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Gas diffusion measurement and modeling in coarse-textured porous media

Scott B. Jones, Dani Or and Gail E. Bingham
Gas diffusion measurement and modeling in coarse-textured porous media (in Advances in measurement and monitoring methods, Ty P. A. Ferre (editor) and Gerald J. Kluitenberg (editor))
Vadose Zone Journal (November 2003) 2 (4): 602-610

Abstract

Conventional gas diffusion measurements in coarse-textured and aggregated porous media are severely limited due to hydrostatically induced variations in water content and air-filled porosity. Motivated by the need to measure gas diffusion in coarse-textured plant growth media designed for use in microgravity (e.g., aboard the International Space Station), our objectives were (i) to develop and test an automated diffusion measurement system on earth with water content adjustment capability and that minimizes hydrostatic effects, and (ii) to model characteristics of gas diffusion in partially saturated aggregated porous media. The horizontally oriented O (sub 2) diffusion cell design for reducing the gravitational effect was based on a thin profile rectangular cell. Continuous measurement of O (sub 2) in sealed dual-chamber diffusion cells provided concentration data for fitting diffusion coefficients where water content was controlled volumetrically using a porous membrane with an imposed pressure for incremental addition or removal of water. Gas diffusion was modeled as a function of air-filled porosity in millimeter-sized aggregated particles exhibiting a substantial difference between internal and external aggregate pore sizes. For this case, the internal aggregate porosity contribution to diffusion compared with external aggregate pore space was minor as described by a dual-porosity diffusion model. The measurement approach described can be used in other coarse-textured and structured porous media.


ISSN: 1539-1663
Serial Title: Vadose Zone Journal
Serial Volume: 2
Serial Issue: 4
Title: Gas diffusion measurement and modeling in coarse-textured porous media
Title: Advances in measurement and monitoring methods
Author(s): Jones, Scott B.Or, DaniBingham, Gail E.
Author(s): Ferre, Ty P. A.editor
Author(s): Kluitenberg, Gerald J.editor
Affiliation: Utah State University, Department of Plants, Soils and Biometeorology, Logan, UT, United States
Affiliation: University of Arizona, Department of Hydrology and Water Resources, Tucson, AZ, United States
Pages: 602-610
Published: 200311
Text Language: English
Publisher: Soil Science Society of America, Madison, WI, United States
References: 29
Accession Number: 2006-007749
Categories: Soils
Document Type: Serial
Bibliographic Level: Analytic
Annotation: Accessed on December 16, 2005
Illustration Description: illus. incl. 2 tables
Source Medium: WWW
Secondary Affiliation: Kansas State University, USA, United StatesUniversity of Connecticut, USA, United StatesSpace Dynamics Laboratory, USA, United States
Country of Publication: United States
Secondary Affiliation: GeoRef, Copyright 2018, American Geosciences Institute.
Update Code: 200603
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