Abstract

Life cycle assessment (LCA) is increasingly being used as a tool by the building industry and actors to assess the global warming potential (GWP) of building activities. In several countries, life cycle based requirements on GWP are currently being incorporated into building regulations. After the establishment of general calculation rules for building LCA, a crucial next step is to evaluate the performance of the specific building design. For this, reference values or benchmarks are needed, but there are several approaches to defining these. This study presents an overview of existing benchmark systems documented in seventeen cases from the IEA EBC Annex 72 project on LCA of buildings. The study characterizes their different types of methodological background and displays the reported values. Full life cycle target values for residential and non-residential buildings are found around 10-20 kg CO2e/m2/y, whereas reference values are found between 20-80 kg CO2e/m2/y. Possible embodied target- and reference values are found between 1-12 kg CO2e/m2/y for both residential and non-residential buildings. Benchmark stakeholders can use the insights from this study to understand the justifications of the background methodological choices and to gain an overview of the level of GWP performance across benchmark systems.

Details

Title
Existing benchmark systems for assessing global warming potential of buildings – Analysis of IEA EBC Annex 72 cases
Author
Rasmussen, F N 1 ; D Trigaux 2 ; Alsema, E 3 ; Balouktsi, M 4 ; Birgisdóttir, H 1 ; Bohne, R 5 ; Dixit, M 6 ; Dowdell, D 7 ; Francart, N 8 ; Frischknecht, R 9 ; Foliente, G 10 ; Lupisek, A 11 ; Lützkendorf, T 4 ; Malmqvist, T 8 ; A Garcia Martinez 12 ; Ouellet-Plamondon, C 13 ; Passer, A 14 ; Peuportier, B 15 ; Ramseier, L 9 ; Satola, D 5 ; Seo, S 10 ; Szalay, Z 16 ; Wiik, M 17 

 Aalborg University 
 EnergyVille/KU Leuven/VITO 
 W/E Consultants 
 Karlsruhe Institute of Technology 
 Norwegian University of Science and Technology 
 Texas A&M University 
 BRANZ 
 KTH Royal Institute of Technology 
 treeze Ltd. 
10  University of Melbourne 
11  Czech Technical University in Prague 
12  Universidad de Sevilla 
13  École de technologie supérieure 
14  Graz University of Technology 
15  MINES ParisTech 
16  Budapest University of Technology and Economics 
17  SINTEF 
First page
012054
Publication year
2022
Publication date
Sep 2022
Publisher
IOP Publishing
ISSN
17551307
e-ISSN
17551315
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2714742697
Copyright
Published under licence by IOP Publishing Ltd. This work is published under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.