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Compressive Strength and Microstructure Properties of Alkali-Activated Systems with Blast Furnace Slag, Desulfurization Slag, and Gypsum

机译:含高炉渣,脱硫渣和石膏的碱活化体系的抗压强度和微观结构性质

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摘要

This study investigates the effect of desulfurization slag (DS) and gypsum (G) on the compressive strength and microstructure properties of blast furnace slag-(BFS-) based alkali-activated systems. DS is produced in a Kambara reactor process of molten iron produced in a steel production process. DS contains CaO, SiO2, Fe2O3, and SO3 and is composed of Ca(OH)(2) and 2CaO center dot SiO2 as main compounds. In this investigation, the weight of BFS was replaced by DS at 5, 10, 15, 20, 25, and 30%. In addition, G was also applied at 9, 12, and 15% by weight of BFS to improve the compressive strength of the alkali-activated system with BFS and DS. According to this investigation, the compressive strength of the alkali-activated mixes with BFS and DS ranged from 14.9 MPa (B95D5) to 19.8 MPa (B90D10) after 91 days. However, the 28 days compressive strength of the alkali-activated mixes with BFS, DS, and G reached 39.1 MPa, 45.2 MPa, and 48.4 MPa, respectively, which were approximately 78.8 to 97.5% of that of O100 mix (49.6 MPa). The main hydrates of the BFS-DS (B80D20) binder sample were Ca(OH)(2), CaCO3, and low-crystalline calcium silicate hydrates, while the main hydration product of BFS-DS-G (B75D10G15) binder was found as ettringite. The use of BFS-DS-G binders would result in the value-added utilization of steel slag and provide an environmentally friendly construction material, and contribute to a reduction of CO2 in the cement industry.
机译:本研究研究了脱硫渣(DS)和石膏(G)对高炉渣(BFS-)为基础的碱活化体系的抗压强度和显微组织性能的影响。 DS是在Kambara反应器工艺中生产的,该工艺是在钢铁生产过程中生产的铁水。 DS包含CaO,SiO2,Fe2O3和SO3,并且由Ca(OH)(2)和2CaO中心点SiO2作为主要化合物组成。在这项调查中,BFS的重量被DS替代为5、10、15、20、25和30%。另外,还以9、12和15重量%的BFS施用G,以提高具有BFS和DS的碱活化体系的抗压强度。根据这项调查,在91天后,含BFS和DS的碱活化混合物的抗压强度为14.9 MPa(B95D5)至19.8 MPa(B90D10)。但是,与BFS,DS和G混合的碱活化混合物的28天抗压强度分别达到39.1 MPa,45.2 MPa和48.4 MPa,约为O100混合物(49.6 MPa)的78.8至97.5%。 BFS-DS(B80D20)粘合剂样品的主要水合物为Ca(OH)(2),CaCO3和低结晶硅酸钙水合物,而BFS-DS-G(B75D10G15)粘合剂的主要水合产物为钙矾石。 BFS-DS-G粘结剂的使用将导致钢渣的增值利用,并提供一种环境友好的建筑材料,并有助于减少水泥工业中的二氧化碳。

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  • 来源
    《Advances in civil engineering》 |2018年第12期|6123070.1-6123070.9|共9页
  • 作者单位

    Res Inst Ind Sci & Technol Environm & Resources Res Grp Pohang 37673 South Korea;

    ASIA Cement Co Support Planning Div R&D Ctr Yongin South Korea;

    Wonkwang Univ Dept Architectural Engn 460 Iksan Daero Iksan 54538 South Korea;

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