| Literature DB >> 11543587 |
R W Mair1, G P Wong, D Hoffmann, M D Hurlimann, S Patz, L M Schwartz, R L Walsworth.
Abstract
We show that gas diffusion nuclear magnetic resonance (GD-NMR) provides a powerful technique for probing the structure of porous media. In random packs of glass beads, using both laser-polarized and thermally polarized xenon gas, we find that GD-NMR can accurately measure the pore space surface-area-to-volume ratio, S/V rho, and the tortuosity, alpha (the latter quantity being directly related to the system's transport properties). We also show that GD-NMR provides a good measure of the tortuosity of sandstone and complex carbonate rocks.Entities:
Keywords: NASA Discipline Environmental Health; Non-NASA Center
Mesh:
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Year: 1999 PMID: 11543587 DOI: 10.1103/PhysRevLett.83.3324
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161