Multicomponent reactive transport modeling of acid neutralization reactions in mine tailings

Author:

Jurjovec Jasna1,Blowes David W.1,Ptacek Carol J.21,Mayer K. Ulrich3

Affiliation:

1. Department of Earth Sciences; University of Waterloo; Waterloo, Ontario Canada

2. National Water Research Institute; Environment Canada; Burlington, Ontario Canada

3. Department of Earth and Ocean Sciences; University of British Columbia; Vancouver, British Columbia Canada

Publisher

American Geophysical Union (AGU)

Subject

Water Science and Technology

Reference43 articles.

1. Al , T. A. 1996 The hydrology and geochemistry of thickened, sulfide-rich tailings, Kidd Creek Mine, Timmins, Ontario Univ. of Waterloo, Dep. of Earth Sci. Waterloo, Ontario, Canada

2. Allison , J. D. D. S. Brown K. J. Novo-Gradac 1990 MINTEQA2/PRODEFA2, a geochemical assessment model for environmental systems Environ. Res. Lab., U.S. Environ. Prot. Agency Athens, Ga.

3. A consistent model for surface complexation on birnessite (ä-MnO2) and its application to a column experiment;Appelo;Geochim. Cosmochim. Acta,1999

4. Variable dispersivity in a column experiment containing MnO2 and FeOOH coated sand;Appelo;J. Contam. Hydrol.,1999

5. Users manual for WATEQ4F, with revised thermodynamic data base and test cases for calculating speciation of major trace, and redox elements in natural water;Ball;U.S. Geol. Surv. Open File Rep.,1991

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