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Iron ore tailing-based geopolymer containing glass wool residue: A study of mechanical and microstructural properties

机译:含玻璃棉残余物的铁矿石尾矿基地质聚合物:力学和微观结构性质的研究

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摘要

This work presents an evaluation of the application of iron ore tailing as primary precursor material to geopolymer production. Glass wool residue from the iron ore industry was also included as a blend material. Four mixtures of geopolymers were produced: one mixture using only iron ore tailing; three mixtures where the iron ore tailing was replaced by the glass wool residue, with a substitution ratio of 10%, 20% and 30% (in mass). Furthermore, three different grinding times and three NaOH solution concentration were applied. Compressive strength and flexural strength tests were performed in prismatic specimens at 7-days, and the microstructural analysis of the fragments was obtained by SEM analysis. QXRD analysis based on the Rietveld's refinement method and TG/DTA analysis was applied for all specimens. The results showed the synthesis of a zeolite phase in all specimens, and the SEM micrographs showed a transformation process of the glass wool residue. Finally, high mechanical performances were found to the iron ore tailing-based geopolymer, reaching values higher than 100 MPa for compressive strength and 20 MPa for flexural strength. The obtained values are related to the grain packing improvements, geopolymerization products, and the glass wool residue working as a supplementary precursor material to the geopolymerization reaction. The result points to the potential of iron ore tailing and glass wool residue to geopolymers studies and application. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作对铁矿石尾矿作为主要前体材料在地质聚合物生产中的应用进行了评估。来自铁矿石行业的玻璃棉残留物也作为混合材料包括在内。生产了四种地质聚合物的混合物:一种仅使用铁矿石尾矿的混合物;另一种仅使用铁矿石尾矿的混合物。三种混合物,其中铁矿石尾矿被玻璃棉残渣代替,替代比例为10%,20%和30%(质量)。此外,应用了三种不同的研磨时间和三种NaOH溶液浓度。在7天的棱柱状试样上进行抗压强度和抗弯强度测试,并通过SEM分析获得碎片的显微结构。所有样品均采用基于Rietveld改进方法的QXRD分析和TG / DTA分析。结果表明在所有样品中都合成了沸石相,并且SEM显微照片显示了玻璃棉残余物的转化过程。最后,发现铁矿石尾矿基地质聚合物具有较高的机械性能,其抗压强度值高于100 MPa,抗弯强度值高于20 MPa。所获得的值与谷物填充的改进,地聚产物以及用作地聚反应的补充前体材料的玻璃棉残余物有关。结果表明铁矿石尾矿和玻璃棉残留物在地质聚合物研究和应用中的潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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