温室气体
生命周期评估
全球变暖
环境科学
全球变暖潜力
辐射压力
化石燃料
时间范围
气候变化
可再生能源
生物燃料
土地利用、土地利用的变化和林业
环境影响评价
环境经济学
土地利用
工程类
生产(经济)
废物管理
数学
经济
土木工程
生态学
数学优化
电气工程
生物
宏观经济学
作者
Annie Levasseur,Pascal Lesage,Manuele Margni,Louise Deschênes,Réjean Samson
摘要
The lack of temporal information is an important limitation of life cycle assessment (LCA). A dynamic LCA approach is proposed to improve the accuracy of LCA by addressing the inconsistency of temporal assessment. This approach consists of first computing a dynamic life cycle inventory (LCI), considering the temporal profile of emissions. Then, time-dependent characterization factors are calculated to assess the dynamic LCI in real-time impact scores for any given time horizon. Although generally applicable to any impact category, this approach is developed here for global warming, based on the radiative forcing concept. This case study demonstrates that the use of global warming potentials for a given time horizon to characterize greenhouse gas emissions leads to an inconsistency between the time frame chosen for the analysis and the time period covered by the LCA results. Dynamic LCA is applied to the US EPA LCA on renewable fuels, which compares the life cycle greenhouse gas emissions of different biofuels with fossil fuels including land-use change emissions. The comparison of the results obtained with both traditional and dynamic LCA approaches shows that the difference can be important enough to change the conclusions on whether or not a biofuel meets some given global warming reduction targets.
科研通智能强力驱动
Strongly Powered by AbleSci AI