Electrostatic Beneficiation of Coal Fly Ash Utilizing Triboelectric Charging with Subsequent Electrostatic Separation

  • Lee, Jae-Keun (School of Mechanical Engineering, Pusan National University) ;
  • Kim, Seong-Chan (School of Mechanical Engineering, Pusan National University)
  • Published : 2001.06.01

Abstract

A triboelectrostatic separation system for removing unburned carbon from coal fly ash is designed and evaluated. Fly ash from a coal-fired power plant is used as an accepted additive in concrete where it adds strength, sulfate resistance and reduced cost, provided acceptable levels of unburned carbon are maintained. Unfortunately, unburned carbon in coal fly ash absorbs some of other additives and reduces the concrete strength. This paper describes to investigate dry triboelectrostatic process to separate unburned carbon from coal fly ash and utilize it into economically valuable products. The laboratory-scale triboelectrostatic separation system consists of a particle feeding system, a tribocharger, a separation chamber, and collection systems. Particles of unburned carbon and fly ash can be imparted positive and negative surface charges, respectively, with a copper tribocharger due to differences in the work function values of the particles and the tribocharger, and can be separated by passing them through an external electric field. Results showed that fly ash recovery was strongly dependent on the electric field strength and the particle size. 70wt% of fly ash containing 6.5wt% of carbon contents could be recovered at carbon contents below 3%. The triboelectrostatic separation system showed a potential to be an effective method for removing unburned carbon from coal fly ash.

Keywords

References

  1. ASTM Standard C311-98b, 1998, Standard Test Methods for Sampling and Testing Fly Ash or Natural Pozzolans for Use as a Mineral Admixture in Portland-Cement Concrete
  2. ASTM Standard C618-99, 1999, Standard Specification for Coal Fly Ash and Raw or Calcined Natural Pozzolans for Use as a Mineral Admixture in Concrete
  3. Ban, H., Schaefer, J. L., and Stencel, J. M., 1993, 'Size and Velocity Effects on Coal Particle Triboelectrification and Separation Efficiency,' Proceedings of 10th Annual International Pittsburgh Conference, University of Pittsburgh, Pittsburgh, pp. 138 - 143
  4. Finseth, D., Newby, T., and Elstrodt, R., 1992, 'Triboelectrostatic Beneficia-tion of Fine Coal,' Proceeding of the 9th Korea- U. S. A Joint Workshop on Coal Utilization Technology, pp. 221-230
  5. Fomenko, V.S., 1972, Emission Properties of Materials, NTIS-JPRS-56579, U. S. Department of Commerce
  6. Fraas, F., 1962, Electrostatic Separation of Granular Materials, Bulletin 603, Bureau of Mines, United States Department of the Interior
  7. Gupta, R., 1990, Dry Electrostatic Beneficiation of Illinois Coal and Eastern Oil Shales, Ph. D. Dissertation, Illinois Institute of Technology
  8. Gupta, R., Gidaspow, D., and Wasan, D. T., 1993, U Electrostatic Separation of Powder Mixtures Based on the Work Functions of Its Constituents,' Powder Technology, Vol. 75, pp. 79-87 https://doi.org/10.1016/0032-5910(93)80027-8
  9. Kelly, E.G., and Spottiswood, D.J., 1989, 'The Theory of Electrostatic Separations: A Review Part II. Particle Charging,' Minerals Engineering. Vol. 2, pp. 193-205 https://doi.org/10.1016/0892-6875(89)90040-X
  10. Kim, N.H., Lee, Y.P., Yoon, Y.S., and Jung, J. S., 1996, 'A Study on the Pressure Loss, Heat Transfer Enhancement and Fouling Control in a Vertical Particulate Flow,' KSME International, Vol. 10, No.4, pp. 450-457 (in Korea)
  11. Lee, J. K., Kim, S. C., Kim, D. H., Lee, J. E., and Ku, J. H., 1999, 'Development of Centrifugal and Triboelectrostatic Separation System for the Removal of Unburned Carbon from Fly Ash,' Project No. 96C-CC02-P-05, R&D Management Center for Energy and Resources
  12. Malhotra, V.M., and Ramezanianpour, A.A., 1994, Fly Ash in Concrete. Minister of Supply and Services
  13. Mukherjee, A., 1987, Characterization and Separation of Charged Particles, Ph. D. Dissertation, Illinois Institute of Technology