Knowledge Agora



Similar Articles

Title The FastCarb project: Taking advantage of the accelerated carbonation of recycled concrete aggregates
ID_Doc 21486
Authors Torrenti, JM; Amiri, O; Barnes-Davin, L; Bougrain, F; Braymand, S; Cazacliu, B; Colin, J; Cudeville, A; Dangla, P; Djerbi, A; Doutreleau, M; Feraille, A; Gueguen, M; Guillot, X; Hou, YL; Izoret, L; Jacob, YP; Jeong, J; Hoong, JDLH; Mahieux, PY; Mai-Nhu, J; Martinez, H; Meyer, V; Morin, V; Pernin, T; Potier, JM; Poulizac, L; Rougeau, P; Saadé, M; Schmitt, L; Sedran, T; Sereng, M; Soive, A; Dos Reys, GS; Turcry, P
Title The FastCarb project: Taking advantage of the accelerated carbonation of recycled concrete aggregates
Year 2022
Published
Abstract Recycled concrete aggregates (RCA) incorporate hydrates that can be carbonated. The FastCarb project aims to mineralize CO2 within RCA, improving the quality of these aggregates by the clogging of the porosity and finally decreasing the CO(2 )impact of concrete in structures. It has two main objectives: to optimize in laboratory conditions the accelerated carbonation process which can be transposed at an industrial scale at a suitable cost and to show that the process could be used in industrial conditions. This paper presents firstly the results obtained in laboratory conditions: it confirms that it is possible to store between 10 and 50 kg of CO2/t of RCA depending on several factors (natural carbonation, water content, temperature, size of RCA...) and that the treatment allows an improvement of the properties like the water absorption. The feasibility of accelerated carbonation has been also demonstrated by setting up two industrial-scale demon-strators. The first results without optimization showed a CO2 capture rate in the order of 3-4 %, i. e. 30 kg of CO2 per ton of crushed concrete. 80 t of carbonated RCA were produced and used to produce C25/30 and C45/55 concretes. The measurement of the main properties (performance in the fresh state, mechanical performance, and durability) shows that the use of the carbonated RCA doesn't affect these properties. A variety of precast products (blocks, curbs, stairs) and parts of cast-in-situ structures (construction of walls) were fabricated showing the feasibility of using these aggregates in real situations. Finally, our project considers whether the accelerated carbonation process is environmentally acceptable and economically viable. The first results show that the distance of transport (by trucks) is a major factor and that transportation should be limited to maintain a positive impact of the accelerated carbonation (i.e. local sources of CO2 should be used). The LCA and the economic study confirm that the sand fraction of RCA is the most interesting material for the uptake of CO2. This is also interesting for a circular economy objective because recycled concrete sand is not easily used in concrete made with RCA.
PDF https://doi.org/10.1016/j.cscm.2022.e01349

Similar Articles

ID Score Article
25509 Bergmans, J; Kamyab, HK; Ghosh, D; Van Mierloo, P; Carens, H; Nielsen, P Carbonation of Recycled Concrete Aggregates for New Concrete and Concrete Fines to Make Cement-Free Hollow Blocks(2024)Sustainability, 16, 8
19000 Duendar, B; Tugluca, MS; Ilcan, H; Sahin, O; Sahmaran, M The effects of various operational- and materials-oriented parameters on the carbonation performance of low-quality recycled concrete aggregate(2023)
9698 Merino-Lechuga, AM; González-Caro, A; Fernández-Ledesma, E; Jiménez, JR; Fernández-Rodríguez, JM; Suescum-Morales, D Accelerated Carbonation of Vibro-Compacted Porous Concrete for Eco-Friendly Precast Elements(2023)Materials, 16.0, 8
8948 Pico-Cortés, C; Villagrán-Zaccardi, Y Unraveling the Interplay of Physical-Chemical Factors Impacting the Carbonation Performance of Recycled Aggregate Concrete(2023)Materials, 16.0, 16
6564 Borges, PM; Schiavon, JZ; da Silva, SR; Rigo, E; Neves, A; Possan, E; Andrade, JJD Mortars with recycled aggregate of construction and demolition waste: Mechanical properties and carbon uptake(2023)
4001 Cerchione, R; Colangelo, F; Farina, I; Ghisellini, P; Passaro, R; Ulgiati, S Life Cycle Assessment of Concrete Production within a Circular Economy Perspective(2023)Sustainability, 15, 14
19784 Zhang, N; Xi, B; Li, JB; Liu, L; Song, GH Utilization of CO2 into recycled construction materials: A systematic literature review(2022)Journal Of Material Cycles And Waste Management, 24.0, 6
17231 Xiao, JZ; Zhang, HH; Tang, YX; Lu, ZY; Ye, TH; Duan, ZH; Sui, TB; Xiao, XW Principles for waste concrete recycling and basic problems of recycled concrete(2023)Chinese Science Bulletin-Chinese, 68, 5
14772 Los Santos-Ortega, J; Fraile-Garcia, E; Ferreiro-Cabello, J Environmental and Economic Viability of Using Concrete Block Wastes from a Concrete Production Plant as Recycled Coarse Aggregates(2024)Materials, 17, 7
24773 Yu, Y; Pacheco-Torgal, F; Zhao, XY; Wang, XL Cleaner production of the precast concrete industry: comparative life cycle analysis of concrete using recycled aggregates from crushed precast rejects(2024)European Journal Of Environmental And Civil Engineering, 28, 5
Scroll