Hydrometallurgical application for treating a Nigerian chalcopyrite ore in chloride medium: Part I. Dissolution kinetics assessment

Alafara A. Baba , Kuranga I. Ayinla , Folahan A. Adekola , Rafiu B. Bale , Malay K. Ghosh , Abdul G. F. Alabi , Abdul R. Sheik , Ismael O. Folorunso

International Journal of Minerals, Metallurgy, and Materials ›› 2013, Vol. 20 ›› Issue (11) : 1021 -1028.

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International Journal of Minerals, Metallurgy, and Materials ›› 2013, Vol. 20 ›› Issue (11) : 1021 -1028. DOI: 10.1007/s12613-013-0829-x
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Hydrometallurgical application for treating a Nigerian chalcopyrite ore in chloride medium: Part I. Dissolution kinetics assessment

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Abstract

The dissolution kinetics of a Nigerian chalcopyrite ore in hydrochloric acid was studied in this article. Acid concentration, reaction temperature, and ore particle size were chosen as experimental parameters. The chemical and morphological studies of the ore before and after leaching at optimal conditions were carried out by X-ray diffraction (XRD) and scanning electron microscopy (SEM). It is revealed that increasing the acid concentration and system temperature and decreasing the ore particle size greatly enhances the dissolution rate. The dissolution kinetics was found to follow the shrinking core model for the diffusion control mechanism where the activation energy (E a) of 32.92 kJ·mol−1 was obtained for the process and supported by morphological changes at a higher dissolution of 91.33%.

Keywords

chalcopyrite / hydrometallurgy / leaching, hydrochloric acid / dissolution / ore treatment

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Alafara A. Baba, Kuranga I. Ayinla, Folahan A. Adekola, Rafiu B. Bale, Malay K. Ghosh, Abdul G. F. Alabi, Abdul R. Sheik, Ismael O. Folorunso. Hydrometallurgical application for treating a Nigerian chalcopyrite ore in chloride medium: Part I. Dissolution kinetics assessment. International Journal of Minerals, Metallurgy, and Materials, 2013, 20(11): 1021-1028 DOI:10.1007/s12613-013-0829-x

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References

[1]

Nesse WD. Introduction to Mineralogy, 2000, London, Oxford University Press, 1

[2]

van Schalkwayk RF, Eksteen JJ, Peterson J, Thyse EL, Akdogan G. An experimental evaluation of the leaching kinetics of PGM-containing Ni-Cu-Fe-S Peirce Smith converter matte, under atmospheric leach conditions. Miner. Eng., 2011, 24, 524.

[3]

McDonald RG, Muir DM. Pressure oxidation leaching of chalcopyrite: Part I. Comparison of high and low temperature reaction kinetics and products. Hydrometallurgy, 2007, 86(3–4): 191.

[4]

Orazulike DM. The Solid Mineral Resources of Nigeria: Maximizing Utilization for Industrial and Technological Growth, 2002

[5]

Liu W, Tang MT, Tang CB, He J, Yang SH, Yang JG. Dissolution kinetics of low grade complex copper ore in ammonia-ammonium chloride solution. Trans. Nonferrous Met. Soc. China, 2010, 20, 910.

[6]

Peacey J, Guo XJ, Robles E. Copper hydrometallurgy: current status, preliminary economics, future direction and positioning versus smelting. Trans. Nonferrous Met. Soc. China, 2004, 14(3): 560

[7]

Stevanović Z, Antonijević M, Jonović R, Avramović Lj, Marković R, Bugarin M, Trujić V. Leach-SX-EW copper revalorization from overburden of abandoned copper mine Cerovo, Eastern Serbia. J. Min. Metall. Sect. B, 2009, 45(1): 45.

[8]

Aydogan S, Aras A, Canbazoglu M. Dissolution kinetics of sphalerite in acidic ferric chloride leaching. Chem. Eng. J., 2005, 114(1–3): 67.

[9]

Baba AA, Adekola FA. Hydrometallurgical processing of a Nigerian sphalerite in hydrochloric acid: characterization and dissolution kinetics. Hydrometallurgy, 2010, 101(1–2): 69.

[10]

Uçar G. Kinetics of sphalerite dissolution by sodium chlorate in hydrochloric acid. Hydrometallurgy, 2009, 95(1–2): 39.

[11]

Flett DS. Chloride hydrometallurgy for complex sulphides: a review. CIM Bull, 2002, 95, 95

[12]

Dutrizac JE. The leaching of sulphide minerals in chloride media. Hydrometallurgy, 1992, 29(1–3): 1.

[13]

Baba AA, Adekola FA. A study of dissolution kinetics of a Nigerian galena ore in hydrochloric acid. J. Saudi Chem. Soc., 2012, 16(4): 377.

[14]

Ayinla KI. Dissolution Kinetics and Solvent Extraction of Copper from Chalcopyrite Ore in Acidic Media, 2012, Ilorin, Nigeria, Department of Chemistry, University of Ilorin, 165

[15]

Córdoba EM, Muñoz JA, Blázquez ML, González F, Ballester A. Leaching of chalcopyrite with ferric ion: Part I. General aspects. Hydrometallurgy, 2008, 93(3–4): 81.

[16]

Adebayo AO, Ipinmoroti KO, Ajayi OO. Dissolution kinetics of chalcopyrite with hydrogen peroxide in sulphuric acid medium. Chem. Biochem. Eng. Q., 2003, 17(3): 213

[17]

Olubambi PA, Borode JO, Ndlovu S. Sulphuric acid leaching of zinc and copper from Nigerian complex sulphide ore in the presence of hydrogen peroxide. J. S. Afr. Inst. Min. Metall., 2006, 106, 765

[18]

Schwetman U, Cornell RM. Iron Oxides in the Laboratory: Preparation and Characterization, 1991, Cambridge, VCH Weinhein, 1

[19]

Kimball BE, Rimstidt JD, Brantley SL. Chalcopyrite dissolution rate laws. Appl. Geochem., 2010, 25(7): 972.

[20]

Senanayake G. A review of chloride assisted copper sulfide leaching by oxygenated sulfuric acid and mechanistic considerations. Hydrometallurgy, 2009, 98(1–2): 21.

[21]

Olanipekun E. A kinetic study of the leaching of a Nigerian ilmenite ore by hydrochloric acid. Hydrometallurgy, 1999, 53(1): 1.

[22]

Koleini SMJ, Jafarian M, Abdollahy M, Aghazandeh V. Galvanic leaching of chalcopyrite in atmospheric pressure and sulfate media: kinetic and surface studies. Ind. Eng. Chem. Res., 2010, 49(13): 5977.

[23]

Levenspiel O. Chemical Reaction Engineering, 1972, New York, Wiley, 361

[24]

Hofirek Z, Kerfoot DGE. The chemistry of the nickelcopper matte leach and its application to process control and optimisation. Hydrometallurgy, 1992, 29(1–3): 357.

[25]

Yévenes LDLV. The Kinetics of the Dissolution of Chalcopyrite in Chloride Media, 2009, Australia, Murdoch University, 318

[26]

Acero P, Cama J, Ayora C, Asta MP. Chalcopyrite dissolution rate law from pH 1 to 3. Geol. Acta, 2009, 7, 389.

[27]

Devi NB, Madhuchhanda M, Rao KS, Rath PC, Paramguru RK. Oxidation of chalcopyrite in the presence of manganese dioxide in hydrochloric acid medium. Hydrometallurgy, 2000, 57(1): 57.

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