用酸和二氧化碳对倾倒的建筑垃圾进行可持续处理,使其在混凝土中得到有效再利用

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摘要

由于建筑材料(特别是骨料)的匮乏,建筑垃圾的倾倒已成为建筑行业严重关切的问题之一。为了利用倾倒的废料作为骨料,已经开展了大量的研究工作,但其不达标的特性影响了混凝土的质量。此外,还提出了几种提高骨料质量的处理方法,如微生物法、泥浆法等,但混凝土的脆性仍然不可避免。本研究讨论了酸处理和碳化处理对再生混凝土集料(RCA)的影响,以及混合纤维对混凝土性能的影响。钢纤维(SF)和聚丙烯纤维(PF)分别优化为 1.5% 和 1.0%,100% 处理 RCA,以评估混凝土的硬化性能和吸水性。研究报告显示,与酸处理相比,RCA 的碳化处理效果更好,使用混合纤维的混合物比单一纤维的混合物性能更好。100% 碳化 RCA 1.5% SF 和 1.0% PF 混合料的强度比再生骨料混凝土(RAC)高出 57%,而类似混合料的吸水率低于其他混合料。此外,还通过扫描电镜和 XRD 进行了微观结构研究,以支持研究结果。
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Sustainable Treatment Approach to Dumped Construction Waste with Acids and CO2 for its Effective Re-utilization in Concrete
Dumping of construction wastes has become one of the serious concerns in the construction industries subsequent to the scarcity of construction materials, specifically aggregates. Extensive research works have been performed to utilize the dumped waste as aggregates, yet its substandard properties affect the concrete. Furthermore, several treatments were proposed to improve the quality of aggregates such as microbial, slurry etc, but the brittleness of concrete remains unavoidable. This research discusses the effect of acid treatment and carbonation treatment on recycled concrete aggregates (RCA) and the impact of hybrid fibres on concrete properties. The steel fibres (SF) and polypropylene fibres (PF) were optimized to 1.5% and 1.0% with 100% treated RCA to assess the concrete's hardened properties and water absorption. The study reports that the carbonation treatment to RCA performs better compared to acid treatment and the mix with the use of hybrid fibres shows enhanced properties than single fibres. The strength of the mix with 100% carbonated RCA 1.5% SF and 1.0% PF was 57% higher than that of recycled aggregate concrete (RAC) and the water absorption of similar mix was found to be lower than other mixes. Microstructural investigations through SEM and XRD were also performed to support the research findings.
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