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Waste Foundry Sand Usage for Building Material Production: A First Geopolymer Record in Material Reuse

机译:铸造废砂用于建筑材料的生产:材料再利用的第一个地质聚合物记录

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摘要

In order to bring a solution to the problem of waste foundry sand (WFS) in the foundry sector and achieve its reuse, geopolymer building material (as a cementless technology) was produced from the WFS for the first time in the literature in this study. The physical and mechanical characteristics of this material were determined. In the first part of the experimental step, the sieve analysis, loose/tight unit weight, and loss of ignition of the WFS were obtained as well as the ultimate analysis. In the second step, the water absorption percentage, porosity, unit weight, and compressive strength tests were conducted on the WFS-based geopolymer specimens activated by chemical binders (sodium hydroxide NaOH and sodium silicate Na2SiO3). As the unit weights of all the produced samples were lower than 1.6 g/cm3, they may be considered as lightweight building materials. The minimum compressive strength value for building wall materials was accepted as 2.5 MPa by national standards. In this study, the maximum compressive strength value was measured as 12.3 MPa for the mixture incorporation of 30% Na2SiO3 at the curing temperature of 200°C in 28 days. It was concluded that this geopolymer material is suitable for using as a building wall material.
机译:为了解决铸造行业的废铸造砂(WFS)问题并实现其再利用,本研究文献首次从WFS生产了地聚合物建筑材料(作为非水泥技术)。确定了该材料的物理和机械特性。在实验步骤的第一部分,获得了筛分分析,松散/紧密的单位重量以及WFS的着火损失以及最终分析。在第二步中,对由化学粘合剂(氢氧化钠NaOH和硅酸钠Na2SiO3)活化的WFS基地质聚合物样品进行了吸水率,孔隙率,单位重量和抗压强度测试。由于所有生产样品的单位重量均低于1.6µg / cm3,因此可以将它们视为轻质建筑材料。建筑墙体材料的最小抗压强度值被国家标准认可为2.5 MPa。在这项研究中,在200℃的固化温度下28天掺入30%Na2SiO3的混合物测得的最大抗压强度值为12.3 MPa。结论是,这种地质聚合物材料适合用作建筑墙体材料。

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