TECHNICAL PAPERS
Sep 1, 2001

Soil-Water Characteristic Curves and Dual Porosity of Sand–Diatomaceous Earth Mixtures

Publication: Journal of Geotechnical and Geoenvironmental Engineering
Volume 127, Issue 9

Abstract

The soil-water characteristic curves (SWCCs) for sand–pelletized diatomaceous earth mixtures are measured. The measured SWCCs are bimodal due to two distinct pore-size distributions associated with the microscopic (intrapellet) and macroscopic (interpellet) porosity regions of the pelletized diatomaceous earth. The measured data for the bimodal SWCCs are fit with modified forms of the Brooks-Corey, van Genuchten, and Fredlund-Xing SWCC functions, and the microscopic and macroscopic porosity portions of the mixtures are determined from the SWCC fits. Both the total and the microscopic porosity of the mixtures increase with increased percentage by dry weight of diatomaceous earth in the mixtures. However, the macroscopic porosity of the mixtures is essentially independent of the diatomaceous earth content due to the similarity in the particle-size distributions of the sand and the diatomaceous earth. The results suggest that sand–diatomaceous earth mixtures may be useful in applications where an increase in water-holding capacity (that is, relative to sand) is desired, such as in landfill covers. In such applications, a balance between the increase in cost and the increase in water-holding capacity due to the use of the diatomaceous earth must be achieved.

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Published In

Go to Journal of Geotechnical and Geoenvironmental Engineering
Journal of Geotechnical and Geoenvironmental Engineering
Volume 127Issue 9September 2001
Pages: 790 - 800

History

Received: Oct 17, 2000
Published online: Sep 1, 2001
Published in print: Sep 2001

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Authors

Affiliations

Charles D. Shackelford
Associate Member, ASCE
Assoc. Engr., Montgomery Watson Mining Group, 165 South Union Blvd., Ste. 410, Lakewood, CO 80228; formerly, Grad. Student, Dept. of Civ. Engrg., Colo. State Univ., Fort Collins, CO 80523-1372.
Prof., Dept. of Civ. Engrg., Colo. State Univ., Fort Collins, CO 80523-1372 (corresponding author). E-mail: [email protected]

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