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REFERENCES

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Baker A.J.M., Reeves, R.D., McGrath, S.P., In Situ Decontamination of Heavy Metal Polluted Soils Using Crops of Metal-Accumulating Plants – A Feasibility Study” in In Situ Bioreclamation eds. R.E. Hinchee and R.F. Olfenbuttel Butterworth-Heinemann, Boston Ma pp 600 – 605, 1991

Benner, S.G., Gould, W.D. and Blowes, D.W. 2000. Microbial populations associated with the generation and treatment of acid mine drainage. Chem. Geology 169: 435-448.

Cochran, W.G. 1950. Estimation of bacterial densities by means of the most probable number. Biometrics 6: 105-116.

Gusek, J. and T. Wildeman, Short Course # 6: “Treatment of Acid Mine Drainage”, Fourth International Conference on Acid Rock Drainage, Vancouver, BC, May 31 – June 6, 1997.

Higgins, J., Hurd, S. & Weil, C. 1999, The Use of Engineered Wetlands to Treat Recalcitrant Wastewaters. 4th International Conference on Ecological Engineering, Oslo, Norway, June 1999.

Higgins, J. 2000a, The Treatment of Landfill Leachates with Engineered Wetlands, On-Site Wastewater Systems: Protecting the Environment into the Next Millennium, Ontario Rural Wastewater Centre Conference, Toronto, ON, Canada, March 28, 2000.

Higgins, J. 2000b, The Use of Engineered Wetlands to Treat Recalcitrant Wastewaters, Advances in Ecological Sciences, J. Envir. Sci. Health, A35(8), 1309-1334.

Higgins, J., 2000c, The Treatment of Landfill Leachates in Engineered Wetlands, p 1391, Vol III, Proceedings of 7th International Conference on Wetland Systems for Pollution Control, Orlando, FL, USA, Nov. 11- 16, 2000.

Mattes, A G., Gould W.D., Duncan W.F., Multi-stage Biological Treatment System for Removal of Heavy Metal Contaminants, Remediation Technologies Symposium 2002¸ Banff, Alberta, Oct. 16 – 18, 2002

Newman, D.K., Beveredge, T.J. and Morel, F.M.M. 1997. Precipitation of arsenic trisulfide by Desulfotomaculum auripigmentum. Appl. Environ. Microbiol. 63: 2022-2208.

Postgate, J.R.1984. “The Sulphate Reducing Bacteria”, Cambridge University Press, Cambridge, England.

Sorensen, J. 1982. Reduction of ferric iron in anaerobic, marine sediment and interaction with reduction of nitrate and sulfate. Appl. Environ. Microbiol. 43: 319-324.

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