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Assessing the sustainability potential of alkali-activated concrete from electric arc furnace slag using the ECO_2 framework

机译:使用ECO_2框架评估从电弧炉炉渣的碱活化混凝土的可持续性潜力

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摘要

Alkali-activated materials are regarded as a potential sustainable building material with industrial byproducts fully replacing ordinary Portland cement. Five million tonnes of electric arc furnace slag are produced annually mostly to be recycled as low value aggregates in several construction applications. This study examined the possibility of valorising the understudied slag as a precursor in alkali-activated concrete. The material, supplied free and available in abundance as a waste, presents a significant potential to produce sustainable concrete. Hence, the mechanical and durability properties of electric arc furnace slag-based alkali-activated concrete were examined. After that, using a sustainability assessment framework called ECO2, the combined whole-life cycle assessment of the environmental and economic impact was calculated for several mixes that combined electric arc furnace slag and fly ash as precursors. The increasing amount of slag content led to a decline in mechanical performance, though there was an equivalent durability-related performance; mixes with electric arc furnace slag showed equivalent slump and resistance to carbonation, and enhanced resistance to chloride ion penetration. Furthermore, slag-based concrete exhibited significant improvement in the overall ECO2 sustainability score due to its minimal environmental and economic impact. (C) 2021 Elsevier Ltd. All rights reserved.
机译:碱活性材料被视为具有工业副产品的潜在可持续建筑材料,完全取代普通波特兰水泥。每年生产500万吨电弧炉炉渣在几种施工应用中被再循环为低价骨料。本研究检测了将被储存的渣作为碱活化混凝土中的前体算入储存的可能性。作为浪费的自由用品提供的材料,提供了生产可持续混凝土的显着潜力。因此,研究了电弧炉渣的碱活化混凝土的机械和耐久性。之后,使用称为ECO2的可持续性评估框架,计算了电弧炉炉渣和粉煤灰作为前体的几个混合物计算了环境和经济影响的组合的整个生命周期评估。虽然存在相同的耐用性相关性能,但渣含量的增加导致了机械性能下降;电弧炉炉渣的混合显示出相当坍落度和碳化抗性,增强抗氯离子渗透的抗性。此外,由于其环境和经济影响最小,熔渣基混凝土展现了整体ECO2可持续性评分的显着改善。 (c)2021 elestvier有限公司保留所有权利。

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