Characterization and Pyrometallurgical Removal of Arsenic from Copper Concentrate Roasting Dust
- 1 Metallurgy Engineering Department, Technical University Federico Santa María, Valparaíso, Chile
- 2 Metallurgy Engineering Department, Technical University Federico Santa María, Valparaíso, Chile
- 3 CODELCO, Ministro Hales Division, Antofagasta, Chile
- 4 CODELCO, Ministro Hales Division, Antofagasta, Chile
Abstract
This paper describes the experimental results of removing arsenic from the dust collected in electrostatic precipitators of a fluidized bed roasting furnace (RP dust). The fluidized bed roasting process generates 600 kilotons of copper concentrate per year with 3 - 6 wt% of concentration of arsenic, producing a roasted product with a low content of arsenic below 0.3 wt%. The process generates 27 kilotons of RP dust per year with a concentration of arsenic of the order of 5 wt% and copper concentration of around 20 wt%. Subsequently, the dust collected in the electrostatic precipitators is treated by hydrometallurgical methods allowing the recovery of copper, and the disposition of arsenic as scorodite. This work proposes to use a pyrometallurgy process to the volatilization of arsenic from RP dust. The obtained material can be recirculated in copper smelting furnaces allowing the recovery of valuable metals. The set of experiments carried out in the roasting of the mixture of copper concentrate/RP dust and sulfur/RP dust used different ratios of mixtures, temperatures and roasting times. By different techniques, the characterization of the RP dust determined its size distribution, morphology, and chemical and mineralogical composition. RP dust is a composite material of small particles (<5 μm) in 50 μm agglomerates, mostly amorphous, with a complex chemical composition of sulfoxides. The results of the roasting experiments indicated that for a 75/25 weight ratio of the mixture of the copper concentrate/PR dust under 700℃, 15 minutes of roasting time with injection of air, the volatilization of arsenic reached 96% by weight. The arsenic concentration after the roasting process is less than 0.3% by weight. For a 5/95 mixture of sulfur/RP dust, at 650℃, the volatilization of arsenic reached a promissory result of 67%. Even that this study was carried out for a particular operation, the results have the potential to be extended to dust produced in the roasting of concentrates of nickel, lead-zinc, and gold.
- Twidwell, L. (2019) Treatment of Arsenic-Bearing Minerals and Fixation of Recovered Arsenic Products: A Review. Society for Mining, Metallurgy & Exploration, Englewood.
- Outotec Roasting Solutions (2021). https://www.outotec.com/globalassets/products/roasting/ote_outotec_roasting_solutions_eng_web.pdf
- Charitos, A., Guntner, J., Buchmann, M., Hammerschmidt, R.G., Kunch, M., Grobel, M. and Mattich, C. (2018) Method for Partial Roasting of Copper and/or Gold Bearing Concentrates. Chinese Patent No. CN107810282(A).
- Nazari, A.M., Radzinski, R. and Ghahreman, A. (2017) Review of Arsenic Metallurgy: Treatment of Arsenical Minerals and the Immobilization of Arsenic. Hydrometallurgy, 174, 258-281. https://doi.org/10.1016/j.hydromet.2016.10.011
- Robins, R.G. and Jayaweera, L.D. (1992) Arsenic in Gold Processing. Mineral Processing and Extractive Metallurgy Review, 9, 255-271. https://doi.org/10.1080/08827509208952710
- Caballero, D.C., Etcheverry, C.J. and Javier, O.B. (2016) Evolución Diseño y Operación Tostador de Lecho Fluidizado-DMH-CODELCO. XIV Congreso Internacional-Expomin, Santiago de Chile, 25-29 April 2016.
- Rebodello, C. and Parra, N. (2019) Trends and Treatment of Arsenic in Copper Mining; Copper 2019. EcoMetales Limited, Región Metropolitana.
- Parker, K.R. (1997) Applied Electrostatic Precipitation. First Edition, Springer, Dordrecht, 375-376. https://doi.org/10.1007/978-94-009-1553-4_1
- Alguacil, F.J., Magne, L., Navarro, P. and Simpson, J. (1996) Tratamiento hidrometalúrgico de los polvos de fundición de cobre. Desarsenificaciòn de las disoluciones de lixiviación. Revista de Metalurgia (Madrid), 32, 400-407. https://doi.org/10.3989/revmetalm.1996.v32.i6.888
- Rios, G., Ruiz, I., Cruells, M. and Roca, A. (2019) Leaching of Copper Flush Furnace Dust with Week Acid Bleed and Arsenic Precipitations as Scorodite and Arsenical Jarosite. Proceedings of the COPPER CU 2019, Vancouver, 18-21 August 2019, Proceeding 591168.
- Adham, K., Lee, C., Francey, S. and Hussein, A. (2019) A Comparison of Roasting Technologies for Arsenic Removal from Copper Concentrates. Proceedings of the COPPER CU 2019, Vancouver, 18-21 August 2019, Proceeding 538079.
- Walker, S.R., Jamieson, H.E., Lanzirotti, A., Hall, G.E.M. and Peterson, R.C. (2015) The Effect of Ore Roasting on Arsenic Oxidation State and Solid Phase Speciation in Gold Mine Tailing. Geochemistry: Exploration, Environment, Analysis, 15, 273-291. https://doi.org/10.1144/geochem2013-238