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Additional resources for Advances in Molten Slags, Fluxes, and Salts: Proceedings of the 10th International Conference on Molten Slags, Fluxes, and Salts

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Yi, "Influence of Basicity and FeO Content on Viscosity of Blast Furnace Type Slags Containing FeO", ISIJ International, 44 (2004), 1283-1290 12 P. Herasymenko and G. E. Speigy, "Ionic Ionic Theory of Slag-Metal Equilibria in Iron Smelting. I. Derivation of Fundamental Relations", Journal of Iron and Steel Institution, 166(1950) 169-183 26 13 M. Temkin, "Mixtures of Fused Salts as Ionic Solutions", Acta Pyssicochimica URSS, 20 (1945) 411-420 14 G. W. Toop and C. S. Samis, "Some New Ionic Concepts of Silicate Slags", Canadian Metallurgy Quarterly, 1(1962) 129-152 15 C.

45 Fig. 3 shows the effect of A1 2 0 3 on the viscosity and structure of the blast furnace slags. As A1 2 0 3 content increases, viscosity increases continuously. Hence A1 2 0 3 behaves as a network former, and consists of A1044" tetrahedral anions. Such an acid behavior of A1 2 0 3 is also shown in FT-IR spectra of Ca0-Si0 2 -Al 2 0 3 -5mass% MgO-5mass% FeO slags in Fig. 3(b). The major FT-IR bands of aluminosilicate structure are asymmetric stretching vibration of 19 A10 4 -tetrahedra (720-630 cm"1), A10 6 -octahedra (570-520 cm"1) and Si-O-Al bending (500 cm _1).

Samis, "Some New Ionic Concepts of Silicate Slags", Canadian Metallurgy Quarterly, 1(1962) 129-152 15 C. R. Masson, "An Approach to the Problem of Ionic Distribution in Liquid Silicates", Proceedings of Royal Society A, A287 (1965) 201-221 16. J. R. Kim, Y. S. Lee, D. J. Min, S. M. Jung, and Sang Ho Yi, "Influence of MgO and A1203 Contents on Viscosity of Blast Furnace Type Slags Containing FeO", ISIJ International, 44 (2004) 1291-1297 17. Kim, W. H. Kim, J. H. Park and D. J. Min, "A Study on the Effect of Na 2 0 on the Viscosity for Ironmaking Slags", Steel Research International, 81 (2010) 17-24 18.

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