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Effect of the Al2O3 Content and MgO/Al2O3 Ratio on the Viscosity and Structure of CaO–SiO2–MgO–Al2O3-Based Furnace Slag with CaO/SiO2 = 1.2

  • Jianwei Song,
  • Lei He,
  • Tu Hu,
  • Tingting Lv,
  • Li Gao

摘要

The effects of the Al2O3 content and MgO/Al2O3 ratios on the structure and viscosity of CaO–SiO2–MgO–Al2O3 silicate-based slag were studied by the rotating cylinder method. The evolution of the silicate structure was analyzed by Fourier transform infrared spectroscopy. The results show that when the CaO/SiO2 ratio is 1.20 and the MgO content is 10 mass pct, the Si–O–Al structure and [AlO4]5− tetrahedron structure of the slag increase with increasing Al2O3 content (17 to 22 pct), which increases the viscosity, break-point temperature, and activation energy of the slag. In addition, when the CaO/SiO2 ratio is 1.20 and the Al2O3 content is 18, 20, and 22 mass pct, respectively, with the increase of MgO/Al2O3 ratio in the range of 0.4 to 0.7, the viscosity, break-point temperature, and activation energy of slag decrease. The analysis of the Raman spectra in the 800 to 1200 cm−1 range indicates that complex silicate structures ([Si2O5]2−, [Si2O6]4−) disaggregate into simpler structures ([Si2O7]6− and [SiO4]4−) with the MgO/Al2O3 ratio increase. The proportion of structural units Q3 and Q2 decreases, the proportion of Q1 and Q0 increases, and the proportion of silicate structural units (Q0 + Q1)/(Q2 + Q3) increases, which indicates that the non-bridging oxygen content in the slag increases, resulting in a decrease in slag polymerization.