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Effect of Batch Melting Temperature and Raw Material on Iron Redox State in Sodium Silicate Glasses

  • Mirhadi, Bahman (Engineering department, Imam Khomeini International University) ;
  • Mehdikhani, Behzad (Engineering department, Imam Khomeini International University)
  • Received : 2010.08.11
  • Accepted : 2010.12.29
  • Published : 2011.03.31

Abstract

In this study, the redox state of iron in sodium silicate glasses was varied by changing the melting conditions, such as the melting temperature and particle size of iron oxide. The oxidation states of the iron ion were determined by wet chemical analysis and UV-Vis spectroscopy methods. Iron commonly exists as an equilibrium mixture of ferrous ions, $Fe^{2+}$, and ferric ions $Fe^{3+}$. In this study, sodium silicate glasses containing nanoparticles of iron oxide (0.5% mol) were prepared at various temperatures. Increase of temperature led to the transformation of ferric ions to ferrous ions, and the intensity of the ferrous peak in 1050 nm increased. Nanoparticle iron oxide caused fewer ferrous ions to be formed and the $\frac{Fe^{2+}}{Fe^{3+}}$ equilibrium ratio compared to that with micro-oxide iron powder was lower.

Keywords

References

  1. W.D. Johnston, “Oxidation-reduction Equilibria in Ironcontaining Glass,” J. Am. Ceram. Soc., 47 [47] 198-201 (1963).
  2. W. Vogel, Properties of Colored Glasses; Vol. 1, pp. 138-200, Chemistry of Glass, New York, 1925.
  3. F. V. Tolly, Foundation of Glass Industry; Vol. 3, pp. 1316-1318, Qazvin Glass Co, Qazvin, 1991.
  4. C. R. Bamford, Color Generation and Control in Glass; Vol. 1, p. 36, Elsevier Scientific, New York, 1977.
  5. K. Sakaguchi and T. Uchino, “Compositional Dependence of Infrared Absorption of Iron-doped Silicate Glasses,” J. Non-Crystalline Solids., 353 [52-54] 4753-61 (2007). https://doi.org/10.1016/j.jnoncrysol.2007.06.058
  6. M. Yamashita, T. Akai, and R. Sawa, “Effect of Preparation Procedure on Redox States of Iron in Soda-lime Silicate Glass,” J. Non-Crystalline Solids., 354 [40-41] 4534-38 (2008). https://doi.org/10.1016/j.jnoncrysol.2008.07.002
  7. S.B. Donald, A.M. Swink, and H.D. Schreiber, “High-iron Ferric Glass,” J. Non-Crystalline Solids., 352 [6-7] 539-43 (2006). https://doi.org/10.1016/j.jnoncrysol.2005.11.042
  8. K.R. Kukadapu and G.L Li H.Smith, “Moossbauer and Optical Spectroscopic Study of Temperature and Redox Effects On Iron Local Environments in a Fe-doped (0.5 mol% $Fe_2O_3$) $18Na_2O-72SiO_2$ Glass,” J. Non-Crystalline Solids., 317 [3] 301-18 (2003). https://doi.org/10.1016/S0022-3093(02)01815-X
  9. W.A. Weyl, Coloured Glasses; Vol. 1, pp. 60-89, Dawson’s of Pall Mall, London, 1959.
  10. C.R. Bamford, Glass Science and Technology, Colour Generation and Control in Glass; Vol. 2, p. 33, Elsevier Scientific Publishing Company, Amsterdam, 1977.
  11. L.B. Globov, “Optical Absorption and Ionization of Silicate Glasses,” J. Optical Materials., 4347 [1] 343-58 (2001).
  12. J.S. Jeung and W Hoeard, “Effect of Oxidation State of Iron on Phase Separation in Sodium Silicate Glasses,” J. Am. Ceram. Soc., 84 [8] 1859-64 (2001).
  13. T. Tran and M.P. Brungs, “Applications of Oxygen Electrodes in Glassmelts: II, Oxygen Probes for the Measurement of Oxygen Potential in Sodium Disilicate Glass,” J. Physics and Chemistry of Glasses., [21] 178-83 (1980).
  14. Ki-Dong Kim and Sung-Ku Kwon, “Redox Equilibrium of $Fe^{3+}/Fe^{2+}$ and Diffusivity of Iron in Alkali-alkaline Earthsilicate Glass Melts,” Journal of Ceramic Processing Research, 11 [4] 460-64 (2010).
  15. J.E. Fenstermacher, “Optical Absorption Due to Tetrahedral and Octahedral Ferric Iron in Silicate Glasses,” J. Non-Crystalline Solids., 38 [1] 239-44 (1980). https://doi.org/10.1016/0022-3093(80)90425-1

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