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POLYMIN - University of Waterloo

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<strong>POLYMIN</strong> 2005<br />

Molson, J.W., Fala, O., Aubertin, M., Bussière, B., Numerical simulations <strong>of</strong> sulphide oxidation,<br />

geochemical speciation and acid mine drainage in unsaturated waste rock piles, Journal <strong>of</strong><br />

Contaminant Hydrology, Volume 78, Issue 4, Pages 343-371, August 2005.<br />

Molson, J.W., Frind, E.O., FLONET v5.0 User Guide, Dept. <strong>of</strong> Earth Sciences, <strong>University</strong> <strong>of</strong><br />

<strong>Waterloo</strong>, 2004.<br />

Newman, L.L., G.M. Herasymiuk, S.L. Barbour, D.G. Fredlund, T. Smith, The hydrogeology <strong>of</strong><br />

waste rock dumps and a mechanism for unsaturated preferential flow, Proceedings: 4 th ICARD<br />

Vancouver 1997. pp. 551 – 564, 1997.<br />

Poirier, P., M. Roy, Acid mine drainage characterization and treatment at La Mine Doyon,<br />

Proceedings: Fourth International Conference on Acid Rock Drainage (ICARD, Vancouver),<br />

1487-1497, Nat. Res. Canada., Ottawa, 1997.<br />

Ritchie, A.I.M., Sulfide oxidation mechanisms: controls and rates <strong>of</strong> oxygen transport, Chapter<br />

8: Mineralogical Association <strong>of</strong> Canada Short Course Handbook on Environmental<br />

Geochemistry <strong>of</strong> Sulfide Mine Wastes (J.L. Jambor & D.W. Blowes Eds.), <strong>Waterloo</strong>, May, 1994.<br />

Ritchie, A.I.M., Oxidation and gas transport in piles <strong>of</strong> sulfidic material, Mineralogical<br />

Association <strong>of</strong> Canada, 2003.<br />

Romano, C. G., K.U. Mayer, D.R. Jones, D.A. Ellerbroek, and D.W. Blowes, Effectiveness <strong>of</strong><br />

various cover scenarios on the rate <strong>of</strong> sulphide oxidation <strong>of</strong> mine tailings, Jour. Hydrology 271,<br />

p.171-187, 2003.<br />

Schneider, P., K. Osenbrueck, P.L. Neitzel, and K. Nindel, In-situ mitigation <strong>of</strong> effluents from<br />

acid waste rock dumps using reactive surface barriers – a feasibility study, Mine Water and the<br />

Environment, 21: 36-44, 2002.<br />

Simunek, J, Sejna, M and van Genuchten, Th M, The HYDRUS-2D s<strong>of</strong>tware package for<br />

simulating the two-dimensional movements <strong>of</strong> water, heat, and multiple solutes in variablysaturated<br />

media, Version 2.0, U.S. Salinity Laboratory, 1999.<br />

Sracek, O., M. Choquette, P. Gelinas, R. Lefebvre, and R.V. Nicholson, Geochemical<br />

characterization <strong>of</strong> acid mine drainage from a waste rock pile, Mine Doyon, Quebec, Canada,<br />

Jour. Cont. Hydrol., in submission, 2003.<br />

Steefel, C.I., and K.T.B. MacQuarrie, Approaches to modeling <strong>of</strong> reactive transport in porous<br />

media, In: Reviews in Mineralogy (P. Lichtner, C. Steefel & E. Oelkers, Eds.), Volume 34,<br />

Mineralogical Society <strong>of</strong> America, p. 83-129, 1996.<br />

Walter, A.L., E.O. Frind, D.W. Blowes, C.J. Ptacek, and J.W. Molson, Modeling <strong>of</strong><br />

multicomponent reactive transport in groundwater 1. Model development and evaluation, Water<br />

Resour. Res. 30(11): 3137-3148, 1994a.<br />

43

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