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Modifying effect of electron beam irradiation on magnetic property of iron-bearing minerals

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The effect of electron beam irradiation on magnetic property of iron bearing minerals was investigated by susceptibility measurements. The results show that the magnetic susceptibility of iron bearing sulfide minerals can be enhanced remarkably by strong beam current irradiation, while the magnetic susceptibility of oxidized iron minerals keeps unchanged and even is slightly reduced. The magnetic susceptibility of arsenopyrite can reach the ferromagnetic level. The particle size of irradiated minerals makes notable effects on magnetic susceptibility. The magnetic susceptibility of irradiated minerals is enhanced greatly with reduction of particle size, and the irradiation dose corresponding to the maximum magnetic susceptibility is decreased simultaneously. Exposure of pyrite to small beam current electron irradiation can only enhance its magnetic susceptibility from 4 to 5-fold. Enhancement of magnetic property by radiation induced defects and excitation in minerals is limited. Strong beam current electron irradiation provides a novel approach to enlarge the magnetic property differences between iron bearing minerals.
Rocznik
Strony
79--86
Opis fizyczny
Bibliogr. 17 poz., rys.
Twórcy
autor
  • College of Mining Engineering, Taiyuan University of Technology, Taiyuan 030024, China
autor
  • School of Civil and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China
Bibliografia
  • 1. AUSLENDER V.L., BOCHKAREV I.G., BOLDYREV V.V., 1997, Electron Beam Induced Diffusion Controled Reaction in Solids. Solid State Ionic, 101–103.
  • 2. AUSLENDER V.L., BOCHKAREV I.G., VORONIN A.P., 1999, Radiation-thermal Process in Solid Inorganic Systems. Radtech-Euroasia, (2).
  • 3.GRIBKOV O.S., VORONIN, A.P. AND AUSLENDER,V. L., 1995, The use of electron accelerators in the processes of high temperature solid phase synthesis, Radiation Physics and Chemistry, 46(4–6).
  • 4. BOCHKAREV G.R., CHANTURIYA V.A., VIGDERGAUS V.E. et al., 1997, Prospects of Electron Accelerators Used for Realizing Effective Low-cost Technologies of Mineral Processing, [in:] H. Hoberg and H.V. Blottnitz eds., Proceedings of the XX IMPC. Aachen, Germany.
  • 5. MILKHILOV A.M., ROSTOVTSEV V.I., 1998, Mechanism of the weakening and fracture of mineral by an electron beam, Journal of Mining Science, 34(2), 180–184.
  • 6. KOVALYOV A.T., 1999, Possibility of Applying Radiative Electrization for Electrical Separation of Pulverized Mineral Mixture, Journal of Mining Science, 35(2).
  • 7. CHANTURIYA V.I., IVNOVA T.I., LUNIN V.D., 1999, Influence of Liquid Phase and Products of Its Radiolysis on Surface Properties of Pyrite and Arsenopyrite, Journal of Mining Science, 35(1).
  • 8. FLOREK I., 1995, The Effects of Radiation Pretreatment on the Flotability of Magnesite and Siderite, Minerals Engineering, 8(3).
  • 9. WANG, H. F., LU, S. C., and XIE, L. Q., 2002a, Effect of radiation on wettability and floatability of sulfide minerals, Journal of University of Science and Technology Beijing, 9 (4).
  • 10. WANG H. F., LU S.C., CUI S.F. et al., 2002b, Electrification of mineral particles by electron beam irradiation, Journal of University of Science and Technology Beijing, 9(5).
  • 11. WANG H., BOCHKAREV G.R., ROSTOVTSEV V.I. et al., 2002c, Intensification of polymetallic sulfide ore dressing by high-energy electrons, Journal of Mining Science, 38(5).
  • 12. FLOREK I., CERNY V., 1992, Intensification of the Magnetic Separation of Fine Chalcopyrite Ores by Means of Irradiation by Electrons, [in:] Proceedings of the First International Conference on Modern Process Mineralogy and Mineral Processing, September 22–25, Beijing, China.
  • 13. BOCHKAREV G.R., ROSTOVTSEV V.I., VEIGEL’T, YU. P. et al, 1992, Effects of Accelerated Electrons on Structural and Technological Properties of Ores and Minerals, Journal of Mining Science, 28(6).
  • 14. OSTOPENKO P.E., SMOLYAKOV A.R., TRUFANOVA I.M. et al, 1993, Directional Change of Technological Properties of Rare Metal Mineral By Means of the Radiation-Thermal action, Journal of Mining Science, 29(1).
  • 15. LIU S.Y., 1994, Principle of Magnetic and Electrical Beneficiation (in Chinese) [M], Central South University of Technology Press, Changsha, China.
  • 16. WANG H.F., 2002d, Study on Mechanism and Application Fundamental of Minerals Modification by Electron Beam Irradiation (in Chinese), Doctoral Dissertation, Beijing, China.
  • 17. WANG H., BOCHKAREV G. R., ROSTOVTSEV V.I., VEIGEL'T Y.P., LU S., 2004, Improvement of the magnetic properties of iron-bearing minerals during radiation-thermal treatment, Journal of Mining Science, 40 (4), 399–408 .
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0d2d6471-b6c8-49ec-ad25-4545c841db0e
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