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Journal of the Southern African Institute of Mining and Metallurgy

On-line version ISSN 2411-9717
Print version ISSN 2225-6253

J. S. Afr. Inst. Min. Metall. vol.110 n.12 Johannesburg Dec. 2010

 

TRANSACTION PAPER

 

Theoretical and practical aspects of Cr(VI) in the South African ferrochrome industry

 

 

J.P. BeukesI; N.F. DawsonII; P.G. van ZylI

IChemical Resource Beneficiation, North-West University, Potchefstroom Campus, Potchefstroom, South Africa
IIXstrata Alloys, Rustenburg, South Africa

 

 


SYNOPSIS

The production of ferrochrome alloy from chromium bearing chromite ores is conducted at high temperature under highly reducing conditions. However, albeit completely unintended, it is impossible to completely exclude oxygen from all high temperature process steps, with the corresponding possibility arising for the generation of small amounts of Cr(VI) species. Certain Cr(VI) species are regarded as a carcinogenic, with specifically airborne exposure to these Cr(VI) species being associated with cancer of the respiratory system. With approximately three-quarters of the world's viable chromite ore reserves located in South Africa, and annual ferrochrome production approaching almost half of total annual global output, aspects of Cr(VI) generation and control are of particular relevance and importance to the local industry, and naturally to the global industry at large. This paper seeks to examine theoretical and practical aspects associated with Cr(VI) generation (based largely on experience within the local South African industry, but considered to be generally encountered in the broader global industry context), together with mitigating measures that can be applied within the context of the production processes. From the discussions it is clear that significant improvements in various Cr(VI)-related aspects have been made by the South African ferrochrome industry. However, it is also evident that several areas of uncertainty still exist, which require further research in order to better quantify risks and enhance the efficacy of mitigating steps.

Keywords: Hexavalent chromium, Cr(VI), ferrochrome production, South Africa


 

 

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References

1. RAI, D., EARY, L.E., and ZACHARA, J.M. Environmental chemistry of chromium. The Science of the Total Environment, vol. 86, 1989, pp.15-23.         [ Links ]

2. YASSI, A. and NIEBOER, E. Carcinogenicity of chromium compounds. Chromium in the natural and human environment, Niagru, O.J. and Nieboer, E.(eds.). New York: Wiley, 1988, pp. 443-495.         [ Links ]

3. IARC (INTERNATIONAL AGENCY FOR RESEARCH ON CANCER), World Health Organization. IARC monographs on the evaluation of carcinogenic risks to humans,Chromium, Nickel and Welding, vol. 49, 1997.         [ Links ]

4. HININGER, I., BENERABA, R., OSMAN, M., FAURE, H., ROUSSEL, A.M., and ANDERSON R.A. Safety of trivalent chromium complexes: No evidence for DNA damage in human HaCaT keratinocytes. Free Radical Biology & Medicine, vol. 42, 2007, pp. 1759-1765.         [ Links ]

5. NRIAGU, J.O. Historical perspectives. Chromium in the natural and human environment, Niagru, O.J. and Nieboer, E. (eds.). New York: Wiley, 1988, pp. 1-19.         [ Links ]

6. COWEY, A. Mining and metallurgy in South Africa-A pictorial history. Mintek in association with Phase 4, Randburg, 1994.         [ Links ]

7. RIEKKOLA-VANHANEN, M. Finnish expert report on best available techniques in ferrochromium production, 1999.         [ Links ]

8. ICDA (INTERNATIONAL CHROMIUM DEVELOPMENT ASSOCIATION), Statistical bulletin 2008 edition, 2008.         [ Links ]

9. JONES, R. Pyrometallurgy in Southern Africa. 2008. http://www.pyrometallurgy.co.za/PuroSA/index.htm (accessed 14.10.2008).         [ Links ]

10. GEDIGA, J. AND RUSS, M. Life cycle inventory (LCI) update of primary ferrochrome production. ICDA (International Chromium Development Association), 2007.         [ Links ]

11. OUTOTEC, 2008. http://www.outotec.com/default_6764.aspx?epslanguage=EN (accessed 21.10.2008).         [ Links ]

12. BOTHA, W. Ferrochrome production through the SRC process at Xstrata, Lydenburg Works. Article in the Journal of the South African Institute of Mining and Metallurgy, vol. 103, no. 6, 2003.         [ Links ]

13. NAIKER, O. The development and advantages of Xstrata's Premus Process. Proceedings Ferroalloys 11th international congress (INFACON XI), New Delhi, India, 2007, pp. 112-119.         [ Links ]

14. CURR, T. History of DC arc furnace process development. Proceedings Mintek 75. A celebration of technology. Mintek, Randburg, South Africa. http://www.mintek.co.za/Mintek75/Proceedings (accessed 22.07.2009).         [ Links ]

15. DENTON, G.M., BENNIE, J.P.W., AND DE JONG, A. An improved DC-arc process for chromite smelting. Proceedings Ferroalloys 10th international congress (INFACON X). Cape Town, South Africa, 2004, pp. 60-67.         [ Links ]

16. GU, F. AND WILLS, B.A. Chromite mineralogy and processing. Minerals. Engineering, vol. 1, 1988, pp. 235-240.         [ Links ]

17. GLASTONBURY, R.I., VAN DER MERWE, W., BEUKES, J.P., VAN ZYL, P.G., LACHMANN, G. STEENKAMP, C.J.H., DAWSON, N.F., and STEWART, H.M. Cr(VI) generation during sample preparation of solid samples-A chromite ore case study. Water SA, vol. 36, 2010, pp.105-109.         [ Links ]

18. CRAMER, L.A., BASSON, J., and NELSON, L.R. The impact of platinum production from UG2 ore on ferrochrome production in South African. The Journal of the South African Institute of Mining and Metallurgy, October, vol. 104, no. 9, 2004, pp. 517-527.         [ Links ]

19. XIAO, Z. and LAPLANTE, A.R. Characterization and recovering of platinum group minerals-a review. Minerals Engineering, vol. 17, 2004, pp. 961-979.         [ Links ]

20. VISSER, H. Status of, and challenges in, ferrochrome production. Mine Metallurgical Managers' Association of South Africa Circular No. 1/2005, 2005, pp. 47-72.         [ Links ]

21. BEUKES, J.P. AND GUEST R.N. Cr(VI) generation during milling. Minerals Engineering, vol. 14, no. 4, 2001, pp. 423-426.         [ Links ]

22. ICDA (INTERNATIONAL CHROMIUM DEVELOPMENT ASSOCIATION), Health Safety and Environment Guidelines for Chromium 2007 edition, 2007.         [ Links ]

23. PROCTOR, D.M., OTANI, J.M., FINLEY, B.L., PAUSTENBACH, D.J., BLAND, J.A., SPEIZER, N., and SARGENT, E.V. Is hexavalent chromium carcinogenic via ingestion? A weight-of-evidence review. Journal of Toxicology and Environmental Health, Part A, vol. 65, 2002, pp. 701-746.         [ Links ]

24. BEUKES, J.P. Cr6+ and the pyrometallurgical industry. Proceedings Pyrometallurgy: Current issues and future trends. The South African Institute of Mining and Metallurgy, Mintek, Randburg, 2001.         [ Links ]

25. GERICKE, W.A. Environmental aspects of ferrochrome production. Proceedings Ferroalloys 7th international congress (INFACON XII). Trondheim, Norway, 1995, pp.131-140.         [ Links ]

 

Theoretical and practical aspects of Cr(VI) in the Southern African ferrochrome

26. ANTONY, M.P., TATHAVADKAR, V.D., CALVERT, C.C. AND JHA, A. The soda-ash roasting of chromite ore processing residue for the reclamation of chromium. Metallurgical and Materials Transactions B, vol. 32(B), 2001, pp. 987-995.         [ Links ]

27. MAINE, C.F., SMIT, J.P., and GIESEKKE, E.W. The solid stabilization of soluble wastes generated in the South African ferrochrome industry, Final report to the Water Research Commission, WRC Report no 942/1/05, 2005.         [ Links ]

28. NIEMELÄ, P., KROGERUS, H., and OIKARINEN, P. Formation, characterization and utilization of CO-gas formed in ferrochrome smelting. Proceedings Ferroalloys 10th international congress (INFACON X). Cape Town, South Africa, 2004, pp. 68-77.         [ Links ]

29. VENTER, C. and LIEBENBERG-ENSLIN, H. Air quality impact assessment study for the proposed Xstrata Lion Project, Steelpoort. Report No. APP/04/METAGO-2 Rev 2, October 2004.         [ Links ]

30. VISSER, J. and BARRET, W. An evaluation of process alternatives for the reclamation of ferrochrome slag. Proceedings Ferroalloys 6th international congress (INFACON VI). Cape Town, South Africa, 1992, pp. 107-112.         [ Links ]

31. Mintek. Mintek Bulletin, no. 65, September 1993.         [ Links ]

32. Mintek. Mintek Bulletin, no. 71, March 1994.         [ Links ]

33. Mintek. Mintek Bulletin, no. 95, May 1996.         [ Links ]

34. SHEN, H. and FROSSBERG, E. An overview of recovery of metals from slag. Waste Management, vol. 23, 2003, pp. 939-949.         [ Links ]

35. MASHANYARE, H.P. and GUEST, R.N. The recovery of ferrochrome from slag at Zimasco. Minerals Engineering, vol. 10, 1997, pp. 1253-1258.         [ Links ]

36. COETZER, G., GIESEKKE, E.W., and GUEST, R.N. Hexavalent chromium in the recovery of ferrochromium slag. Canadian Metallurgical Quarterly, vol. 36, no. 4, 1997, pp. 261-268.         [ Links ]

37. BALDWIN, D.A. and CHETTLE, M. The Ferro Alloy Producers Association study into the leaching of ferrochrome slag and its classification according to the minimum requirements. February 2001.         [ Links ]

38. DWAF (DEPARTMENT OF WATER AFFAIRS AND FORESTRY, REPUBLIC OF SOUTH AFRICA), Minimum requirements for the classification, handling and disposal of hazardous waste, 2nd edn. 1998a, CTP Book Printers, Cape Town.         [ Links ]

39. DWAF (DEPARTMENT OF WATER AFFAIRS AND FORESTRY, REPUBLIC OF SOUTH AFRICA), Minimum requirements for waste disposal to landfill, 2nd edn. 1998b, CTP Book Printers, Cape Town.         [ Links ]

40. DWAF (Department of Water Affairs and Forestry, Republic of South Africa), Minimum requirements for water monitoring at waste management facilities, 2nd edn. 1998c, CTP Book Printers, Cape Town.         [ Links ]

41. GERICKE, W.A. Environmental solutions to waste from ferrochrome production. Proceedings Ferroalloys 8th international congress (INFACON XIII). Beijing, China, 1998, pp. 51-58.         [ Links ]

42. LIND, B.B., FÄLLMAN, A.-M., and LARSSON, L.B. Environmental impact of ferrochrome in road construction. Waste Management, vol. 21, 2001, pp. 255-264.         [ Links ]

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