Formation of calcium aluminoferrites in the ternary CaO-Al2O3-Fe2O3 system during solid-phase reactions

被引:0
|
作者
Samchenko, Svetlana, V [1 ]
Korshunov, Andrey, V [1 ]
机构
[1] Moscow State Univ Civil Engn, Dept Bldg Mat, 26 Yaroslavskoye Shosse, Moscow 129337, Russia
关键词
Calcium aluminoferrites; Brownmillerite; Ternary oxide system; Solid-phase reactions; Amorphous aluminate intermediates; HEXACALCIUM DIALUMINO FERRITE; X-RAY-DIFFRACTION; POWDER DIFFRACTION; ALUMINUM; DIFFUSION; HEMATITE; CORUNDUM; OXIDE; EQUILIBRIA; DATABASE;
D O I
10.1016/j.conbuildmat.2024.139117
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The ferrite phase in the cement composition has a reduced heat release during hydration, improves mechanical properties and increases the corrosion resistance of cement materials. In this article, the formation of C(2)A(x)F(1-x)-type aluminoferrites in the CaO-Al2O3-Fe2O3 system during solid-phase reactions was studied. A system of empirical equations has been proposed that allows calculating the thermodynamic functions (Delta H-f degrees(298), Delta(f)G degrees(298)) of the formation of calcium aluminoferrites of any composition within a continuous series C(2)A(0)(.)(667)F(0)(.)(333) (C(6)A(2)F) - C2F. Analysis of the various pathways of aluminoferrites formation has been conducted, taking into consideration the formation of intermediate phases in the ternary system. Based on a comparison of experimental data for mixtures of C+F, C+A, and C+A+F, a temperature sequence for phase formation (C2F, CF, amorphous [CA](am), C-2(A)F, CA, C(12)A(7), C(2)A(x)F(1-x), eutectic liquid) in ternary oxide systems has been established. It has been shown that the amorphous aluminate phase present in the reaction system within the temperature range of 850-1100 degrees C plays a crucial role in the formation of aluminoferrites. Among the investigated ternary oxide mixtures, whose initial composition corresponds to the stoichiometries of C(6)A(2)F, C(4)AF, C(6)AF(2), and C(8)AF(3), only a certain aluminoferrite (brownmillerite), with a sufficiently high yield (similar to 53 wt% at 1200 degrees C), is formed in a 4 C+A+F mixture. An explanation has been proposed for the similarity in morphology between the sintered alpha-Fe2O3 and the calcined products of the C+F and C+A+F oxide mixtures when T>1000 degrees C. The results of this work can be used to improve existing technologies and develop new methods for the production of iron-rich binders and additives based on calcium ferrites and aluminoferrites. The results of this work allow us to clarify the patterns of phase formation of calcium aluminoferrites under conditions of solid-phase reactions.
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页数:17
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