Factors Influencing Production Rates in Solution Mining of Uranium Using Basic Lixiviants

Author:

Guilinger T. R.,Schechter R. S.,Lake L. W.,Price J. G.,Bobeck P.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanical Engineering,Geotechnical Engineering and Engineering Geology,General Chemistry,Control and Systems Engineering

Reference28 articles.

1. Aplan, F.F., McKinney, W.A., and Perichele, A.D., 1974, Solution Mining Symposium, Proceedings of the 103rd Annual Meeting of the SME-AIME, Dallas, TX. Bhappu, R.B., Reynolds, D.H., and Stahman, W.S., 1963, “Studies on Hypochlorite Leaching of Molybdenite,” New Mexico State Bureau of Mines and Minerai Resources, Circular 66.

2. Bommer, P.M., and Schechter, R.S., 1979 “Mathematical Modeling of In Situ Uranium Leaching,” Society of Petroleum Engineering Journal, Vol. 19, No. 6, pp. 393.

3. Breland, M.B., Guilinger, T.R., and Schechter, R.S., 1981, “Preflush-Lixiviant Process for Solution Mining of Uranium Ore Beds,” US Patent Application Serial No. 168816.

4. Bunus, F., et al., 1969, “Some Quantitative Relations on the Radioactive Minerals Leaching Process,” Revue Roumaine de Chemie, No. 14, pp. 729.

5. Carlson, R.H., Norris, R.D., and Schellinger, R., 1980, “The Role of Oxidizing Agent in the Chemistry of In Situ Uranium Leaching,” Presented at the 55th Annual Fall Technical Conference of the SPE-AIME, Dallas, TX.

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