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Research Article

Statistical study of the influence of some variables on cobalt electrowinning

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References

  • Ali, S., and M. Salim. 2013. Effect of pH at early formed structures in cobalt electrodeposition. Asian Journal of Chemistry 25 (8):4137–40. doi:10.14233/ajchem.2013.11031.
  • Bartlett, R. W. 1995. Processing of cobalt-copper-arsenic complex ore concentrate. Mineral Processing and Extractive Metallurgy Review 15 (1–4):51–59. doi:10.1080/08827509508914184.
  • Bertazzoli, R., and M. F. B. Sousa. 1997. Studies of the electrodeposition of cobalt on a vitreous carbon Electrode. Journal of the Brazilian Chemical Society 8 (4):357–62. doi:10.1590/S0103-50531997000400007.
  • Bezrukova, N. P., G. L. Pashkov, and I. U. Fleytlich. 1995. Aliphatic non-chelating aldoximes as the effective extractants for recovery and separation of nickel and cobalt from halide and thiocyanate solutions. Mineral Processing and Extractive Metallurgy Review 15 (1–4):163–67. doi:10.1080/08827509508914194.
  • Chandra, M., D. Yu, Q. Tian, and X. Guo. 2022. Recovery of cobalt from secondary resources: A comprehensive review. Mineral Processing and Extractive Metallurgy Review 43 (6):679–700. doi:10.1080/08827508.2021.1916927.
  • Cobalt Institute. 2022. Cobalt mining. Accessed June 7, 2022. https://www.cobaltinstitute.org/about-cobalt/cobalt-life-cycle/cobalt-mining/.
  • Cohen-Hyams, T., W. D. Kaplan, and J. Yahalom. 2002. Structure of electrodeposited cobalt. Electrochemical and Solid-State Letters 5 (8):75–78. doi:10.1149/1.1491335.
  • Crundwell, F. K., M. S. Moats, V. Ramachandran, T. G. Robinson, and W. G. Davenport. 2011. Extractive metallurgy of nickel, cobalt and platinum-group metals. Amsterdam: Elsevier Ltd. doi:10.1016/C2009-0-63541-8.
  • Dalini, E. A., G. Karimi, S. Zandevakili, and M. Goodarzi. 2020. A review on environmental, economic and hydrometallurgical processes of recycling spent lithium-ion batteries. Mineral Processing and Extractive Metallurgy Review 42 (7):451–72. doi:10.1080/08827508.2020.1781628.
  • Das, S. C., and T. Subbaiah. 1984. Electrowinning of cobalt, winning from pure cobalt sulphate bath. Hydrometallurgy 12 (3):317–33. doi:10.1016/0304-386X(84)90004-5.
  • Das, S. C., and T. Subbaiah. 1987. Electrowinning of cobalt from a sulphate bath containing H3BO3 and NaF. Journal of Applied Electrochemistry 17:675–83. doi:10.1007/BF01007801.
  • Elsherief, A. E. 2003. Effects of cobalt, temperature and certain impurities upon cobalt electrowinning from sulfate solutions. Journal of Applied Electrochemistry 33 (1):43–49. doi:10.1023/A:1022938824111.
  • Fayette, M., U. Bertocci, and G. R. Stafford. 2016. In situ stress measurements during cobalt electrodeposition on (111)-Textured Au. Journal of the Electrochemical Society 163 (5):146–53. doi:10.1149/2.0511605jes.
  • Graciano, V. P., U. Bertocci, and G. R. Stafford. 2019. In-situ stress measurements during cobalt electrodeposition. Journal of the Electrochemical Society 166 (1):3246–53. doi:10.1149/2.0311901jes.
  • Huang, J. H., C. Kargl-Simard, and A. M. Alfantazi. 2004. Electrowinning of cobalt from a sulfate-chloride solution. Canadian Metallurgical Quarterly 43 (2):163–72. doi:10.1179/cmq.2004.43.2.163.
  • Jandová, J., H. Vu, and P. Dvorák. 2005. Treatment of sulphate leach liquors to recover cobalt from waste dusts generated by the glass industry. Hydrometallurgy 77 (1–2):67–73. doi:10.1016/j.hydromet.2004.10.010.
  • Jeffrey, M. I., W. L. Choo, and P. L. Breuer. 2000. The effect of additives and impurities on the cobalt electrowinning process. Minerals Engineering 13 (12):1231–41. doi:10.1016/S0892-6875(00)00107-2.
  • Katwika, C. N., M. Kime, P. N. M. Kalenga, B. I. Mbuya, and T. R. Mwilen. 2019. Application of Knelson concentrator for beneficiation of copper–cobalt ore tailings. Mineral Processing and Extractive Metallurgy Review 40 (1):35–45. doi:10.1080/08827508.2018.1481057.
  • Küzeci, E., R. Kammel, and S. K. Gogia. 1992. Electrowinning of nickel from aqueous sulphate bath in the presence of metallic and LIX64N impurities. Mineral Processing and Extractive Metallurgy Review 10 (1):57–69. doi:10.1080/08827509208914075.
  • Lu, J., D. Dreisinger, and T. Glück. 2018. Cobalt electrowinning, a systematic investigation for high quality electrolytic cobalt production. Hydrometallurgy 178:19–29. doi:10.1016/j.hydromet.2018.04.002.
  • Mansur, M. B., A. S. Guimarães, and M. Petraniková. 2021. An overview on the recovery of cobalt from end-of-life lithium ion batteries. Mineral Processing and Extractive Metallurgy Review 43 (4):489–509. doi:10.1080/08827508.2021.1883014.
  • Matsushima, J. T., F. Trivinho-Strixino, and E. C. Pereira. 2006. Investigation of cobalt deposition using the electrochemical quartz crystal microbalance. Electrochimica Acta 51 (10):1960–66. doi:10.1016/j.electacta.2005.07.003.
  • Mishra, K. G., P. Singh, and D. Muir. 2002. Nucleation during Electrocrystallization of Cobalt on Glassy Carbon (GC). Journal of Applied Electrochemistry 32 (12):1391–96. doi:10.1023/A:1022680903893.
  • Mohanty, A., and N. Devi. 2021. A review on green method of extraction and recovery of energy critical element cobalt from spent Lithium-Ion Batteries (LIBs). Mineral Processing and Extractive Metallurgy Review: 1–12. Advance online publication. doi:10.1080/08827508.2021.2017925.
  • Mookherjee, S., A. A. Gadkari, D. M. Deo, and A. Goswami. 1992. Pyrometallurgical preconcentration technique for the recovery of copper, nickel and cobalt from copper converter slag. Mineral Processing and Extractive Metallurgy Review 9 (1–4):213–22. doi:10.1080/08827509208952706.
  • Nakahara, S., and S. Mahajan. 1980. The influence of solution pH on microstructure of electrodeposited cobalt. Journal of the Electrochemical Society 127 (2):283–88. doi:10.1149/1.2129656.
  • Nelson, A., W. Wang, G. P. Demopoulos, and G. Houlachi. 2000. The removal of cobalt from zinc electrolyte by cementation: A critical review. Mineral Processing and Extractive Metallurgy Review 20 (4–6):325–56. doi:10.1080/08827509908962481.
  • Nikoloski, A. N., and M. J. Nicol. 2007. Effect of cobalt ions on the performance of lead anodes used for the electrowinning of copper – A literature review. Mineral Processing and Extractive Metallurgy Review 29 (2):143–72. doi:10.1080/08827500701421870.
  • Nikoloski, A. N., and M. J. Nicol. 2009. Addition of cobalt to lead anodes used for oxygen evolution – A literature review. Mineral Processing and Extractive Metallurgy Review 31 (1):30–57. doi:10.1080/08827500903404872.
  • Pangarov, N., and R. Pangarova. 1978. Stress in electrodeposited metals, general thermodynamic Theory. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry 91 (2):173–88. doi:10.1016/S0022-0728(78)80098-9.
  • Patnaik, P., S. K. Padhy, B. C. Triphathy, I. N. Bhattacharya, and R. K. Paramguru. 2015. Electrodeposition of cobalt from aqueous sulphate solutions in the presence of tetra ethyl ammonium bromide. Transactions of Nonferrous Metals Society of China 25 (6):2047–53. doi:10.1016/S1003-6326(15)63814-6.
  • Pletcher, D., and F. C. Walsh. 1993. Industrial electrochemistry. 2nd ed. New York: Chapman and Hall. doi:10.1007/978-94-011-2154-5.
  • Pradhan, N., P. Singh, B. C. Triphathy, and S. C. Das. 2001. Electrowinning of cobalt from acidic sulphate solutions, effect of chloride ion. Minerals Engineering 14 (7):115–83. doi:10.1016/S0892-6875(01)00072-3.
  • Roberts, S., and G. Gunn. 2014. Cobalt. In Critical metals handbook, ed. G. Gunn, 122–49. Nottingham: John Wiley & Sons, Ltd. doi:10.1002/9781118755341.ch6.
  • Santos, J. S., R. Matos, F. Trivinho-Strixino, and E. C. Pereira. 2007. Effect of temperature on Co eLectrodeposition in the presence of boric acid. Electrochimica Acta 53 (2):644–49. doi:10.1016/j.electacta.2007.07.025.
  • Sharma, I. G., P. Alex, A. C. Bidaye, and A. K. Suri. 2005. Electrowinning of cobalt from sulphate solutions. Hydrometallurgy 80 (1–2):132–38. doi:10.1016/j.hydromet.2005.08.003.
  • Sole, K. C., J. Parker, P. M. Cole, and M. B. Mooiman. 2019. Flowsheet options for cobalt recovery in African copper–cobalt hydrometallurgy circuits. Mineral Processing and Extractive Metallurgy Review 40 (3):194–206. doi:10.1080/08827508.2018.1514301.
  • Srivastava, R. D., and H. Gesser. 1964. Impurities in electrodeposited nickel. Electrochimica Acta 9 (11):1405–10. doi:10.1016/0013-4686(64)85019-2.
  • Tran, T. T., H. S. Moon, and M. S. Lee. 2022a. Separation of cobalt, nickel, and copper from synthetic metallic alloy by selective dissolution with acid solutions containing oxidizing agent. Mineral Processing and Extractive Metallurgy Review 43 (3):313–25. doi:10.1080/08827508.2020.1858079.
  • Tran, T. T., H. S. Moon, and M. S. Lee. 2022b. Recovery of cobalt, nickel and copper compounds from UHT processed spent lithium-ion batteries by hydrometallurgical process. Mineral Processing and Extractive Metallurgy Review 43 (4):453–65. doi:10.1080/08827508.2021.1910508.
  • Triphaty, B. C., P. Singh, and D. M. Muir. 2001. Effect of manganese (II) and bOric acid on the electrowinning of cobalt from acidic sulfate solutions. Metallurgical and Materials Transactions B 32B:395–99. doi:10.1007/s11663-001-0023-9.
  • Tsurukawa, N., S. Prakash, and A. Manhart 2011. Social impacts of artisanal cobalt mining in Katanga. Öko-Institut e.V., Freiburg, Democratic Republic of Congo. Accessed March 15, 2022. https://www.oeko.de/oekodoc/1294/2011-419-en.pdf
  • USGS. 2022. Mineral commodity summaries. U.S. Geological Survey, Reston, Virginia, Washington, D.C., USA. Accessed March 15, 2022. https://pubs.usgs.gov/periodicals/mcs2022/mcs2022.pdf
  • Whisckol, M. 2022. What happens when millions of electric car batteries get old? Last Modified January 28. Accessed June 5, 2022. https://www.ocregister.com/2022/01/27/what-happens-when-millions-of-electric-car-batteries-get-old/
  • Zhu, T. 2000. Solvent extraction of cobalt and nickel – The chemistry and its application. Mineral Processing and Extractive Metallurgy Review 21 (1–5):1–24. doi:10.1080/08827500008914163.

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