OXIDATIVE AMMONIA LEACHING OF SPHALERITE CONCENTRATE
Yıl 2005,
Cilt: 20 Sayı: 2, 55 - 62, 01.06.2005
Salih Aydoğan
Ali Aras
Mehmet Canbazoğlu
Öz
This paper presents a study of kinetics of leaching of sphalerite concentrate in ammoniasolutions. The effects of ammonia concentration, oxygen partial pressure, reaction temperature andparticle size on the leaching rate were investigated. The shrinking core model was applied to the resultsobtained from these experiments. Reaction on order with respect to PO2 (1-10 atm.) and NH3 concentration(1.05-5.20 M) were 0.22 and 0.63 and the activation energy was determined to be 43.59 kj/mol in thetemperature range of 90-130 °C. In addition, the apparent rate constant is in inverse relationship with themean initial particle radius. The results of this study showed that the leaching of sphalerite was areaction controlled process.
Kaynakça
- Ablanov, A.D., Kabanova, L.M., Tkachenko, O.B. and Ermilov, V.V., 1960, Tr. Inst. Met. Obogashch. Akad. Nauk. Kazakh. S.S.R., 90–104.
- Akçıl, A. and Çiftçi, H., 2002, A study of the selective leaching of complex sulphides from the Eastern Black Sea Region; Turkey, Miner. Eng., 15, 457–459.
- Aras, A., Aydogan, S., Özkan, A. and Canbazoglu, M., 2003, Determination of leaching conditions of sphalerite concentrate in acidic ferric chloride solution; 18th Int. Mining Congress & Exhibition of Turkey-IMCET, 495-500.
- Babu, M.N., Sahu, K.K. and Pandey, B.D., 2002, Zinc recovery from sphalerite concentrate by direct oxidative leaching with ammonium, sodium and potassium persulphates; Hydrometallurgy, 64, 119–129.
- Bobeck, G.E. and Su, H., 1985, The kinetics of dissolution of sphalerite in ferric chloride solution, Metall. Trans., 16, B, 413-424.
- Canbazoğlu, M. and Özkol, S., 1980, Leaching of Cayeli complex sulphide ore by HCl + MgCl2 solution: recovery of Pb, Zn and CuFeS2 concentrates, Complex Sulphide Ores Conference, Rome, Italy, 7- 11.
- Çopur, M., 2001, Solubility of ZnS concentrate containing pyrite and chalcopyrite in HNO3 solutions, Chem. Biochem. Eng. Q., 15, 4, 181-184.
- Crundwell, F.K., 1987, Refractory behaviour of two sphalerite concentrates to dissolution in ferric sulphate solutions, Hydrometallurgy, 19, 253–258.
- Demopoulos, G.P. and Baldwin, S.A., 1999, Stoichiometric and kinetic aspects on the pressure leaching of zinc concentrates, In:Mishra, B.(Ed); TMS Annual Meeting, San Diego, 567-583.
- Dutrizac, J.E. and MacDonald, R.J.C., 1974, Ferric ion as a leaching medium, Minerals Sci. Eng., 6, 2, 59-
- Dutrizac, J.E. and MacDonald, R.J.C., 1978, The dissolution of sphalerite in ferric chloride solutions, Metall. Trans., 9, B, 543-551.
- Evans, D.J.I. and Mackiw, S., 1964, Treatment of copper-zinc concentrates by pressure hydrometallurgy, Can. Min. Metall. Bull., 57, 857-866.
- Ghosh, M.K., Anand, S., Das, R.P., 1989, Effect of dissolved impurities during ammonia leaching of pure zinc sulphide, Hydrometallurgy, 21, 207-221.
- Ghosh, M.K., Das, R.P. and Biswas, A.K., 2002, Oxidative ammonia leaching of sphalerite 1: Noncatalytic kinetics, Int. J. Miner. Process., 66, 241-254.
- Habashi, F., 1980, Principles of Extractive Metallurgy; 2nd Ed., Gordon and Breach Science Publ., New York.
- Habashi, F., 1999, Kinetics of Metallurgical Processes; 2nd Ed. Metallurgie Extractive Quebec, Quebec, Canada.
- Levenspiel, O., 1972, Chemical Reaction Engineering; 2nd Ed., Wiley, New York, NY. Majima, H. and Peters, E., 1966, Aqueous oxidation at elevated temperatures, Trans. Metall. Soc. AIME, 236, 1409-1413.
- Majima, H., Awakura, Y. and Misaki, N., 1981, A kinetic study on nonoxidative dissolution of sphalerite in aqueous hydrochloric acid solutions, Metall. Trans., 12, B, 645-649.
- Mizoguchi, T. and Habashi, F., 1981, The aqueous oxidation of complex sulfide concentrates in hydrochloric acid, Int. J. Miner. Process., 8, 177-193.
- Nelen, I.M. and Sobol, S.I., 1959, Kinetics of the oxidation of sphalerite under conditions of ammonia leaching under pressure of sulphide concentrate, Sb. Tr., Gos. Nauchno-Issled. Inst. Tsvetn. Met. 15, 447- 475.
- Parker, E.G., 1961, Oxidative pressure leaching of zinc concentrate, CIM Bull., 74, 5, 145-150.
- Perez, I.P. and Dutrizac, J.E, 1991, The effect of the iron content of sphalerite on its rate of dissolution in ferric sulphate and ferric chloride media, Hydrometallurgy, 26, 211–232.
- Rao, K.S., Paramguru, R.K., Das, R.P. and Ray, H.S., 1992, The role of galvanic interaction during ammonia leaching of multimetal sulphides, Miner Proces. Extr. M., 11, 21-37.
- Rao, K.S. and Ray, H.S., 1998, A new look at characterisation and oxidative ammonia leaching behaviour of multimetal sulphides, Miner. Eng., 11, 11, 1011-1024.
- Stanzyk, M.H. and Rampacek, C., 1966, Oxidation leaching of copper sulfides in ammoniacal pulps at elevated temperature and pressures, US. Bur. Mines, R.I. No. 6808.
- Tozawa, K., Umetsu, Y. and Sato, K., 1976, Extractive Metallurgy of Copper-Vol II. Edt. Yannopoulos, J.C. and Agarwal, J.C., Met. Soc. AIME, 705-721.
- Umetsu, Y., Tozawa, K. and Sasaki, K.J., 1967, Ammonia pressure leaching of complex copper/zinc sulphide concentrate, Nippon Kagaku Kaishi, 83, 8, 1016-1022.
- Warren, G.W., Kim, S.H. and Henein, H., 1987, The effect of chloride ion on the ferric chloride leaching of galena concentrate, Metall. Trans,. 18, B, 59-69.
Sfalerit Konsantresinin Oksitleyici Amonyak Liçi
Yıl 2005,
Cilt: 20 Sayı: 2, 55 - 62, 01.06.2005
Salih Aydoğan
Ali Aras
Mehmet Canbazoğlu
Öz
Bu makalede, sfalerit konsantresinin amonyak çözeltisinde liç kinetiğine ait bir çalışmasunulmuştur. Amonyak konsantrasyonunun, oksijen kısmi basıncının, reaksiyon sıcaklığının ve taneboyutunun liç hızına etkisi araştırılmıştır. Deneylerden elde edilen sonuçlara küçülen partikül modeliuygulanmıştır. Oksijen kısmi basıncına PO2 (1-10 atm) ve NH3 konsantrasyonuna (1.05-5.20 M) görereaksiyon dereceleri sırasıyla 0.22 ve 0.63 olarak bulunmuştur. 90-130 °C aralığında aktivasyonenerjisinin 43.59 kj/mol olduğu belirlenmiştir. Görünür hız sabitinin ortalama başlangıç tane yarıçapı ileters ilişkili olduğu görülmüştür. Bu çalışmadan elde edilen sonuçlar sfalerit liçinin reaksiyon kontrollübir proses olduğunu göstermiştir.
Kaynakça
- Ablanov, A.D., Kabanova, L.M., Tkachenko, O.B. and Ermilov, V.V., 1960, Tr. Inst. Met. Obogashch. Akad. Nauk. Kazakh. S.S.R., 90–104.
- Akçıl, A. and Çiftçi, H., 2002, A study of the selective leaching of complex sulphides from the Eastern Black Sea Region; Turkey, Miner. Eng., 15, 457–459.
- Aras, A., Aydogan, S., Özkan, A. and Canbazoglu, M., 2003, Determination of leaching conditions of sphalerite concentrate in acidic ferric chloride solution; 18th Int. Mining Congress & Exhibition of Turkey-IMCET, 495-500.
- Babu, M.N., Sahu, K.K. and Pandey, B.D., 2002, Zinc recovery from sphalerite concentrate by direct oxidative leaching with ammonium, sodium and potassium persulphates; Hydrometallurgy, 64, 119–129.
- Bobeck, G.E. and Su, H., 1985, The kinetics of dissolution of sphalerite in ferric chloride solution, Metall. Trans., 16, B, 413-424.
- Canbazoğlu, M. and Özkol, S., 1980, Leaching of Cayeli complex sulphide ore by HCl + MgCl2 solution: recovery of Pb, Zn and CuFeS2 concentrates, Complex Sulphide Ores Conference, Rome, Italy, 7- 11.
- Çopur, M., 2001, Solubility of ZnS concentrate containing pyrite and chalcopyrite in HNO3 solutions, Chem. Biochem. Eng. Q., 15, 4, 181-184.
- Crundwell, F.K., 1987, Refractory behaviour of two sphalerite concentrates to dissolution in ferric sulphate solutions, Hydrometallurgy, 19, 253–258.
- Demopoulos, G.P. and Baldwin, S.A., 1999, Stoichiometric and kinetic aspects on the pressure leaching of zinc concentrates, In:Mishra, B.(Ed); TMS Annual Meeting, San Diego, 567-583.
- Dutrizac, J.E. and MacDonald, R.J.C., 1974, Ferric ion as a leaching medium, Minerals Sci. Eng., 6, 2, 59-
- Dutrizac, J.E. and MacDonald, R.J.C., 1978, The dissolution of sphalerite in ferric chloride solutions, Metall. Trans., 9, B, 543-551.
- Evans, D.J.I. and Mackiw, S., 1964, Treatment of copper-zinc concentrates by pressure hydrometallurgy, Can. Min. Metall. Bull., 57, 857-866.
- Ghosh, M.K., Anand, S., Das, R.P., 1989, Effect of dissolved impurities during ammonia leaching of pure zinc sulphide, Hydrometallurgy, 21, 207-221.
- Ghosh, M.K., Das, R.P. and Biswas, A.K., 2002, Oxidative ammonia leaching of sphalerite 1: Noncatalytic kinetics, Int. J. Miner. Process., 66, 241-254.
- Habashi, F., 1980, Principles of Extractive Metallurgy; 2nd Ed., Gordon and Breach Science Publ., New York.
- Habashi, F., 1999, Kinetics of Metallurgical Processes; 2nd Ed. Metallurgie Extractive Quebec, Quebec, Canada.
- Levenspiel, O., 1972, Chemical Reaction Engineering; 2nd Ed., Wiley, New York, NY. Majima, H. and Peters, E., 1966, Aqueous oxidation at elevated temperatures, Trans. Metall. Soc. AIME, 236, 1409-1413.
- Majima, H., Awakura, Y. and Misaki, N., 1981, A kinetic study on nonoxidative dissolution of sphalerite in aqueous hydrochloric acid solutions, Metall. Trans., 12, B, 645-649.
- Mizoguchi, T. and Habashi, F., 1981, The aqueous oxidation of complex sulfide concentrates in hydrochloric acid, Int. J. Miner. Process., 8, 177-193.
- Nelen, I.M. and Sobol, S.I., 1959, Kinetics of the oxidation of sphalerite under conditions of ammonia leaching under pressure of sulphide concentrate, Sb. Tr., Gos. Nauchno-Issled. Inst. Tsvetn. Met. 15, 447- 475.
- Parker, E.G., 1961, Oxidative pressure leaching of zinc concentrate, CIM Bull., 74, 5, 145-150.
- Perez, I.P. and Dutrizac, J.E, 1991, The effect of the iron content of sphalerite on its rate of dissolution in ferric sulphate and ferric chloride media, Hydrometallurgy, 26, 211–232.
- Rao, K.S., Paramguru, R.K., Das, R.P. and Ray, H.S., 1992, The role of galvanic interaction during ammonia leaching of multimetal sulphides, Miner Proces. Extr. M., 11, 21-37.
- Rao, K.S. and Ray, H.S., 1998, A new look at characterisation and oxidative ammonia leaching behaviour of multimetal sulphides, Miner. Eng., 11, 11, 1011-1024.
- Stanzyk, M.H. and Rampacek, C., 1966, Oxidation leaching of copper sulfides in ammoniacal pulps at elevated temperature and pressures, US. Bur. Mines, R.I. No. 6808.
- Tozawa, K., Umetsu, Y. and Sato, K., 1976, Extractive Metallurgy of Copper-Vol II. Edt. Yannopoulos, J.C. and Agarwal, J.C., Met. Soc. AIME, 705-721.
- Umetsu, Y., Tozawa, K. and Sasaki, K.J., 1967, Ammonia pressure leaching of complex copper/zinc sulphide concentrate, Nippon Kagaku Kaishi, 83, 8, 1016-1022.
- Warren, G.W., Kim, S.H. and Henein, H., 1987, The effect of chloride ion on the ferric chloride leaching of galena concentrate, Metall. Trans,. 18, B, 59-69.