Feasibility of Preparing Steel Slag–Ground Granulated Blast Furnace Slag Cementitious Materials: Synergistic Hydration, Fresh, and Hardened Properties

Author:

Sun Jianwei12,Hou Shaoyun12,Guo Yuehao12,Cao Xinying12,Zhang Dongdong3

Affiliation:

1. School of Civil Engineering, Qingdao University of Technology, Qingdao 266520, China

2. Engineering Research Center of Concrete Technology under Marine Environment, Ministry of Education, Qingdao 266520, China

3. Jinan Rail Transit Group Co., Ltd., Jinan 250000, China

Abstract

Steel slag and GBFS are wastes generated during the steel and iron smelting process, characterized by their considerable production rates and extensive storage capacities. After grinding, they are often used as supplementary cementitious materials. However, the intrinsic slow hydration kinetics of steel slag–GBFS cementitious material (SGM) when exposed to a pure water environment result in prolonged setting times and diminished early-age strength development. The incorporation of modifiers such as gypsum, clinker, or alkaline activators can effectively improve the various properties of SGM. This comprehensive review delves into existing research on the utilization of SGM, examining their hydration mechanisms, workability, setting time, mechanical strengths, durability, and shrinkage. Critical parameters including the performance of base materials (water-to-cement ratio, fineness, and composition) and modifiers (type, alkali content, and dosage) are scrutinized to understand their effects on the final properties of the cementitious materials. The improvement mechanisms of various modifiers on properties are discussed. This promotes resource utilization of industrial solid wastes and provides theoretical support for the engineering application of SGM.

Funder

Natural Science Fund of Shandong Province

Open Project of Engineering Research Center of Concrete Technology under Marine Environment

Publisher

MDPI AG

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