Carbon molecular sieve membranes on porous composite tubular supports for high performance gas separations

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초록

Carbon molecular sieve (CMS) membranes on the inside of porous composite stainless steel supports were developed for gas separation in this research effort. The intermediate alumina layer was introduced to reduce the pore size of the porous stainless steel tube and subsequently provide uniform surface roughness. Viscosity of the phenolic polymer solution was varied from 10 to 30 centipoises (cP) to maximize performance of the CMS membranes. Pyrolysis temperature was also varied from 700 degrees C to 900 degrees C to optimize the fabrication of uniform CMS membranes on porous composite stainless steel supports. High performance CMS membranes were obtained from triple coatings and subsequent pyrolysis at 700 degrees C. The viscosity of precursor solutions played a critical role to determine the performance of CMS membranes in terms of gas permeance and ideal gas separation factor. The highest separation performance of the CMS membranes was shown with viscosity of 20 cP, resulting in gas separation factor of 462 for He/N-2, 97 for CO2/N-2, and 15.4 for O-2/N-2. (C) 2016 Elsevier Inc. All rights reserved.

키워드

Carbon molecular sieve membrane; Gas separation; Porous stainless steel support; Intermediate alumina layer; HOLLOW-FIBER MEMBRANES; PHENOLIC RESIN; AIR SEPARATION; ETHYLENE/ETHANE SEPARATION; OLEFIN/PARAFFIN SEPARATION; PYROLYSIS CONDITIONS; CO2/CH4 SEPARATION; POLYIMIDE; POLYETHERIMIDE; MATRIMID(R)
제목
Carbon molecular sieve membranes on porous composite tubular supports for high performance gas separations
저자
Lee, Pyung-Soo; Kim, Daejin; Nam, Seung-Eun; Bhave, Ramesh R.
DOI
10.1016/j.micromeso.2015.12.054
발행일
2016-04
유형
Article
저널명
Microporous and Mesoporous Materials
권
224
페이지
332 ~ 338