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Experimental study on full-volume slag alkali-activated mortars: Air-cooled blast furnace slag versus machine-made sand as fine aggregates

机译:全体积渣碱活性砂浆的实验研究:风冷高炉炉渣与机制砂作为细骨料

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As the industrial waste from blast furnace ironmaking, air-cooled blast furnace slag (ACBFS) puts a lot of pressure on the environment. It is becoming more and more urgent to deal with the increasing ACBFS. In this study, the concept of "full-volume slag alkali-activated mortars (FSAM)" is proposed using ground granulated water-cooled blast furnace slag (GGBS) as aluminosilicate material and ACBFS to replace machine-made sand, aiming to solve the current situation of increasing scarcity of natural resources. The characteristics of ACBFS are investigated, and its stability and heavy metal leaching all meet the requirements as a building material. The results show that the flowability and mechanical properties of FSAM are significantly enhanced with the substitution rate of ACBFS increases. Meanwhile, the incorporation of ACBFS is also beneficial to improve the compactness of the microstructure of the mortar, thereby improving the impermeability (Water, ion and gas) of FSAM. In addition, the specimen mixed with ACBFS showed good high temperature resistance due to the porous feature of the aggregate. Furthermore, using a small amount of limestone powder to replace GGBS can slightly improve the performance of FSAM. Therefore, ACBFS is recommended to be used in FSAM, which meets safety, cost and environmental benefits.
机译:作为高炉炼铁制造的工业废物,风冷的高炉炉渣(ACBFS)对环境产生了大量压力。处理增加的ACBF是越来越迫切的。在这项研究中,使用地粒状水冷高炉渣(GGBS)作为铝硅酸盐材料和ACBF来提出“全体积炉渣碱活性迫击炮(FSAM)”的概念,以取代机制砂,旨在解决目前增加自然资源稀缺的现状。研究了ACBFS的特性,其稳定性和重金属浸出全部满足了作为建筑材料的要求。结果表明,随着ACBF的替代率增加,FSAM的流动性和机械性能明显增强。同时,ACBF的掺入也有利于改善砂浆的微观结构的紧凑性,从而改善FSAM的不透析性(水,离子和气体)。此外,由于聚集体的多孔特征,与ACBF混合的样品显示出良好的高耐温性。此外,使用少量的石灰石粉末代替GGB可以略微提高FSAM的性能。因此,建议在FSAM中使用ACBF,这符合安全,成本和环境效益。

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