4.7 Article

In-depth insight into the cementitious synergistic effect of steel slag and red mud on the properties of composite cementitious materials

期刊

JOURNAL OF BUILDING ENGINEERING
卷 52, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jobe.2022.104449

关键词

Steel slag; Red mud; Cementitious synergistic effect; Hydration degree; Compressive strength

资金

  1. National Natural Science Foundation of China [52074035, 52008229]
  2. Fundamental Research Funds for the Central Universities [FRF-AT-20-08]

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This study found that the synergistic effect of steel slag (SS) and red mud (RM) can improve the mechanical properties of high-volume solid waste cementitious materials. It was also discovered that the alkali in RM and sulphate in desulfurized gypsum (DG) can stimulate the activity of SS. The introduction of 5% DG significantly increases the interaction between SS and RM, leading to improved hydration degree and microstructure densification.
The low activity of steel slag (SS) and the high alkalinity of red mud (RM) severely limit their resource utilization in cementitious materials. In this study, SS, RM and desulfurized gypsum (DG) were used to prepare composite cementitious materials. The experimental results proved that the synergistic effect of SS and RM improves the mechanical properties of high-volume solid waste cementitious materials. The cementitious synergistic effect of SS and RM was studied, and it was found that the alkali in RM and sulfate in DG could stimulate the activity of SS, generating more C-S-H gel and ettringite in the matrix after curing for 3 days. In the presence of 5% DG, the interaction between SS and RM significantly increases the overall hydration degree of composite binders, leading to an increase in hydration product contents and densification of the microstructure. Novel findings about the cementitious synergistic effect of SS and RM provide innovative guidance for the synergistic utilization of multiple solid wastes in composite cementitious materials.

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