New PDF release: Electrometallurgy 2012

By Michael L. Free, Michael Moats, Georges Houlachi, Edouard Asselin, Antoine Allanore, Jim Yurko, Shijie Wang

Court cases of a symposium backed by means of The Metallurgy and fabrics Society of CIM and the Hydrometallurgy and Electrometallurgy Committee of the Extraction and Processing department of TMS (The Minerals, Metals & fabrics Society)
Held in the course of the TMS 2012 Annual assembly & Exhibition Orlando, Florida, united states, March 11-15, 2012Content:

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AIME Annual Meeting (edited by D. J. Robinson and S. E. James), Metall. Soc. AIME, Warrendale PA (1984) 37. 30. J. A. Gonzalez, "A review of the lead and zinc electrodeposition control by polarization techniques," Minerals Engineering, 7(1), (1994), 87-97. 31. D. J. MacKinnon, J. M. Brannen, and R. C. Kerby, "Effect of impurities in zinc electrolysis," Journal of Applied Electrochemistry, 9 (1979), 71. 26 32. S. Jin, E. Ghali, G. St-Amant, G. Houlachi, "Electrochemical Investigation on the Different Behaviors of Hot Spot and General Zone of Lead-silver Alloys Anodes during Zinc Electrowinning," paper presented to Lead-Zinc 2000: TMS Fall Extraction & process Metallurgy Meeting.

Correlation Between Coating Decomposition Temperature and its Lifetime. De Nora Accelerated Life Test Conditions (30 kA/m2) used for assessment of DSA® Coatings in different commercial applications 37 The main features of this new coating are: • • • • • • • Stable and highly concentrated solutions Optimized coating thermal decomposition processing temperature Homogeneity of MMO in solution, due to precursors' chemical compatibility in the solution phase High resistance to corrosion of the formed MMO oxide layers in commercial operation High valence state of metals in the coating solutions which are maintained during thermal decomposition processing Enhanced compactness of the coating, thus resistant to surface deposits Improved catalyst layer utilization as measured by run hours per gram of precious metal applied In summary, the best compromise between the coating's catalytic activity and electrochemical coating stability has been reached through the application of this new coating solution technology.

4. S. Sandoval, P. Cook, C. Morales, and T. Robinson, "Demonstration of the Ferrous/Ferric Anode Reaction for Copper Electrowinning," In Copper 2010 Proceedings, (GDMB), 4, (2010), 1617-1634. 5. S. Sandoval, C. Clayton, S. Dominguez, C. Unger, C. and T. Robinson, "Development and Commercialization of an Alternative Anode for Copper Electrowinning," In Copper 2010 Proceedings, (GDMB), 4 (2010), 1635-1648,. 6. C. Faure and J. Marchal, "Magnesium by the Magnetherm Process", J. Metals, September, (1964), 721-723.

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