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Balancing durability and environmental impact in concrete combining low-grade recycled aggregates and mineral admixtures

机译:结合低品位再生骨料和矿物掺合料在混凝土中平衡耐久性和环境影响

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摘要

This paper investigated the effect of various amounts of low-grade recycled aggregates in concrete containing mineral admixtures at three different water-binder ratios on mechanical and environmental performance. The balance between durability and environmental impact for a given strength level similar to normal-use concrete was also examined using analytic hierarchy process. Results showed that increasing the water-binder ratio and volume of recycled aggregates reduced compressive strength and increased air permeability and drying shrinkage relative to normal aggregates. However, compared to normal-use concrete similar or better performance could be achieved, which was attributed to improvement of low-grade recycled aggregate performance when combined with fly ash. Similarly, CO_2 emissions and volume of raw materials were lower than the normal-use concrete for all mixes. Concrete mixes with low air permeability and low CO_2 footprint had the best balance of durability and environmental impact, as decreasing raw material volume tended to more greatly reduce durability.
机译:本文研究了三种不同水灰比下含矿物掺合料的混凝土中各种数量的低等级再生骨料对机械和环境性能的影响。对于给定强度水平(类似于普通混凝土)的耐久性和环境影响之间的平衡,也使用层次分析法进行了检验。结果表明,相对于普通骨料,提高水凝率和再生骨料的体积会降低抗压强度,并增加透气性和干燥收缩率。但是,与普通混凝土相比,可以获得类似或更好的性能,这归因于与粉煤灰结合使用时低级再生骨料性能的提高。同样,所有混合物的CO_2排放量和原料量均低于普通混凝土。低透气性和低CO_2足迹的混凝土混合物在耐久性和环境影响之间达到了最佳平衡,因为减少原料量往往会大大降低耐久性。

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