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“Mine Water and the Environment”

Volume 18, Number 1–4, April 1999


PDFDiz, H. R., Novak, J. T. & Rimstidt, J. D. (1999): Iron Precipitation Kinetics in Synthetic Acid Mine Drainage. – Mine Water and the Environment, 18 (1): 1–14, 6 fig., 3 tab.; Lakewood, CO.

PDFRoyer, R. A. & Unz, R. F. (1999): Manganese Oxide Reduction in Laboritory Microcosms. – Mine Water and the Environment, 18 (1): 15–28, 6 fig., 1 tab.; Lakewood, CO.

PDFOsiensky, J. L., Williams, R. E., Ralston, D. R., Johnson, G. S. & Mink, L. L. (1999): Simulation of Electrical Potential Differences near a Contaminat Plume Excited by a Point Source of Current. – Mine Water and the Environment, 18 (1): 29–44, 11 fig.; Lakewood, CO.

PDFPigati, E. & López, D. L. (1999): Effect of Subsidence on Recharge at Abandoned Coal Mines Generating Acid Drainage: the Majestic Mine, Athens County, Ohio. – Mine Water and the Environment, 18 (1): 45–66, 13 fig., 1 tab.; Lakewood, CO.

PDFWandinger, M. (1999): Water-related Issues in Permafrost Mining, with Special Emphasis on the Coal Mining of Spitsbergen (Norway). – Mine Water and the Environment, 18 (1): 67–74, 2 fig.; Lakewood, CO.

PDFSammarco, O. (1999): Impacts of Tailings Flow Slides. – Mine Water and the Environment, 18 (1): 75–80, 2 fig., 1 tab.; Lakewood, CO.

PDFWolkersdorfer, Ch. & Thiem, G. (1999): Ground Water Withdrawal and Land Subsidence in Northeastern Saxony (Germany). – Mine Water and the Environment, 18 (1): 81–92, 3 fig., 4 tab.; Lakewood, CO.

Last Updated on Thursday, 16 February 2012 13:05  

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IWMA's members promote an integrated approach to mine water management, combining specialist expertise in hydrology, hydraulics, hydrogeology and water quality with geotechnical, environmental and mining skills. Our extensive experience in wet, arid and cold climates enables us to provide cost-effective, practical solutions for your project, and identify methods for more efficient utilisation of water in mining and mineral processing.

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