4.7 Article

Separation of methane-nitrogen mixtures using synthesis vertically aligned carbon nanotube membranes

期刊

APPLIED SURFACE SCIENCE
卷 258, 期 10, 页码 4819-4825

出版社

ELSEVIER
DOI: 10.1016/j.apsusc.2012.01.126

关键词

Carbon nanotubes; Anodic aluminum oxide; Gas separation; CH4/N-2 mixture

资金

  1. RIPI, Research Institute of Petroleum Industry in Iran

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In this paper, capabilities of carbon nanotube (CNT) membranes fabricated in cylindrical pores of anodic aluminum oxide (AAO) substrate to separate the binary mixtures of CH4/N-2 are studied experimentally. For this purpose, the permeability and selectivity of three CNT/AAO membranes with different growth time as 6 h, 12 h and 18 h are investigated. CNTs are grown vertically through holes of AAO with average pore diameter of 45 nm by chemical vapor deposition (CVD) of acetylene gas. CNT/AAO membranes with the same CNTs' outer diameters and different inner diameters are synthesized. The AAO are characterized by SEM analysis. In addition, SEM, TEM, BET N-2 adsorption analysis and Raman spectroscopy are employed to characterize aligned CNTs. Study on permeability and selectivity of membranes for three binary mixtures of CH4/N-2 showed that when the CNT inner diameters are 34 nm and 24 nm, viscous flow is the governing mechanism and insignificant selectivities of 1.2-1.24 are achieved. However, the membrane with CNT inner diameter and wall thickness of 8 nm and 16 nm respectively is considerably selective for CH4 over N-2. It was also found that CH4 mole fraction in the feed and upstream feed pressure have major effect on permeability and selectivity. The membrane with 18 h synthesis time showed the selectivity is in the range of 1.8-3.85. The enhancement factor for N-2 single gas diffusivity was also found to be about three times larger than that predicted by Knudsen diffusion model. (C) 2012 Elsevier B.V. All rights reserved.

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