Knowledge Agora



Similar Articles

Title Effect of Concrete Mix Composition on Greenhouse Gas Emissions over the Full Life Cycle of a Structure
ID_Doc 25807
Authors Walach, D; Mach, A
Title Effect of Concrete Mix Composition on Greenhouse Gas Emissions over the Full Life Cycle of a Structure
Year 2023
Published Energies, 16, 7
Abstract As the need to determine and monitor carbon footprints (CFs) in the construction industry grows and given that concrete is a key construction material in this sector, the authors of the article conducted a carbon footprint analysis of 15 different concrete mixtures. The method for determining the carbon footprint of the entire life cycle of concrete was presented in detail. The authors conducted a comparative analysis of the CF for an example structure made of three significantly different concrete strength classes, in addition to determining the CF for 1 m(3) of concrete mix. This analysis showed the need to consider the entire structure and the emissivity associated with the consumption of reinforcing steel when selecting the most favorable solution in terms of greenhouse gas (GHG) emissions. The study revealed that the composition of the concrete mix, primarily the type and amount of cement, has the greatest influence on the carbon footprint. Furthermore, the location and geometry of the structure, as well as the number of floors, should also be taken into account when selecting concrete. In the analyzed construction, the life-cycle phases related to the incorporation of the concrete mixture at the construction site (phases A4-A5) and those related to the demolition of the concrete at the end of its life cycle (phases C1-C4) constituted approximately 10% on average of the total value of CF emissions over the entire concrete life cycle.
PDF

Similar Articles

ID Score Article
69569 Kim, T; Chae, CU Evaluation Analysis of the CO2 Emission and Absorption Life Cycle for Precast Concrete in Korea(2016)Sustainability, 8.0, 7
29132 Kasuga, A Impact of carbon neutrality on structural concrete-Not a risk but an opportunity(2023)Structural Concrete, 24.0, 2
24272 Hertel, M; Rempel, S Evaluation of new concrete regarding the load-bearing behavior and the greenhouse gas reduction in the manufacturing process(2023)Beton- Und Stahlbetonbau, 118, 1
17362 Backes, JG; Del Rosario, P; Petrosa, D; Traverso, M; Hatzfeld, T; Günther, E Building Sector Issues in about 100 Years: End-Of-Life Scenarios of Carbon-Reinforced Concrete Presented in the Context of a Life Cycle Assessment, Focusing the Carbon Footprint(2022)Processes, 10, 9
13962 Zhang, XH; Wu, ZM; Xie, J; Hu, X; Shi, CJ Trends toward lower-carbon ultra-high performance concrete (UHPC) - A review(2024)
15452 Moreno-Juez, J; Vegas, IJ; Gebremariam, AT; Garcia-Cortes, V; Di Maio, F Treatment of end-of-life concrete in an innovative heating-air classification system for circular cement-based products(2020)
27086 Sudarsan, JS; Vaishampayan, S; Parija, P Making a case for sustainable building materials to promote carbon neutrality in Indian scenario(2022)Clean Technologies And Environmental Policy, 24.0, 5
29376 Hanuseac, L; Dumitrescu, L; Barbuta, M; Baran, I; Bejan, G Eco-Mechanical Index of Lightweight Concrete Mixtures with Recycled Materials(2020)
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
22102 Dervishaj, A; Malmqvist, T; Silfwerbrand, J; Gudmundsson, K A digital workflow for assessing lifespan, carbonation, and embodied carbon of reusing concrete in buildings(2024)
Scroll