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Estimating Construction Project Environmental Effects Using An Input-output-based Hybrid Life-cycle assessment Model

机译:使用基于投入产出的混合生命周期评估模型估算建设项目环境影响

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The design and construction industries have an increasing interest in and responsibility for a building's environmental effects over its entire life cycle. Quantification of all building phases is important in life-cycle assessments (LCAs), especially for the construction phase, which is often disregarded. This research uses an input-output-based LCA framework to create a more comprehensive estimate of the environmental effects of construction processes. The hybrid LCA model is based on Carnegie Mellon University's Economic Input-Output Life Cycle Assessment (EIO-LCA) tool and combines a new EIO-LCA "hybrid" interface with updated and reformulated environmental effect vectors for EIO-LCA's 13 construction sectors. Eight construction project case studies modeled on the input-output (I-O)-based hybrid LCA framework demonstrate the model's broad applicability; gasoline, particulate matter, and global warming potential effects generally increased across all construction sectors and case studies. The I-O-based hybrid LCA model for construction is intended to help decision makers make more informed decisions regarding the construction industry, adding environmental quality and sustainable development as project goals instead of unintentional benefits of economic decisions.
机译:设计和建筑行业对建筑物在整个生命周期中的环境影响越来越感兴趣,并对其负责。在生命周期评估(LCA)中,所有建筑阶段的量化都很重要,尤其是对于建筑阶段而言,这常常被忽略。这项研究使用基于投入产出的LCA框架来对施工过程的环境影响进行更全面的评估。混合LCA模型基于卡内基梅隆大学的经济投入产出生命周期评估(EIO-LCA)工具,并结合了新的EIO-LCA“混合”界面以及针对EIO-LCA的13个建筑行业的更新和重新制定的环境影响向量。以基于输入-输出(I-O)的混合LCA框架为模型的八个建设项目案例研究证明了该模型的广泛适用性;汽油,颗粒物和全球变暖的潜在影响在所有建筑部门和案例研究中普遍增加。用于建筑的基于I-O的混合LCA模型旨在帮助决策者做出有关建筑行业的更明智的决策,将环境质量和可持续发展作为项目目标,而不是经济决策的意外收益。

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