Mass timber buildings are gaining momentum, as they are seen as an environ- mental alternative to conventional concrete and steel structures, and they are also being used for mid- and high-rise buildings. This study conducted a comparative LCA analysis of 20- and 40-story building structures made with different combinations of steel and mass timber. The results show that, even disregarding the environmental benefits of the sequestered biogenic carbon by using a 0/0 approach, timber-based structures result in a roughly 25% lower Global Warming Potential (GWP) impact than steel- or hybrid-based equivalent solutions. The results show that the contribution of steel does not bring any GWP advantage (an average increase of 20% is reported); however, steel–timber hybrid structures may still be the only viable solution to attain greater heights. This study also evidences that materials with lower GWP in their production phase can present a viable solution even when long transportation is required, highlighting the importance of the production phase to reach environmental targets.

Steel-timber hybrid buildings: a comparative life cycle assessment study of global warming potential impacts

Dario Trabucco
;
Giovanni Perrucci
2025-01-01

Abstract

Mass timber buildings are gaining momentum, as they are seen as an environ- mental alternative to conventional concrete and steel structures, and they are also being used for mid- and high-rise buildings. This study conducted a comparative LCA analysis of 20- and 40-story building structures made with different combinations of steel and mass timber. The results show that, even disregarding the environmental benefits of the sequestered biogenic carbon by using a 0/0 approach, timber-based structures result in a roughly 25% lower Global Warming Potential (GWP) impact than steel- or hybrid-based equivalent solutions. The results show that the contribution of steel does not bring any GWP advantage (an average increase of 20% is reported); however, steel–timber hybrid structures may still be the only viable solution to attain greater heights. This study also evidences that materials with lower GWP in their production phase can present a viable solution even when long transportation is required, highlighting the importance of the production phase to reach environmental targets.
2025
Inglese
17
2
25
Internazionale
https://www.mdpi.com/2071-1050/17/2/718
Esperti anonimi
tall buildings; steel-timber; LCA; life cycle assessment; GWP; embodied carbon
open
1. Contributo su Rivista::1.1 Articolo su Rivista
info:eu-repo/semantics/article
262
Trabucco, Dario; Perrucci, Giovanni
2
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11578/357169
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