Rao et al., “Electrochemistry in the Plant”, Innovations in Flotation Technology, pp. 57-100 (1992), Kluwer Academic Publishers, P Mavros and K A Matis (eds), No Month. |
Rybas et al., “Ecological Outlook for the New Technology of the Cooper Nickel Ore Benefication Based on the Flotation with Nitrogen” XVIII International Mineral Processing Congress, Sydney, May 23-28, pp. 997-998. |
Bogdanov, “Current Advances in the Theory and Practice of Flotation: Research Work Performed at the Mekhanobr Institute”. Advances in Mineral Processing—edited by R Sormasundaran (1986), pp. 255-259, No Month. |
Rybas et al., “The Use of Nitrogen in the Beneficiation of Copper-Nickel Ores”, Tsvetnaia Metallurgiia, Moscow (non ferrous metallurgy), 1989 (2), pp. 112-114. |
Rybas et al., “Industrial use of Nitrogen in Ore Flotation in the Norilsk Benefication Plant”, Tsvetnaia Metallurgiia, Moscow (non-ferrous metallurgy), pp. 93-95, no month. |
Simmons, “Flotation of Auriferous Pyrite Using Santa Fe Pacific Gold's N2 TEC Flotation Process”, presented at the SME Annual Meeting, Denver, Colorado, Feb. 24-27, 1997. |
Nakazawa et al., “Effect of Pyrite-Pyrrhotite Contact on Their Flotabilities”, Minerals and Metallurgical Processing, Nov. 1985, pp. 206-211. |
Burger, “Froth Flotation Developments: This Industry Workhorse Goes From Strength to Strength,” E&MJ (Sep. 1983) pp. 67-75. |
Onstott et al., “By-Product Molybdenum Flotation From Copper Sulfide Concentrate With Nitrogen Gas In Enclosed Wemco Nitrogen Flotation Machines,” Preprint No. 84-65 (1984) Society of Mining Engineers of AIME, pp. 1-8. |
Berglund et al., “Influence of Different Gases In Flotation of Sulphide Minerals,” Proceedings of An Engineering Society Foundation Conference on Advances in Coal and Mineral Processing Using Flotation, (1989) pp. 71-76, Society for Mining, Metallurgy and Exploration, Inc., Littleton, Colorado. |
Martin et al., “Complex Sulphide Ore Processing With Pyrite Flotation by Nitrogen,” International Journal of Mineral Processing, 26 (1989) pp. 95-110, Elsevier Science Publishers B.V., Amsterdam. |
Jones, “Some Recent Development in the Measurement and Control of Xanthate, Perxanthate, Sulphide, and Redox Potential in Flotation,” International Journal of Mineral Processing, 33 (1991) pp. 193-205, Elsevier Science Publishers B.V., Amsterdam. |
Berglund, “Pulp Chemistry in Sulphide Mineral Flotation,” International Journal of Mineral Processing, 33 (1991) pp. 21-31, Elsevier Science Publishers B.V., Amsterdam. |
Klymowsky et al., “The Role of Oxygen in Xanthate Flotation of Galena, Pyrite and Chalcopyrite,” CIM, Bulletin for Jun., pp. 683-688 (1970). |
Rao and Finch, “Galvanic Interaction Studies on Sulphide Minerals,” Canadian Metallurgical Quarterly, vol. 27, No. 4, pp. 253-259 (1988). |
Rao et al., “Possible Applications of Nitrogen Flotation of Pyrite,” Minerals, Materials and Industry (ed. M.T. Jones), Institute of Mining and Metallurgy, pp. 285-293 (1990). |
Rao et al., “Adsorption of Amyl Xanthate at Pyrrhotite in the Presence of Nitrogen and Implications in Flotation,” Can. Metall. Q., vol. 30, No. 1, pp. 1-6 (1990). |
Xu et al., “Sphalerite Reverse Flotation Using Nitrogen,” Proc. Electrochem. Soc., vol. 91-17, Proc. Int. Symp. Electrochem. Miner. Met. Process. III, 3rd, pp. 170-190 (1992). |
Van Deventer et al., “The Effect of Galvanic Interaction on the Behaviour of the Fourth Phase During the Flotation of a Complex Sulphide Ore,” Minerals Engineering, vol. 6, No. 12, pp. 1217-1229 (1993). |
Author unknown, title unknown, Chapter IV, Gases and Aeration, pp. 63-70, date unknown. |
Plaskin et al., “Role of Gases in Flotation Reactions,” Academy of Sciences, U.S.S.R. Moscow, pp. 361-367, date unknown. |
Kongolo et al., “Improving the efficiency of sulphidization of oxidized copper ores by column an inert gas flotation,” Proceedings of Copper 95-COBRE 95 International Conference, vol. II, The Metallurgical Society of CIM, pp. 183-196, 1995. |