Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
This chapter will describe embodied carbon and some of the challenges driving the need for a standardised approach.
• Definition of embodied carbon and some of the issues surrounding the extent and limit of its scope
• Impact of zero‐carbon regulations on the embodied carbon within buildings;
• Approaches to reduce embodied carbon within buildings.
• Embodied carbon forms the significant part of low‐operational assets such as infrastructure and stadiums;
• Voluntary means and legislation will be in place to reduce the embodied carbon of buildings;
• To properly assess the true embodied‐carbon impact of a material, a life‐ cycle view must be taken
This chapter will describe embodied carbon and some of the challenges driving the need for a standardised approach.
• Definition of embodied carbon and some of the issues surrounding the extent and limit of its scope
• Impact of zero‐carbon regulations on the embodied carbon within buildings;
• Approaches to reduce embodied carbon within buildings.
• Embodied carbon forms the significant part of low‐operational assets such as infrastructure and stadiums;
• Voluntary means and legislation will be in place to reduce the embodied carbon of buildings;
• To properly assess the true embodied‐carbon impact of a material, a life‐ cycle view must be taken
Embodied Carbon
Shah, Sunil (Autor:in)
Sustainable Refurbishment ; 186-214
05.09.2012
29 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
Sustainability of Building Materials: Embodied Energy and Embodied Carbon of Masonry
BASE | 2023
|Embodied and Operational Carbon Emission
Springer Verlag | 2024
|BUILDING TOWARD ZERO EMBODIED CARBON
TIBKAT | 2023
|