4.7 Article

Effect of basicity on the reduction swelling behavior and mechanism of limestone fluxed iron ore pellets

Journal

POWDER TECHNOLOGY
Volume 393, Issue -, Pages 291-300

Publisher

ELSEVIER
DOI: 10.1016/j.powtec.2021.07.057

Keywords

Reduction swelling; Fluxed pellet; Limestone; Basicity; Calcium ferrite (SFCA)

Funding

  1. National Natural Science Foundation of China [51904348]
  2. Shanxi Province Major Sci-ence and Technology Projects [20191101002]
  3. Fundamental Research Funds for the Central Universities of Central South University [2021zzts0294, 2021zzts0902]

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The investigation found that the swelling of limestone fluxed iron ore pellets was mainly caused by crystal volume expansion due to crystal structure transformation. Low basicity amplified the volume expansion, while high basicity decreased swelling. Complex calcium ferrite in high basicity pellets promoted uniform reduction rate, reducing the swelling of pellets. Increasing basicity above 1.0 to promote the formation of SFCA was an effective way to decrease the reduction swelling index of limestone fluxed pellets.
Limestone fluxed iron ore pellets are reduced in CO-rich atmosphere generally accompanied by swelling behavior. If the reduction swelling index (RSI) exceeds the normal range (>= 20%), it will seriously hinder the stable and anterograde production of iron making. To better guide the industrial production, the effect of binary basidty (CaO/SiO2) on the reduction swelling behavior and mechanism of limestone fluxed iron ore pellets was investigated. Meanwhile. X-ray diffraction technique was used to analyze the phase transformation in pellets with different basicity during the reduction process, and the microstructures of different substances were examined by SEM-EDS. The above researches confirmed that the crystal volume expansion caused by crystal structure transformation during hematite (alpha-Fe2O3) reduced to maghemite (gamma-Fe2O3) was the fundamental reason for the swelling of limestone fluxed pellets. Low basidty (0.4-0.8) amplified the volume expansion produced in this process, while high basicity (1.0-12) reversed it.This inconsistency stemmed from the difference in the composition of binding phase. Compared with calcium iron silicate in low basicity pellets, complex calcium ferrite (SFCA) as the binding phase of high basicity pellets had excellent reducibility, which promoted uniform reduction rate of high basidty pellets. The increased of SFCA content i reduced the quantities of hematite and effectively inhibited swelling of pellets. From this investigation, increasing the basicity above 1.0 to promote the formation of SECA was an effective way for decreasing the reduction swelling index of limestone fluxed pellets. (C) 2021 Elsevier B.V. All rights reserved.

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