite gas separation membranes for post-combustion CO_2 capture, little attention is focused on the optimization of the membrane supports, which satisfy the conditions of this technology. The primary requirements to the membrane supports are concerned with their high CO_2 permeance. In this work, the membrane supports with desired characteristics were developed as high-permeance gas separation thin film composite(TFC) membranes with the thin defect-free layer from the crosslinked highly permeable polymer, poly[1-(trimethylsilyl)-1-propyne](PTMSP). This layer is insoluble in chloroform and can be used as a gutter layer for the further deposition of the CO_2-selective materials from the organic solvents. Crosslinking of PTMSP was performed using polyethyleneimine(PEI) and poly(ethyleneglycol) diglycidyl ether(PEGDGE) as crosslinking agents. Optimal concentrations of PEI in PTMSP and PEGDGE in methanol were selected in order to diminish the undesirable effect on the final membrane gas transport characteristics. The conditions of the kiss-coating technique for the deposition of the thin defect-free PTMSP-based layer, namely, composition of the casting solution and the speed of movement of the porous commercial microfiltration-grade support, were optimized. The procedure of post-treatment with alcohols and alcohol solutions was shown to be crucial for the improvement of gas permeance of the membranes with the crosslinked PTMSP layer having thickness ranging within 1-2.5 μm. The claimed membranes showed the following characteristics: CO_2 permeance is equal to 50—54 m^3(STP)/(m^2 h bar)(18,500—20,000 GPU), ideal CO_2/N_2 selectivity is 3.6-3.7, and their selective layers are insoluble in chloroform. Thus, the developed highpermeance TFC membranes are considered as a promising supports for further modification by enhanced CO_2 selective layer formation. In the development of the composite gas separation membranes for post-combustion CO_2 capture, little attention is focused on the optimization of the membrane supports, which satisfy the conditions of this technology. The primary requirements to the membrane supports are concerned with their high CO_2 permeance. In this work, the membrane supports with desired characteristics were developed as high-permeance gas separation thin film composite(TFC) membranes with the thin defect-free layer from the crosslinked highly permeable polymer, poly[1-(trimethylsilyl)-1-propyne](PTMSP). This layer is insoluble in chloroform and can be used as a gutter layer for the further deposition of the CO_2-selective materials from the organic solvents. Crosslinking of PTMSP was performed using polyethyleneimine(PEI) and poly(ethyleneglycol) diglycidyl ether(PEGDGE) as crosslinking agents. Optimal concentrations of PEI in PTMSP and PEGDGE in methanol were selected in order to diminish the undesirable effect on the final membrane gas transport characteristics. The conditions of the kiss-coating technique for the deposition of the thin defect-free PTMSP-based layer, namely, composition of the casting solution and the speed of movement of the porous commercial microfiltration-grade support, were optimized. The procedure of post-treatment with alcohols and alcohol solutions was shown to be crucial for the improvement of gas permeance of the membranes with the crosslinked PTMSP layer having thickness ranging within 1-2.5 μm. The claimed membranes showed the following characteristics: CO_2 permeance is equal to 50—54 m^3(STP)/(m^2 h bar)(18,500—20,000 GPU), ideal CO_2/N_2 selectivity is 3.6-3.7, and their selective layers are insoluble in chloroform. Thus, the developed highpermeance TFC membranes are considered as a promising supports for further modification by enhanced CO_2 selective layer formation.
出处 《Green Energy & Environment》 SCIE 2016年第3期235-245,共11页 绿色能源与环境(英文版)
基金 supported by the European Community's Seventh Framework Program FP7 under the grant agreement no.608555(HiPerCap)
关键词 Thin-film composite membrane Gas permeance PTMSP CROSSLINKING Carbon dioxide capture Thin-film composite membrane Gas permeance PTMSP Crosslinking Carbon dioxide capture
  • 相关文献

二级参考文献46

  • 1Flory P J 1969 Statistical Mechanics of Chain Molecules (New York: Interscience). 被引量:1
  • 2Whitford D 2005 Proteins: Structure and Function (New York: John Wiley Sons). 被引量:1
  • 3Ji C, Zhang L Y, Dou S X and Wang P Y 2011 Acta Phys. Sin. 60 098703 (in Chinese). 被引量:1
  • 4Lian Z J 2011 Chin. Phys. B 20 076401. 被引量:1
  • 5McNeill C R, Watts B, Thomsen L, Belcher W J, Greenham N C, Dastoor P C and Ade H 2009 Macromolecules 42 3347. 被引量:1
  • 6Mseddi S, Njeh A, Schneider D, Fuess H and Ghozlen M H B 2011 J. Appl. Phys. 110 104506. 被引量:1
  • 7Harp J M, Hanson B L, Timm D E and Bunick G J 1999 Acta Crystallogr. D 55 1329. 被引量:1
  • 8Drummy L F, Yang J and Martin D C 2004 Ultramicroscopy 99 247. 被引量:1
  • 9Haas B, Beyer A, Witte W, Breuer T, Witte G and Volz K 2011 J. Appl. Phys. 110 073514. 被引量:1
  • 10Kong X, Wadhwa K, Verkade J G and Schmidt-Rohr K 2009 Macromolecules 42 1659. 被引量:1

共引文献1

同被引文献19

引证文献1

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部