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Journal of the Southern African Institute of Mining and Metallurgy

versión On-line ISSN 2411-9717
versión impresa ISSN 2225-6253

J. S. Afr. Inst. Min. Metall. vol.110 no.7 Johannesburg jul. 2010

 

JOURNAL PAPER

 

Dual energy X-ray transmission sorting of coal

 

 

L. von KetelhodtI; C. BergmannII

ICommodasUltrasort (Pty) Ltd, South Africa
IIMintek, South Africa

 

 


SYNOPSIS

Dual energy X-ray transmission (DE-XRT) sorting is a recent development in the range of sensor-based sorting technologies available today. DE-XRT is particularly suitable for dry coarse coal beneficiation in the size range -120 mm +12 mm. In this paper, we describe the technology and show the results of a number of test runs conducted on different types of coal from the USA and South Africa. The results have shown that DE-XRT is an effective technology not only for deshaling of coal and removing pyritic sulphur but also for separating coal and torbanite. The use of dry deshaling methods will be more important as water availability becomes a greater concern. DE-XRT is one such technology which will be incorporated in future dry coal processing plants.


 

 

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References

1. WEINSTEIN, R.S., ODER, R.R., and SNOBY, R.J. Combined Air Jig and Dry Magnetic Separator for Cleaning Coal, Twentieth Annual International Pittsburgh Coal Conference, Pittsburgh, PA. 2003.         [ Links ]

2. HONAKER, R.Q. Coarse Dry Coal Cleaning, Workshop on Coal Beneficiation and Utilization of Rejects: Initiatives, Policies and Best Practices, Ranchi, India. 2007.         [ Links ]

3. DE JONG, T.P.R. Dual Energy X-Ray Transmission Imaging for Concentration and Control of Solids, TU Delft-Department of Applied Earth Sciences-Section Processing of Raw Materials. 2002.         [ Links ]

4. JONG, T.P.R., DE HOUWELINGEN, J.A., and VAN KUILMAN, W. Automatic Sorting and Control in Solid Fuel Processing: Opportunities in European Perspective, Geologica Belgica, vol. 7, no. 3-4, 2004. pp. 325-333.         [ Links ]

5. WILLS, B.A. Mineral Processing Technology-An Introduction to the Practical Aspects of Ore Treatment and Mineral Recovery, 5th Edition, Pergamon Press: Camborne School of Mines, Cornwall, UK. 1992.         [ Links ]

6. SALTER, J.D. and WYATT, N.P.G. 1991 Sorting in the Minerals Industry: Past, Present and Future, Mineral Engineering, vol. 4, no. 7-11, 1991. Pergamon Press, Great Britain. pp. 779-796.         [ Links ]

7. WOTRUBA, H. Sensor Sorting Technology-is the Minerals Industry Missing a Chance?, XXIII International Mineral Processing Congress, Istanbul, Turkey, 2006. pp. 21-30.         [ Links ]

8. WEATHERWAX, T.W. Integrated Mining and Preconcentration Systems for Nickel Sulphide Ores, The University of British Columbia. 2007.         [ Links ]

9. HARBECK, H. and KROOG, H. New Developments in Sensor Based Sorting, Montan University Loeben, Austria. 2008.         [ Links ]

10. CHEESMAN, H. Deshaling of Coal by Dual Energy X-Ray Transmission Sorting, Mintek, Johannesburg, South Africa. 2007.         [ Links ]

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