Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中国有色金属学报(英文版)

Transactions of Nonferrous Metals Society of China

Vol. 32    No. 4    April 2022

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Optimization of process parameters and kinetic modelling for leaching of copper from oxidized copper ore in nitric acid solutions
Mehmet Kayra TANAYDIN1,2, Zümra Bak?c? TANAYDIN2,3, Nizamettin DEMIRKIRAN4

1. Department of Chemistry and Chemical Processes, Munzur University, Tunceli Vocation School, 62000, Tunceli, Turkey;
2. Rare Earth Elements Application and Research Center, Munzur University, 62000, Tunceli, Turkey;
3. Department of Gastronomy and Culinary Arts, Faculty of Fine Arts, Munzur University, 62000, Tunceli, Turkey;
4. Department of Chemical Engineering, Faculty of Engineering, Inonu University, 44280, Malatya, Turkey

Abstract:The leaching behavior of Tunceli malachite mineral was investigated in nitric acid solutions by two steps to evaluate the effect of various experimental parameters. In the first step, the optimal conditions for the leaching process were determined, while in the second step, a kinetic evaluation for the process was performed. In the optimization experiments, the concentration of nitric acid, temperature, stirring speed, and solid-to-liquid ratio were selected as the independent variables, and the central composite design method (CCD) was applied to the experimental data. At the end of the experiments, the optimal values for the concentration of nitric acid, temperature, solid-to-liquid ratio and stirring speed were determined to be 0.5 mol/L, 50 °C, 0.004 g/mL and 500 r/min, respectively. Under the optimal conditions, the leaching rate was found to be 99% for 120 min of reaction time. In the kinetic evaluation tests, the effects of the concentration of nitric acid, temperature, stirring speed, solid-to-liquid ratio and particle size on the leaching rate of copper from malachite were investigated. In these tests, it was determined that the leaching rate increased with the increase in the temperature, acid concentration and stirring speed, and with the decrease in the particle size and solid-to-liquid ratio. In consequence of the kinetic analysis, it was observed that the leaching kinetics followed the mixed kinetic model, and a mathematical model for the leaching process was introduced. The activation energy for this process was calculated to be 36.23 kJ/mol.

 

Key words: leaching; copper; recovery; central composite design; shrinking core model

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

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