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Dynamic Life Cycle Assessment: A Review of Research for Temporal Variations in Life Cycle Assessment Studies

加权 生命周期评估 计算机科学 动态能力 领域(数学) 动态数据 数据科学 运筹学 风险分析(工程) 管理科学 工程类 数学 经济 宏观经济学 医学 知识管理 放射科 纯数学 程序设计语言 生产(经济)
作者
Shu Su,Xiaodong Li,Chen Zhu,Yujie Lu,Hyun Woo Lee
出处
期刊:Environmental Engineering Science [Mary Ann Liebert, Inc.]
卷期号:38 (11): 1013-1026 被引量:12
标识
DOI:10.1089/ees.2021.0052
摘要

Life cycle assessment (LCA) is a comprehensive and important environmental management tool around the world. However, lacking temporal information has been a major challenge. In the past decade, dynamic LCA (DLCA), which incorporates temporal variations into assessment, has been an emerging research topic with increasing publications. A timely comprehensive review is needed to present current progress and discuss future directions. This article reviews 144 DLCA articles quantitatively and qualitatively. A bibliometric approach is adopted to conduct co-occurrence analysis and cluster analysis of DLCA studies. The research progress, approaches, and limitations of three temporal variation types (i.e., dynamic life cycle inventory, dynamic characterization factors, and dynamic weighting factors) in DLCA studies are systematically analyzed and discussed. It is concluded that: (1) dynamic inventory analysis is usually conducted by collecting time-differentiated data at each time step. Field monitoring, simulation, scenario analysis, and prediction based on historical data are common approaches. (2) Dynamic characterization studies primarily focus on two impact categories: global warming and toxicity. More studies are in need. (3) Various methods and indicators (i.e., dynamic pollution damage cost, temporal environmental policy targets, and discount rates) are used to solve the dynamic weighting issue, and they have specific limitations. Finally, three interesting topics are discussed: comparison between dynamic and static results, the large data amount issue, and the trend of tools development. This review offers a holistic view on temporal variations in DLCA studies and provides reference and directions for future dynamic studies.
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