Investigating the Effects of Concrete Mix Design on the Environmental Impacts of Reinforced Concrete Structures

Author:

Mostafaei Hasan1ORCID,Badarloo Baitollah2ORCID,Chamasemani Niyousha Fallah3ORCID,Rostampour Muhammad Ali4ORCID,Lehner Petr5ORCID

Affiliation:

1. School of Civil and Environmental Engineering, University of Technology Sydney, Sydney, NSW 2007, Australia

2. Department of Civil Engineering, Qom University of Technology (QUT), Qom 37181-46645, Iran

3. Department of Civil and Environmental Engineering, Politecnico di Milano, 20133 Milan, Italy

4. Department of Civil Engineering, Isfahan University of Technology (IUT), Isfahan 84156-83111, Iran

5. Faculty of Civil Engineering, Department of Structural Mechanics, VSB-Technical University of Ostrava, Ludvíka Podéště 1875/17, 708 33 Ostrava-Poruba, Czech Republic

Abstract

This study examines the impact of mix design parameters on the environmental effects of producing concrete and reinforced concrete buildings by conducting a life cycle assessment (LCA) and carbon footprint analysis (CFA). The study is limited to the cradle-to-gate phase, including the extraction and production of raw materials for concrete production, as well as concrete and rebar production, material transportation, and delivery to the construction site for reinforced concrete structures. Three concrete mix designs based on the American Concrete Institute (ACI) 211-09 standard, with compressive strengths of 20, 30, and 40 MPa, were analyzed. The results indicate that cement was the primary contributor to environmental impacts, accounting for approximately 90% of the carbon footprint. Sand, gravel, and admixtures followed cement in their impact on LCA results. Water usage in concrete production had a negligible effect on LCA indicators. Moreover, to determine how mix design parameters impact the carbon footprint of reinforced concrete buildings, three four-story structures were designed. The results show that in reinforced concrete buildings, concrete was a significant contributor to environmental impacts, accounting for over 50% of all indicators in the IMPACT 2002+ and CML baseline 2000 methods, except for resources and acidification. The study underscores the importance of considering mix design parameters in reducing the carbon footprint of reinforced concrete buildings and provides valuable insights into their environmental impacts. The findings indicate that cement is the main driver of environmental impacts in both assessment methods, accounting for around 90% of the carbon footprint. Additionally, concrete plays a substantial role in environmental effects, contributing to over 50% of all indicators measured in the methods used for evaluating environmental impacts.

Funder

Ministry of Education Youth and Sports

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

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