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粉煤灰和未碳化再生骨料制备的生态高效混凝土的评估

Evaluation of Eco-Efficient Concretes Produced with Fly Ash and Uncarbonated Recycled Aggregates.

作者信息

Etxeberria Miren

机构信息

Department of Civil and Environmental Engineering, Universitat Politècnica de Catalunya·BarcelonaTECH, Campus Nord, 08034 Barcelona, Spain.

出版信息

Materials (Basel). 2021 Dec 7;14(24):7499. doi: 10.3390/ma14247499.

Abstract

The fabrication of conventional concrete, as well as remains from demolition, has a high environmental impact. This paper assessed the eco-efficiency of concrete made with uncarbonated recycled concrete aggregates (RCA) and fly ash (FA). Two concrete series were produced with an effective water/cement ratio of 0.50 (Series 1) and 0.40 (Series 2). In both series, concretes were produced using 0% and 50% of RCA with 0%, 25% and 50% FA. After analysing the compressive strength, and carbonation and chloride resistance of those concretes, their eco-efficiency based on the binder intensity and CO-eq intensity was assessed. We found that the use of 50% uncarbonated RCA improved the properties of concretes produced with FA with respect to using natural aggregates. The concrete made of 25% FA plus RCA was considered the most eco-efficient based on the tests of compressive, carbonation and chloride properties with the values of 4.1 kg CO m MPa, 76.3 kg CO m mm year and 0.079 kg CO m C, respectively. The uncarbonated RCA improved carbonation resistance, and FA improved chloride resistance. It can be concluded that the use of 50% un-carbonated RCA combined with FA considerably enhanced the properties of hardened concrete and their eco-efficiency with respect to concretes produced with natural aggregates.

摘要

传统混凝土的生产以及拆除产生的废弃物对环境影响很大。本文评估了用未碳化再生混凝土骨料(RCA)和粉煤灰(FA)制成的混凝土的生态效率。制备了两个混凝土系列,有效水灰比分别为0.50(系列1)和0.40(系列2)。在这两个系列中,使用0%和50%的RCA以及0%、25%和50%的FA来制备混凝土。在分析了这些混凝土的抗压强度、抗碳化性和抗氯化性之后,基于胶凝材料强度和CO2当量强度评估了它们的生态效率。我们发现,与使用天然骨料相比,使用50%的未碳化RCA改善了用FA制备的混凝土的性能。基于抗压、碳化和氯化性能测试,由25%的FA加RCA制成的混凝土被认为是最具生态效率的,其值分别为4.1 kg CO2/m3/MPa、76.3 kg CO2/m3/mm/年和0.079 kg CO2/m3/℃。未碳化的RCA提高了抗碳化性,FA提高了抗氯化性。可以得出结论,与用天然骨料制备的混凝土相比,使用50%的未碳化RCA与FA相结合大大提高了硬化混凝土的性能及其生态效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8df5/8706118/59e0033494cd/materials-14-07499-g001.jpg

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