Mineralogical and chemical changes in mineral liners in contact with landfill leachate
- 1 October 1998
- journal article
- Published by SAGE Publications in Waste Management & Research
- Vol. 16 (5) , 411-420
- https://doi.org/10.1177/0734242x9801600503
Abstract
The mineralogical and chemical integrity of mineral liners for domestic waste landfill sites was investigated using a series of batch reactor experiments. A synthetic acetogenic leachate was developed based on the composition of domestic waste leachates. The interactions between the synthetic leachate and mudrocks used by Shanks and McEwan Ltd. to line land fill sites located in the United Kingdom are described. The results of the laboratory experiments are contrasted against those obtained from samples of a 15-year-old mineral liner from a landfill site located near Stewartby, Bedfordshire. The interactions between a concentrated, ionic solution, such as a leachate, and mineral liners include ion-exchange, particle size reduction, mineral dissolution and clay-mineral disorder ing and collapse. Bentonites and high-swelling clays are more susceptible to mineral transformations than mixed assem blage mudrocks and low-swelling clays. Understanding the interactions between leachate and mudrocks will assist the prediction of the long term performance and integrity of nat ural lining materials.Keywords
This publication has 11 references indexed in Scilit:
- Synthesis of illite-smectite from smectite at Earth surface temperatures and high pHClay Minerals, 1993
- Hydraulic conductivity and diffusion monitoring of the Keele Valley Landfill liner, Maple, OntarioCanadian Geotechnical Journal, 1993
- Chemical and Physical Changes in the Subsoil of Three Waste LandfillsWaste Management & Research, 1993
- Landfill Leachate Attenuation by Clay SoilHazardous Waste and Hazardous Materials, 1991
- A procedure for evaluating municipal solid waste leachate components capable of causing volume shrinkage in compacted clay soilsEnvironmental Technology Letters, 1988
- Leachate Migration Through Clay Below a Domestic Waste Landfill, Sarnia, Ontario, Canada: Chemical Interpretation and Modelling PhilosophiesPublished by ASTM International ,1986
- Montmorillonite/Illite Stability DiagramsClays and Clay Minerals, 1984
- Attenuation of Potential Pollutants in Landfill Leachate By Lower GreensandWaste Management & Research, 1983
- Mechanism of burial metamorphism of argillaceous sediment: 1. Mineralogical and chemical evidenceGSA Bulletin, 1976
- Clay MineralogySoil Science, 1953