OTHER TECHNICAL PAPERS
Oct 1, 2004

Selection of Cementitious Mixes as a Barrier for Landfill Leachate Containment

Publication: Journal of Materials in Civil Engineering
Volume 16, Issue 5

Abstract

Cementitious materials have traditionally not been economically viable for most landfill containment systems. Conventional liners have been made with clay and high-density polyethylene membranes, supporting packed aggregate layers. This paper describes an alternative technology in which low-cost concrete liners may be constructed, making use of materials, which are considered to be wastes by their primary producers. Many materials that have the potential for use either as binder or as aggregate materials for concrete currently form part of the United Kingdom landfill inventory. Although unattractive for use as structural concrete, they offer considerable utility for landfill liner applications. Recent increases in disposal costs including the introduction of the landfill tax have, however, made low cost low strength mixes a financially attractive option as a barrier for landfill leachate containment. In this paper the required properties of cementitious mixes for this purpose are discussed. The results of an extensive investigation into potential mixes using various mineral wastes are presented and the measured properties are compared with those, which are required. All of the mixes, which have been investigated, contain large amounts of secondary materials. If these materials were treated as wastes their disposal costs would be high, so the mixes may be designated “negative cost mixes.” The results indicate that some of these mixes are well suited to this application.

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Published In

Go to Journal of Materials in Civil Engineering
Journal of Materials in Civil Engineering
Volume 16Issue 5October 2004
Pages: 477 - 486

History

Received: Mar 4, 2003
Accepted: Dec 2, 2003
Published online: Oct 1, 2004
Published in print: Oct 2004

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Authors

Affiliations

Eshmaiel Ganjian
R.F., School of Science and Environment, Sir John Laing Building, Coventry Univ., Priory St., Coventry CV1 5FB, UK. E-mail: [email protected]
Peter A. Claisse
Senior Lecturer, School of Science and Environment, Sir John Laing Building, Coventry Univ., Priory St., Coventry CV1 5FB, UK. E-mail: [email protected]
Mark Tyrer
R.F., Dept. of Materials, Royal School of Mines, Imperial College, Prince Consort Rd., London SW7 2BP, UK. E-mail: [email protected]
Alan Atkinson
Professor, Dept. of Materials, Royal School of Mines, Imperial College, Prince Consort Rd., London SW7 2BP, UK. E-mail: [email protected]

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