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On a phase transformation produced by mechanical activation in iron pyrite

Published online by Cambridge University Press:  15 February 1999

J.-P. Eymery*
Affiliation:
Laboratoire de Métallurgie Physique (UMR 6630 CNRS), Université de Poitiers, bâtiment SP2MI, boulevard 3, Téléport 2, B.P. 179, 86960 Futuroscope Cedex, France
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Abstract

The behaviour of pyrite in the process of mechanical milling in air has been examined. Milled powders were characterized by scanning electron microscopy, Mössbauer spectroscopy working in transmission geometry and X-ray diffraction. In the presence ofoxygen, pyrite can readily be transformed to ferrous sulphate monohydrate, whichindicates that the Fe(II) goes from a low-spin state to to a high-spin state. Thetransformation mechanism is saturated after about 60 hours milling, but however it canbe markedly prolonged by further ageing at room temperature. The results also indicatethat mechanical milling is a useful room temperature process of material production.

Keywords

Type
Research Article
Copyright
© EDP Sciences, 1999

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References

Bakker, H., Zhou, G.F., Yang, H., Mat. Sci. For. 179, 47 (1995).
Weeber, A.W., Bakker, H., Physica B 153, 93 (1988). CrossRef
Huang, J.Y., Wu, Y.K., Ye, H.Q., Acta. Mater. 44, 1201 (1996). CrossRef
Matteazzi, P., Le Caër, G., Mat. Sci. Eng. A 156, 229 (1992). CrossRef
Campbell, S.J., Kaczmarek, W.A., Wang, G.M., Nanostruct. Mater. 6, 735 (1995). CrossRef
Matteazi, P., Le Caër, G., Mat. Sci. Eng. A 149, 135 (1991). CrossRef
Lipka, J., Miglierini, M., Sitek, J., Balaz, P., Tkacowa, K., Nucl. Instr. Meth. B 76, 183 (1993). CrossRef
Fegley, B., Lodders, K., Treiman, A.H., Klingelhöfer, G., Icarus 115, 159 (1995). CrossRef
Garg, V.K., Liu, Y.S., Puri, S.P., J. Appl. Phys. 45, 70 (1974). CrossRef
Goldanskii, V.I., Makarov, E.F., Khrapov, V.V., Phys. Lett. 3, 344 (1963). CrossRef
Montano, P.A., Seehra, M.S., Sol. State Comm. 20, 897 (1976). CrossRef
Liu, Y.S., J. Phys. France 40, C2-400 (1979) .
Nishihara, Y., Ogawa, S., J. Chem. Phys. 71, 3796 (1979). CrossRef
Grant, R.W., Wiedersich, H., Muir, A.H., Gonser, U., Delgass, W.N., J. Chem. Phys. 45, 1015 (1966). CrossRef
Vértes, A. Zsoldos, B., Acta Chim. Acad. Sci. Hung. 65, 261 (1970).
Neto, K.S., Garg, V.K., Radiochem. Radioanal. Lett. 15, 357 (1973).
Aylmore, M.G., Lincoln, F.J., J. Alloys Comp. 242, 22 (1996). CrossRef
B.D. Cullity, Elements of X-ray Diffraction, 2nd edn. (Addison-Wesley, Reading 1978).
Wildner, M., Giester, G., Neues Jahrb. Mineral. Monatsh. 7, 296 (1991).
Welham, N.J., The effects of extended milling on minerals, CIM Bulletin 90, 1007 (1997).