An investigation was done into the development of lightweight-aggregate concrete mixes with lower embodied carbon dioxide emissions suitable for structural applications. Production requires the replacement of normal-weight coarse aggregate with a lightweight aggregate. Lytag was considered, which is a good-quality lightweight aggregate manufactured from fly ash. Lightweight-aggregate concrete for structural applications usually contains a high CEM I content owing to the requirements for workability, pumpability and strength. Consequently, its embodied carbon dioxide emissions are generally higher than that of normal-weight concrete. Mixes of LC30/33 class were developed containing up to 60% ground granulated blast-furnace slag, as well as limestone powder, and their fresh and mechanical properties were assessed experimentally. It was found that the embodied carbon dioxide of the investigated mix could be reduced by up to 40% when compared with that of neat CEM I lightweight-aggregate mixes containing Lytag aggregates and to 20% when compared with that of a mix that would be generally used in current practice in the UK containing 40% slag. It was also possible to reduce the CEM I content in the investigated mixes by approximately 40% compared with what would have been normally used.
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20 April 2022
Research Article|
August 10 2021
Reducing embodied carbon dioxide of structural concrete with lightweight aggregate Available to Purchase
Fragkoulis Kanavaris, MEng (Hons), PhD
;
Advanced Digital Engineering, Arup, London, UK
(corresponding author: frag.kanavaris@arup.com)
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Orlando Gibbons, MEng (Hons);
Orlando Gibbons, MEng (Hons)
Engineer
Building Engineering 3, Arup, London, UK
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Emily Walport, MEng (Hons);
Emily Walport, MEng (Hons)
Senior Engineer, Specialist Technology and Research
Advanced Digital Engineering, Arup, London, UK
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Ed Shearer, MEng (Hons);
Ed Shearer, MEng (Hons)
Associate
Building Engineering 4, Arup, London, UK
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Ali Abbas, BSc (Hons), PhD;
Ali Abbas, BSc (Hons), PhD
Senior Lecturer
Architecture, Computing And Engineering (ACE), University of East London, London, UK
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John Orr, MEng (Hons), PhD;
John Orr, MEng (Hons), PhD
Lecturer
Department of Engineering, University of Cambridge, Cambridge, UK
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Bryan Marsh, BSc (Hons), PhD
Bryan Marsh, BSc (Hons), PhD
Retired, previously Staff
Specialist Technology and Research, Advanced Digital Engineering, Arup, London, UK
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(corresponding author: frag.kanavaris@arup.com)
Publisher: Emerald Publishing
Received:
May 02 2021
Accepted:
July 22 2021
Online ISSN: 1751-7680
Print ISSN: 1478-4629
ICE Publishing: All rights reserved
2022
Proceedings of the Institution of Civil Engineers - Engineering Sustainability (2022) 175 (2): 75–83.
Article history
Received:
May 02 2021
Accepted:
July 22 2021
Citation
Kanavaris F, Gibbons O, Walport E, Shearer E, Abbas A, Orr J, Marsh B (2022), "Reducing embodied carbon dioxide of structural concrete with lightweight aggregate". Proceedings of the Institution of Civil Engineers - Engineering Sustainability, Vol. 175 No. 2 pp. 75–83, doi: https://doi.org/10.1680/jensu.21.00021
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