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再生骨料混凝土的浸出与力学性能

Leaching and mechanical behaviour of concrete manufactured with recycled aggregates.

作者信息

Sani D, Moriconi G, Fava G, Corinaldesi V

机构信息

Department of Materials and Environmental Engineering and Physics, Marche Polytechnical University, Via Brecce Bianche 12, Ancona 60131, Italy.

出版信息

Waste Manag. 2005;25(2):177-82. doi: 10.1016/j.wasman.2004.12.006.

Abstract

The reuse of debris from building demolition is of increasing public interest because it decreases the volume of material to be disposed to landfill. This research is focused on the evaluation of the possibility of reusing recycled aggregate from construction or demolition waste (C&D) as a substitute for natural aggregate in concrete production. In most applications, cement based materials are used for building construction due to their cost effectiveness and performance; however their impact on the surrounding environment should be monitored. The interstitial pore fluid in contact with hydrated cementitious materials is characterized by persistent alkaline pH values buffered by the presence of hydrate calcium silicate, portlandite and alkaline ions. An experimental plan was carried out to investigate concrete structural properties in relation to alkali release in aqueous solution. Results indicate that the presence of recycled aggregate increases the leachability of unreactive ions (Na, K, Cl), while for calcium the substitution resulted in a lower net leaching. In spite of the lower mechanical resistance (40% less), such a waste concrete may be suggested as more environmentally sustainable.

摘要

建筑拆除废弃物的再利用越来越受到公众关注,因为这减少了需填埋处理的材料量。本研究聚焦于评估将建筑或拆除废弃物(C&D)中的再生骨料用作混凝土生产中天然骨料替代品的可能性。在大多数应用中,水泥基材料因其成本效益和性能而用于建筑施工;然而,应监测它们对周围环境的影响。与水化胶凝材料接触的孔隙间流体的特征是,由于存在水化硅酸钙、氢氧化钙和碱离子,其pH值呈碱性且持续稳定。开展了一项实验计划,以研究与水溶液中碱释放相关的混凝土结构性能。结果表明,再生骨料的存在增加了非活性离子(钠、钾、氯)的浸出性,而对于钙,替代导致净浸出量较低。尽管力学强度较低(低40%),但这种废弃混凝土仍可被认为具有更高的环境可持续性。

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