4.7 Article

Rare earth element recycling from waste nickel-metal hydride batteries

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 279, 期 -, 页码 384-388

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2014.07.027

关键词

Rare earth element; Hydrochloric acid; Oxalic acid; Waste nickel-metal hydride battery; Recycling

资金

  1. Doctor Initial Funding Project of Jiangxi University of Science and Technology of China [3401223165]
  2. College Project of Jiangxi University of Science and Technology of China [3200826334]

向作者/读者索取更多资源

With an increase in number of waste nickel-metal hydride batteries, and because of the importance of rare earth elements, the recycling of rare earth elements is becoming increasingly important. In this paper, we investigate the effects of temperature, hydrochloric acid concentration, and leaching time to optimize leaching conditions and determine leach kinetics. The results indicate that an increase in temperature, hydrochloric acid concentration, and leaching time enhance the leaching rate of rare earth elements. A maximum rare earth elements recovery of 95.16% was achieved at optimal leaching conditions of 70 C, solid/liquid ratio of 1:10,20% hydrochloric acid concentration, -74 mu m particle size, and 100 min leaching time. The experimental data were best fitted by a chemical reaction-controlled model. The activation energy was 43.98 kJ/mol and the reaction order for hydrochloric acid concentration was 0.64. The kinetic equation for the leaching process was found to be: 1 - (1 - x)(1/3) = A/rho r(0) [HCl](0.64) exp (-439, 800/8.314T) t. After leaching and filtration, by adding saturated oxalic solution to the filtrate, rare earth element oxalates were obtained. After removing impurities by adding ammonia, filtering, washing with dilute hydrochloric acid, and calcining at 810 degrees C, a final product of 99% pure rare earth oxides was obtained. (C) 2014 Elsevier B.V. All rights reserved.

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