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Feasibility of ferronickel slag powder for cementitious binder in concrete mix

机译:镍铁渣粉在混凝土拌合料中作为水泥基粘结剂的可行性

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This study aims at utilizing ferronickel slag (FNS) powder for replacing for ordinary Portland cement (OPC) in concrete. Three types of FNS in different fineness and replacement were used to find which is the most beneficial to be used as binder. FNS concrete was assessed at compressive, flexural, shear and splitting tensile strength tests along with measurement of setting time, hydration heat and drying shrinkage for physical performance. Durability was evaluated by the resistance to chemical degradation against chloride ion penetration, carbonation and sulfate attack. Hydration characteristics of the ferronickel slag paste were identified by scanning electron microscopy observation and pore size analysis. It was found that FNS concrete might have a lower strength at an early age, which was substantially overcame with time then to meet the strength for OPC concrete in a long term, presumably due to a latent hydration. When it comes to durability, chloride transport and sulfate attack were mitigated in FNS concrete, whilst carbonation could be more often prevailed. However, a reuse of industrial waste could enhance the economic benefit and simultaneously lower the CO2 emission in concrete production. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究旨在利用镍铁渣(FNS)粉末代替混凝土中的普通硅酸盐水泥(OPC)。使用三种类型的细度和替代性不同的FNS来找出最适合用作粘合剂的FNS。 FNS混凝土在抗压,挠曲,剪切和劈裂抗拉强度测试中进行了评估,并测量了凝固时间,水合热和干燥收缩率,以评估其物理性能。通过耐化学降解抵抗氯离子渗透,碳酸化和硫酸盐侵蚀的能力来评估耐久性。通过扫描电子显微镜观察和孔径分析确定了镍铁渣浆的水合特性。已经发现,FNS混凝土可能在早期就具有较低的强度,随着时间的推移,该强度已基本克服,然后可以长期满足OPC混凝土的强度,这可能是由于潜在的水合作用所致。在耐久性方面,FNS混凝土可减轻氯化物的运输和硫酸盐的侵蚀,而碳化则更常见。但是,工业废料的再利用可以提高经济效益,同时降低混凝土生产中的CO2排放量。 (C)2019 Elsevier Ltd.保留所有权利。

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