Preparation of silica hybrid membranes for high temperature gas separation

被引:11
|
作者
Nomura, Mikihiro [1 ]
Momma, Keita [1 ]
Negishi, Yoshio [1 ]
Matsuyama, Emi [1 ]
Kimura, Sayuka [1 ]
机构
[1] Shibaura Inst Technol, Dept Appl Chem, Koto Ku, Tokyo 1358548, Japan
关键词
Silica hybrid membrane; Counter diffusion CVD; Pore size control; PORE-SIZE CONTROL; STEAM; DEPOSITION;
D O I
10.5004/dwt.2010.1731
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
A molecular sieve silica hybrid membrane was successfully prepared by using a counter diffusion chemical vapor deposition (CVD) method. Propyltrimethoxysilane (PrTMOS) was employed for a silica precursor. O-3 was used as an oxidizer. Effects of deposition temperatures on permeation properties through the silica membranes were investigated. H-2 (0.29 nm), N-2 (0.36 nm) and SF6 (0.55 nm) permeances were measured at the deposited temperatures through the membranes. H-2/N-2 permeances ratios decreased sharply with increasing the deposition temperatures from 200 degrees C to 400 degrees C. In addition, H-2 permeance through the membrane deposited at 400 degrees C was very high (4.6 x 10(-7) mol m(-2) s(-1) Pa-1) with a low H-2/N-2 permeances ratio (3.4). This shows that silica was not deposited at 400 degrees C due to O-3 decomposition at the high temperature deposition. On the other hand, N-2/SF6 permeances ratios increased with increasing the deposition temperatures upto 320 degrees C. The maximum value of N-2/SF6 permeances ratio was 110 at 320 degrees C deposition. This is much larger than that of Knudsen diffusion separation (2.3). According to the kinetic diameters of N-2 and SF6, the pore sizes of the membrane were estimated at about 0.5 nm. These results show that the pore size of silica membranes can be controlled by changing the deposition temperatures. The decomposition reactions of propyl groups on silica hybrid materials were also investigated by TG and IR measurements. Propyl groups on silica hybrid materials decomposed at around 300 degrees C and 400 degrees C. Decomposition at around 300 degrees C was C2H4 removal from the surface to remain methyl groups on the surface. Thus, we conclude that the high selective membrane deposited at 320 degrees C was a silica hybrid membrane having methyl groups in the silica deposition.
引用
收藏
页码:288 / 293
页数:6
相关论文
共 50 条
  • [41] Polyurethane-mesoporous silica gas separation membranes
    Ghalei, Behnam
    Isfahani, Ali Pournaghshband
    Sadeghi, Morteza
    Vakili, Eshagh
    Jalili, Alireza
    POLYMERS FOR ADVANCED TECHNOLOGIES, 2018, 29 (02) : 874 - 883
  • [42] Carbon-silica membranes for improved gas separation
    Lee, YM
    Park, HB
    FRONTIERS ON SEPARATION SCIENCE AND TECHNOLOGY, 2004, : 588 - 592
  • [43] Preparation and characterization of POSS-PEG high performance membranes for gas separation
    Kim, Ji Hyeon
    Vijayakumar, Vijayalekshmi
    Kim, Deuk Ju
    Nam, Sang Yong
    JOURNAL OF MEMBRANE SCIENCE, 2020, 606
  • [44] Preparation of polybenzoxazole-silica hybrid membranes for CO2/CH4 separation
    Suzuki, Tomoyuki
    Saito, Azumi
    POLYMER JOURNAL, 2019, 51 (10) : 1037 - 1044
  • [45] Preparation and enhanced gas separation performance of Carbon/Carbon nanotubes (C/CNTs) hybrid membranes
    Li, Lin
    Song, Chengwen
    Jiang, Dawei
    Wang, Tonghua
    SEPARATION AND PURIFICATION TECHNOLOGY, 2017, 188 : 73 - 80
  • [46] Preparation of hydrophobic silica membranes for methane and carbon dioxide separation
    Li, Wen-Xiu
    Ge, Ke-Ning
    Zhang, Bing
    Chen, Li-Feng
    Zhang, Zhi-Gang
    Cailiao Gongcheng/Journal of Materials Engineering, 2013, (02): : 78 - 82
  • [47] Preparation and separation properties of oxalylurea-bridged silica membranes
    Mizumo, Tomonobu
    Muragishi, Haruna
    Yamamoto, Kazuki
    Ohshita, Joji
    Kanezashi, Masakoto
    Tsuru, Toshinori
    APPLIED ORGANOMETALLIC CHEMISTRY, 2015, 29 (07) : 433 - 438
  • [48] Nanostructured poly(4-methyl-2-pentyne)/silica hybrid membranes for gas separation.
    Pinnau, I
    He, ZJ
    Morisato, A
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2001, 222 : U368 - U368
  • [49] High temperature gas separation through dual ion-conducting membranes
    Thursfield, Alan
    Metcalfe, Ian S.
    CURRENT OPINION IN CHEMICAL ENGINEERING, 2013, 2 (02) : 217 - 222
  • [50] Rapid preparation of high-silica CHA-type zeolite membranes and their separation properties
    Imasaka, Satoshi
    Itakura, Masaya
    Yano, Kazuhiro
    Fujita, Suguru
    Okada, Masashi
    Hasegawa, Yasuhisa
    Abe, Chie
    Araki, Sadao
    Yamamoto, Hideki
    SEPARATION AND PURIFICATION TECHNOLOGY, 2018, 199 : 298 - 303