292
Views
13
CrossRef citations to date
0
Altmetric
Articles

A Study on the Utilization of Magnetite for the Recovery of Platinum Group Metals from Chloride Solution

, , , , &

References

  • Acácia de Sá Pinheiro, A., Siqueira de Lima, T., Constante Campos, P., and Afonso, J. C., 2004, “Recovery of platinum from spent catalyst in a fluoride-containing medium.” Hydrometallurgy, 74, pp. 77–84.
  • Adamson, A. W. and Gast, A. P., 1997, Physical Chemistry of Surfaces, 6th ed., New York, USA: John Wiley and Sons Inc.
  • Aktas, S. and Morcali, M. H., 2011, “Platinum recovery from dilute solutions using activated carbon.” Trans. Nonferrous Metals Soc. China, 21, pp. 2554–2558.
  • Alorro, R. D., Hiroyoshi, N., Ito, M., and Tsunekawa, M., 2010a, Recovery of precious metals from chloride solution by magnetite, Proceedings of the 25th International Mineral Processing Congress (IMPC 2010), Brisbane, Australia: Australian Institute of Mining and Metallurgy, pp. 263–271
  • Alorro, R. D., Hiroyoshi, N., Kijitani, H., Ito, M., and Tsunekawa, M., 2010b, “On the use of magnetite for gold recovery from chloride solution.” Miner. Process. Extract. Metall. Rev., 31, pp. 201–213.
  • Alorro, R. D., Hiroyoshi, N., Kijitani, H., Ito, M., and Tsunekawa, M., 2015. “Electrochemical investigation of gold uptake from chloride solution by magnetite.” Miner. Process. Extract. Metall. Rev., 36(05), pp. 332–339.
  • Benguerel, E., Demopoulos, G. P., and Harris, G. B., 1996, “Speciation and separation of rhodium (III) from chloride solutions: A critical review.” Hydrometallurgy, 40, pp. 135–152.
  • Colombo, C., Oates, C. J., Monhemius, A. J., and Plant, J. A., 2008, “Complexation of platinum, palladium and rhodium with inorganic ligands in the environment.” Geochem.: Explor., Environ., Anal., 8, pp. 1–11.
  • Crundwell, F. K., Moats, M. S., Ramachandran, V., Robinson, T. G., and Davenport, W. G., 2011, Platinum-group metals, production, use and extraction costs, In Extractive Metallurgy of Nickel, Cobalt and Platinum Group Metals, Oxford, UK: Elsevier, pp. 395–409
  • Hunt, L. B. and Lever, F. M., 1969, “Availability of the platinum metals: A survey of productive resources to industrial uses.” Plat. Metals Rev., 13(4), pp. 126–138.
  • Jha, M. K., Lee, J. C., Kim, M. S., Jeong, J., Kim, B. S., and Kumar, V., 2013, “Hydrometallurgical recovery/recycling of platinum by the leaching of spent catalysts: A review.” Hydrometallurgy, 133, pp. 23–32.
  • Jimenez de Aberasturi, P. R., Ruiz de Larramendi, I., Ruiz de Larramendi, J. I., and Rojo, T., 2011, “Recovery by hydrometallurgical extraction of the platinum-group metals from car catalytic converters.” Miner. Eng., 24(6), pp. 505–513.
  • Kononova, O. N., Leyman, T. A., Melnikov, A. M., Kashirin, D. M., and Tselukovskaya, M. M., 2010, “Ion exchange recovery of platinum from chloride solutions.” Hydrometallurgy, 100, pp. 161–167.
  • Kononova, O. N., Melnikov, A. M., Borisova, T. V., and Krylov, A. S., 2011, “Simultaneous ion exchange recovery of platinum and rhodium from chloride solutions.” Hydrometallurgy, 105, pp. 341–349.
  • Lam, K. F., Fong, C. M., and Yeung, K. L., 2007, “Separation of precious metals using selective mesoporous adsorbents.” Gold Bull., 40(3), pp. 192–198.
  • Levitin, G. and Schmuckler, G., 2003, “Solvent extraction of rhodium chloride from aqueous solutions and its separation from palladium and platinum.” React. Funct. Polym., 54, pp. 149–154.
  • Mulwanda, J. and Dorfling, C., 2015, “Recovery of dissolved platinum group metals from copper leach solutions by precipitation.” Miner. Eng., 80, pp. 50–56.
  • Nikoloski, A. N., Ang, K. L., and Li, D., 2015, “Recovery of platinum, palladium and rhodium from acidic chloride leach solution using ion exchange resins.” Hydrometallurgy, 152, pp. 20–32.
  • Nowottny, C., Hawachs, W., and Schügerl, K., 1997, “Recovery of platinum, palladium and rhodium from industrial process leaching solutions by reactive extraction.” Sep. Purif. Technol., 12, pp. 135–144.
  • Raju, B., Rajesh Kumar, J., Lee, J. Y., Kwonc, H. K., Lakshmi Kantam, M., and Ramachandra Reddy, B., 2012, “Separation of platinum and rhodium from chloride solutions containing aluminium, magnesium and iron using solvent extraction and precipitation methods.” J. Hazard. Mater., 227–228, pp. 142–147.
  • Rao, C. R. M. and Reddi, G. S., 2000, “Platinum group metals (PGM); occurrence, use and recent trends in their determination.” Trends Analyt. Chem., 19(9), pp. 565–586.
  • Shams, K. and Goodarzi, F., 2006, “Improved and selective platinum recovery from spent α-alumina supported catalysts using pretreated anionic ion exchange resin.” J. Hazard. Mater., B131, pp. 229–237.
  • Shaw, D. J., 1980, Introduction to Colloid and Surface Chemistry, 3rd ed., London, UK: Butterworths.
  • Sun, P. P., Lee, J. Y., and Lee, M. S., 2012, “Separation of platinum (IV) and rhodium (III) from acidic chloride solution by ion exchange with anion resins.” Hydrometallurgy, 113–114, pp. 200–204.
  • Uheida, A., Iglesias, M., Fontàs, C., Hidalgo, M., Salvadò, V., Zhang, Y., and Muhammed, M., 2006, “Sorption of palladium (II), rhodium (II), and platinum (IV) on Fe3O4 nanoparticles.” J. Colloid. Interf. Sci., 301, pp. 402–408.
  • White, A. F., Peterson, M. L., and Hochella, M. F., Jr., 1994, “Electrochemistry and dissolution kinetics of magnetite and ilmenite.” Geochim. Cosmochim. Acta, 58(8), pp. 1859–1875.
  • Wilkinson, F., 1980, Chemical Kinetics and Reaction Mechanisms, New York, USA: Van Nostrand Reinhold Company
  • Wiraseranee, C., Yonezu, K., Yokoyama, T., Wiwattanadate, D., Leepawpanth, Q., and Watanabe, K., 2008, “Selective recovery of gold and platinum by coprecipitation with manganese (II) hydroxide.” Proceedings of the 2nd International Workshop and Conference on Earth Resources Technology, Bangkok: Chulalongkorn University, pp. 143–150.
  • Wojnicki, M., Paclawski, K., Socha, R. P., and Fitzner, K., 2013, “Adsorption and reduction of platinum (IV) chloride complex ions on activated carbon.” Trans. Nonferrous Metals Soc. China, 23, pp. 1147–1156.
  • Wolowicz, A. and Hubiki, Z., 2009, “Palladium (II) complexes adsorption from the chloride solutions with macrocomponent addition using strongly basic anion exchange resins, type 1.” Hydrometallurgy, 98, pp. 206–212.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.