Assessing the carbon footprint of bridges and a strategy to deliver carbon reductions

Author:

Chalk Philip1,Stevenson Joe1

Affiliation:

1. Mott MacDonald, London, UK

Abstract

<p>As actions to tackle the impacts of the climate emergency start to gain traction across the industry and beyond, reduction of carbon in bridges should be front of mind for bridge engineers. Understanding the impacts of our design and construction work is essential to make meaningful reductions to the carbon footprint of our structures. The whole life carbon of a bridge is known to significantly differ from that of a building structure. A gap in this knowledge was identified across the industry throughout the design, construction and operation life cycle stages. This paper reports on the journey that was undertaken by Mott MacDonald and how this, along with the learning from other consultants helped shape industry-wide guidance via the Net Zero Bridges Group. This work enables whole-life carbon reductions in bridges to be integral to all our projects throughout all lifecycle stages.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference18 articles.

1. Royal Institution of Chartered Surveyors (RICS). Whole life carbon assessment for the built environment. London: RICS; 2nd edition; 2023.

2. British Standards Institution. PAS 2080:2023. Carbon management in buildings and infrastructure. London: BSI, 2023.

3. British Standards Institution. BS EN 17472:2022 Sustainability of construction works. Sustainability assessment of civil engineering works. Calculation methods. London: BSI; 2022

4. Circular ecology. The Inventory of Carbon and Energy (The ICE Database). 2020. Available from: https://circularecology.com/embodied-carbon-footprint-database.html [Accessed: November 2023].

5. Net Zero Bridges Group. Carbon Calculation Guide for Bridges. Available from: https://www.netzerobridges.org/library [Accessed: November 2023].

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