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Diffusion of methane and carbon dioxide in carbon molecular sieve membranes by multinuclear pulsed field gradient NMR.

Langmuir : the ACS journal of surfaces and colloids (2012-06-15)
Robert Mueller, Rohit Kanungo, Mayumi Kiyono-Shimobe, William J Koros, Sergey Vasenkov
RÉSUMÉ

Carbon molecular sieve (CMS) membranes are promising materials for energy efficient separations of light gases. In this work, we report a detailed microscopic study of carbon dioxide and methane self-diffusion in three CMS membrane derived from 6FDA/BPDA(1:1)-DAM and Matrimid polymers. In addition to diffusion of one-component sorbates, diffusion of a carbon dioxide/methane mixture was investigated. Self-diffusion studies were performed by the multinuclear (i.e., (1)H and (13)C) pulsed field gradient (PFG) NMR technique which combines the advantages of high field (17.6 T) NMR and high magnetic field gradients (up to 30 T/m). Diffusion measurements were carried out at different temperatures and for a broad range of the root-mean-square displacements of gas molecules inside the membranes. The diffusion data obtained from PFG NMR are compared with the corresponding results of membrane permeation measurements reported previously for the same membrane types. The observed differences between the transport diffusivities and self-diffusion coefficients of carbon dioxide and methane are discussed.

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Sigma-Aldrich
Acide sorbique, 99.0-101.0% anhydrous basis
Sigma-Aldrich
Acide sorbique, tested according to Ph. Eur.
Acide sorbique, European Pharmacopoeia (EP) Reference Standard