Predicted and Field-Measured Resuspension of Flooded Mine Tailings

Author:

Yanful Ernest K.1,Catalan Lionel J. J.2

Affiliation:

1. Professor, Geotechnical Research Centre, Dept. of Civil and Environmental Engineering, Univ. of Western Ontario, London, ON, Canada N6A 5B9 (corresponding author).

2. Assistant Professor, Dept. of Chemical Engineering, Lakehead Univ., 955 Oliver Rd., Thunder Bay, ON, Canada P7B 5E1.

Publisher

American Society of Civil Engineers (ASCE)

Subject

General Environmental Science,Civil and Structural Engineering,Environmental Chemistry,Environmental Engineering

Reference64 articles.

1. Airy G. B. (1845). “Tides and waves.” Encyclopedia metropolitan London Art 192 241–396.

2. Amos C. L. Brylinsky M. Sutherland T. F. O’Brien D. Lee S. and Cramp A. (1998). “The stability of a mudflat in the Humber Estuary South Yorkshire U.K.” Sedimentary processes in the intertidal zone K. S. Black D. M. Paterson and A. Cramp eds. Geological Society London Special Publication No. 139 25–43.

3. Wind driven water currents.;Baines W. D.;J. Hydraul. Div., Am. Soc. Civ. Eng.,1965

4. Inshore–Offshore Sedimentation Differences Resulting from Resuspension in the Eastern Basin of Lake Erie

5. Calmano W. Förstner U. and Hong J. (1994). “Mobilization and scavenging of heavy metals following resuspension of anoxic sediments from the Elbe River.” Environmental geochemistry of sulfide oxidation C. N. Alpers and D. W. Blowes eds. ACS Symposium Series 550 298–321.

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