A review of the fundamental studies of the copper activation mechanisms for selective flotation of the sulfide minerals, sphalerite and pyrite.
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[1] James A. Finch,et al. The role of copper ions in sphalerite-pyrite flotation selectivity , 2001 .
[2] D. Vučinić,et al. Floatability and adsorption of ethyl xanthate on copper-activated sphalerite in weakly acidic medium , 1990 .
[3] M. C. Hernández,et al. Transformation of sphalerite particles into copper sulfide particles by hydrothermal treatment with Cu(II) ions , 2004 .
[4] J. Aaltonen,et al. On-line analysis of flotation process waters at Siilinjärvi (Finland) apatite concentrating plant , 2003 .
[5] D. Vučinić,et al. The ethylxanthate adsorption on copper-activated sphalerite under flotation-related conditions in alkaline media , 1990 .
[6] R. Pattrick,et al. Lead sorption on the surface of ZnS with relevance to flotation: A fluorescence REFLEXAFS study , 1998 .
[7] R. Natarajan,et al. New collectors for sphalerite flotation , 2006 .
[8] Jorge Rubio,et al. DAF–dissolved air flotation: Potential applications in the mining and mineral processing industry , 2007 .
[9] N. Altun,et al. Quantifying hydrophobicity of pyrite after copper activation and DTPI addition under electrochemically controlled conditions , 2004 .
[10] J. Szczypa,et al. Effect of surface oxidation and iron contents on xanthate ions adsorption of synthetic sphalerites , 1980 .
[11] R. Yoon,et al. An XPS Study of Sphalerite Activation by Copper , 1998 .
[12] Taki Güler,et al. Two-liquid flotation of sulphides: An electrochemical approach , 2007 .
[13] W. Skinner,et al. Depressing mechanisms of sodium bisulphite in the collectorless flotation of copper-activated sphalerite , 2005 .
[14] J. Finch,et al. Sphalerite activation and surface Pb ion concentration , 2002 .
[15] R. Smart,et al. The mechanism of copper activation of sphalerite , 1999 .
[16] W. Skinner,et al. Irradiation Effects During XPS Studies of Cu(II) Activation of Zinc Sulphide , 1996 .
[17] B. A. Wills,et al. Mineral Processing Technology: An Introduction to the Practical Aspects of Ore Treatment and Mineral Recovery , 1988 .
[18] R. Pattrick,et al. Copper activation of sphalerite and its reaction with xanthate in relation to flotation: an X-ray absorption spectroscopy (reflection extended X-ray absorption fine structure) investigation , 1999 .
[19] S. G. Ozkan,et al. Investigation of impact of water type on borate ore flotation. , 2004, Water research.
[20] M. F. Young,et al. Designing flotation circuits for high fines recovery , 2006 .
[21] R. Yoon,et al. Electrochemistry of copper activation of sphalerite at pH 9.2 , 2000 .
[22] J. Leppinen. FTIR and flotation investigation of the adsorption of ethyl xanthate on activated and non-activated sulfide minerals , 1990 .
[23] Asit K. Biswas,et al. Extractive metallurgy of copper , 1976 .
[24] J. Szczypa,et al. Copper ion activation of synthetic sphalerites with various iron contents , 1979 .
[25] R. Yoon,et al. Lead activation of sphalerite during galena flotation , 1996 .
[26] S. Grano,et al. Mechanism for the recovery of silicate gangue minerals in the flotation of ultrafine sphalerite , 2007 .
[27] Effect of copper atoms on the adsorption of ethyl xanthate on a sphalerite surface , 2005 .
[28] Shaoxian Song,et al. Activation of high-iron marmatite in froth flotation by ammoniacal copper(II) solution , 2007 .
[29] R. Skinner,et al. The impact of water quality on flotation performance , 2001 .
[30] D. Fornasiero,et al. Effect of surface oxide/hydroxide products on the collectorless flotation of copper-activated sphalerite , 2006 .
[31] A. W. Stradling,et al. Preferential deportment of low-iron sphalerite to lead concentrates , 2000 .
[32] John Ralston,et al. Effect of collectors, conditioning pH and gases in the separation of sphalerite from pyrite☆ , 1998 .
[33] Jan D. Miller,et al. The low-potential hydrophobic state of pyrite in amyl xanthate flotation with nitrogen , 2002 .
[34] James A. Finch,et al. Quantifying accidental activation. Part I. Cu ion production , 2002 .
[35] C. Klein,et al. Manual of mineralogy : (after James D. Dana) , 1993 .
[36] John Ralston,et al. Characterisation of sphalerite and pyrite flotation samples by XPS and ToF-SIMS , 2003 .
[37] J. A. Finch,et al. A review of water re-use in flotation☆ , 1989 .
[38] A. Gerson,et al. An investigation of the Cu (II) adsorption mechanism on pyrite by ARXPS and SIMS , 2000 .
[39] J. Finch,et al. Flotation of sphalerite in the presence of iron ions , 1992 .
[40] J. Leja. Surface Chemistry of Froth Flotation , 1982 .
[41] K. Sutherland,et al. Principles of flotation , 1955 .
[42] Peter C. Hayes,et al. Process Principles in Minerals and Materials Production , 2003 .
[43] W. Skinner,et al. Correlation between copper-activated pyrite flotation and surface species : Effect of pulp oxidation potential , 2005 .
[44] N. P. Finkelstein. The activation of sulphide minerals for flotation: a review , 1997 .
[45] Petrus Christiaan Pistorius,et al. Effect of cuprous cyanide, dry and wet milling on the selective flotation of galena and sphalerite , 2006 .
[46] K. Forssberg,et al. The solution electrochemistry of sulfide-xanthate-cyanide systems in sulfide mineral flotation , 1996 .
[47] Sverre Myhra,et al. Handbook of surface and interface analysis : methods for problem-solving , 1998 .
[48] V. Evangelou. Pyrite oxidation and its control , 1995 .
[49] W. Skinner,et al. Effect of oxidation potential and zinc sulphate on the separation of chalcopyrite from pyrite , 2006 .
[50] R. Woods,et al. The surface oxidation of pyrite , 1987 .
[51] W. Skinner,et al. Examination of the proposition that Cu(II) can be required for charge neutrality in a sulfide lattice — Cu in tetrahedrites and sphalerite , 2007 .
[52] S. Grano,et al. Galvanic interaction of grinding media with pyrite and its effect on floatation , 2005 .
[53] M. Dimitrijević,et al. Kinetics of pyrite dissolution by hydrogen peroxide in perchloric acid , 1996 .
[54] A. Vogg,et al. Effect of Fe-lattice ions on adsorption, electrokinetic, calorimetric and flotation properties of sphalerite , 1991 .
[55] H. Majima. How oxidation affects selective flotation of complex sulphide ores , 1969 .
[56] J. Finch,et al. Aggregation of sphalerite: role of zinc ions. , 2003, Journal of colloid and interface science.
[57] J. Finch,et al. The role of copper and lead in the activation of pyrite in xanthate and non-xanthate systems , 2006 .
[58] J. Finch,et al. Pyrite flotation in the presence of metal ions and sphalerite , 1997 .
[59] A. L. Valdivieso,et al. Dextrin as a non-toxic depressant for pyrite in flotation with xanthates as collector , 2004 .
[60] James A. Finch,et al. Deactivation of Pb-contaminated sphalerite by polyphosphate , 2006 .
[61] M. Biesinger,et al. Improved statistical methods applied to surface chemistry in minerals flotation , 2006 .
[62] J. Finch,et al. Comparison of the activation of sphalerite by copper and lead , 1999 .
[63] J. Finch,et al. Copper ion mobility in sphalerite activation , 2001 .
[64] J. Shapter,et al. The effect of bulk iron concentration and heterogeneities on the copper activation of sphalerite , 2008 .
[65] R. Smart,et al. A comparison of the kinetics and mechanism of acid leaching of sphalerite containing low and high concentrations of iron , 2004 .
[66] W. Skinner,et al. Copper(II) activation and cyanide deactivation of zinc sulphide under mildly alkaline conditions , 1997 .
[67] H. Wenk,et al. Minerals: Their Constitution and Origin , 2004 .
[68] D. Fornasiero,et al. Effect of iron content in sphalerite on flotation , 2005 .
[69] A. Gerson,et al. Cu(II) adsorption mechanism on pyrite: an XAFS and XPS study , 2000 .
[70] C. Prestidge,et al. The electrochemistry of PbII activated sphalerite in relation to flotation , 2001 .
[71] I. V. Mitchell,et al. Surface structure of sphalerite studied by medium energy ion scattering and XPS , 2007 .
[72] R. Smart,et al. Secondary ion mass spectrometry investigation of the interaction of xanthate with galena , 2001 .
[73] Jan D. Miller,et al. Pyrite activation in amyl xanthate flotation with nitrogen , 2006 .
[74] J. Finch,et al. Quantifying accidental activation. Part II. Cu activation of pyrite , 2002 .
[75] R. Woods,et al. An XPS investigation of the surface of natural sphalerites under flotation-related conditions , 1989 .