Utilization of iron ore tailings with high volume in green concrete

被引:28
|
作者
Zhang, Yannian [1 ]
Li, Zhijun [2 ]
Gu, Xiaowei [2 ]
Nehdi, Moneef L. [3 ]
Marani, Afshin [3 ]
Zhang, Lei [4 ]
机构
[1] Shenyang Jianzhu Univ, Sch Civil Engn, Shenyang 110168, Peoples R China
[2] Northeastern Univ, Sci & Technol Innovat Ctr Smart Water & Resource E, Shenyang 110819, Peoples R China
[3] McMaster Univ, Dept Civil Engn, Hamilton, ON L8S 4M6, Canada
[4] Hebei Univ Technol, Sch Civil & Transportat Engn, Tianjin 300401, Peoples R China
来源
关键词
Iron ore tailings; Waste valorization; Supplementary cementitious materials; Pore structure; Transport properties; INTERFACIAL TRANSITION ZONE; BLAST-FURNACE SLAG; FLY-ASH; COMPRESSIVE STRENGTH; FINE AGGREGATE; HYDRATION CHARACTERISTICS; CEMENTITIOUS MATERIALS; MIGRATION COEFFICIENT; MECHANICAL-PROPERTIES; COMPOSITE BINDER;
D O I
10.1016/j.jobe.2023.106585
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In this study, the potential of converting iron ore tailings (IOTs) into sustainable building materials was explored. IOTs were combined with fly ash (FA) and ground granulated blast-furnace slag (GGBFS) to prepare IOTs-based supplementary cementitious materials (SCMs). A concrete mix using 100% IOTs-aggregate was also prepared. The aim was to address the challenge of producing high-performance concrete using IOTs by replacing cement, coarse aggregate, and fine aggregate simultaneously. The compressive strength, transport properties, pore structure, and interfacial transition zone (ITZ) properties of the concrete were tested. The results showed that the 28-day compressive strength of concrete can reach 49 MPa when IOTs-based SCMs replaced 30% of the cement. The IOT-based SCMs also improved the impermeability and compressive strength of the concrete, reduced the porosity of the concrete matrix and ITZ, refined the pore size of the concrete matrix, and reduced the unhydrated rate of particles in the ITZ. However, there was competition between the matrix pore structure and ITZ, and balancing their performance is essential to achieve multi-objective optimization of concrete performance. This work demonstrates the potential for high-volume utilization of IOTs in sustainable construction materials and enhances our understanding of IOTs-based concrete properties.
引用
收藏
页数:13
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