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A magnetic characterization of the texture of simple porous media
A magnetic way of characterizing the geometric structure of the voids in macroporous material is presented. A system of methane gas confined interstitially in a close-packed assembly of nonabsorbent zirconia beads constitutes a two-phase model (pore and matrix) of simple porous media. Nuclear magnet...
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Published in: | Journal of physics. D, Applied physics Applied physics, 1995-02, Vol.28 (2), p.229-238 |
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cited_by | cdi_FETCH-LOGICAL-c379t-8f0f964400becbf94ec7b890d5245aa3ae67bb2d675d58c0321beb0f31626033 |
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cites | cdi_FETCH-LOGICAL-c379t-8f0f964400becbf94ec7b890d5245aa3ae67bb2d675d58c0321beb0f31626033 |
container_end_page | 238 |
container_issue | 2 |
container_start_page | 229 |
container_title | Journal of physics. D, Applied physics |
container_volume | 28 |
creator | Smith, M E Stuart, S N |
description | A magnetic way of characterizing the geometric structure of the voids in macroporous material is presented. A system of methane gas confined interstitially in a close-packed assembly of nonabsorbent zirconia beads constitutes a two-phase model (pore and matrix) of simple porous media. Nuclear magnetic resonance measurements of the proton spectral linewidth and spin echo decay are reported. They are compared with a theoretical model of the intrinsic, nonuniform, magnetic field and its gradient which are due to the heterogeneous magnetic susceptibility. (Original abstract-amended) |
doi_str_mv | 10.1088/0022-3727/28/2/001 |
format | article |
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ispartof | Journal of physics. D, Applied physics, 1995-02, Vol.28 (2), p.229-238 |
issn | 0022-3727 1361-6463 |
language | eng |
recordid | cdi_proquest_miscellaneous_27430888 |
source | Institute of Physics; Institute of Physics:Jisc Collections:IOP Publishing Journal Archive 1874-1998 (access period 2020 to 2024) |
subjects | Chemistry Colloidal state and disperse state Exact sciences and technology General and physical chemistry Porous materials |
title | A magnetic characterization of the texture of simple porous media |
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