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Utilization of Iron Tailings Sand as an Environmentally Friendly Alternative to Natural River Sand in High-Strength Concrete: Shrinkage Characterization and Mitigation Strategies

机译:铁尾矿砂作为高强度混凝土的天然河砂作为环保替代品:收缩表征和缓解策略

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摘要

The increasing annual emissions of iron ore tailings have proved a great threat to the natural environment, and the shortage of natural river sand, as well as the pursuit of sustainable development materials, provides motivation to reuse iron ore tailings as a fine aggregate in concrete. Due to the significantly different properties of iron tailings sand compared with natural river sand—such as the higher density, higher content of limestone particles smaller than 75 μm and its rough and angular shape—concretes prepared with iron tailings sand show remarkably higher shrinkage. This study presents the shrinkage characterization and shrinkage-reducing efficiency of three different methods on iron tailings, sand concrete and river sand concrete. The internal humidity was also monitored to reveal the shrinkage-reducing mechanism. The obtained results indicated that the autogenous and total shrinkage of iron tailings sand concrete were 9.8% and 13.3% higher than the river sand concrete at the age of 90 d, respectively. The shrinkage reducing agent (SRA) was the most effective shrinkage reducing method for river sand concrete, while for iron tailings sand concrete, super absorbent polymer (SAP) and controlled permeable formwork liner (CPFL) it worked best on autogenous shrinkage and drying shrinkage, respectively. Furthermore, the shrinkage mitigation strategies worked earlier for the drying shrinkage behavior of iron tailings sand concrete, while no such condition could be found for autogenous shrinkage.
机译:越来越多的铁矿石尾矿排放已经证明了对自然环境的巨大威胁,自然河砂的短缺以及追求可持续发展材料,提供了作为混凝土的细骨料重用铁矿石尾矿的动机。由于铁尾矿砂的显着不同,与天然河砂相比,如较高的密度,更高的石灰石颗粒含量小于75μm,并且其粗糙和角形状制造的铁尾砂显示出显着更高的收缩。本研究介绍了在铁尾矿,砂混凝土和河砂混凝土上三种不同方法的收缩表征和收缩降低效率。还监测内部湿度以露出收缩减少机制。所得结果表明,铁尾砂混凝土的自生和总收缩分别比90岁的河砂混凝土高9.8%和13.3%。收缩还原剂(SRA)是河流混凝土中最有效的收缩减少方法,而对于铁尾矿砂混凝土,超吸收性聚合物(SAP)和控制可渗透的模板衬里(CPFL),它最适用于自成的收缩和干燥收缩,分别。此外,收缩缓解策略早期工作,用于铁尾砂混凝土的干燥收缩行为,同时没有找到自生收缩的这种病症。

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