4.6 Article

II. Electrodeposition/Removal of Nickel in a Spouted Electrochemical Reactor

Journal

INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH
Volume 50, Issue 16, Pages 9525-9531

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ie200669b

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Funding

  1. National Institute of Environmental Health Sciences (NIEHS), NIH [5 P42 ES013660]

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An investigation is presented of nickel electrodeposition from acidic solutions in a cylindrical spouted electrochemical reactor. The effects of solution pH, temperature, and applied current on nickel removal/recovery rate, current efficiency, and corrosion rate of deposited nickel on the cathodic particles were explored under galvanostatic operation. Nitrogen sparging was used to decrease the dissolved oxygen concentration in the electrolyte in order to reduce the nickel corrosion rate, thereby increasing the nickel electrowinning rate and current efficiency. A numerical model of electrodeposition, including corrosion and mass transfer in the particulate cathode moving bed, is presented that describes the behavior of the experimental net nickel electrodeposition data quite well.

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