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A system boundary identification method for life cycle assessment

机译:一种生命周期评估的系统边界识别方法

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Purpose Life cycle assessment (LCA) is a useful tool for quantifying the overall environmental impacts of a product, process, or service. The scientific scope and boundary definition are important to ensure the accuracy of LCA results. Defining the boundary in LCA is difficult and there are no commonly accepted scientific methods yet. The objective of this research is to present a comprehensive discussion of system boundaries in LCA and to develop an appropriate boundary delimitation method. Methods A product system is partitioned into the primary system and interrelated subsystems. The hierarchical relationship of flow and process is clarified by introducing flow- and process-related interventions. A system boundary curve model of the LCA is developed and the threshold rules for judging whether the system boundary satisfies the research requirement are proposed. Quantitative criteria from environmental, technical, geographical and temporal dimensions are presented to limit the boundaries of LCA. An algorithm is developed to identify an appropriate boundary by searching the process tree and evaluating the environmental impact contribution of each process while it is added into the studied system. Results and discussion The difference between a limited system and a theoretically complete system is presented. A case study is conducted on a color TV set to demonstrate and validate the method of boundary identification. The results showed that the overall environmental impact indicator exhibits a slow growth after a certain number of processes considered, and the gradient of the fitting curve trends to zero gradually. According to the threshold rules, a relatively accurate system boundary could be obtained. Conclusions It is found from this research that the system boundary curve describes the growth of life cycle impact assessment (LCIA) results as processes are added. The two threshold rules and identification methods presented can be used to identify system boundary of LCA. The case study demonstrated that the methodology presented in this paper is an effective tool for the boundary identification.
机译:目的生命周期评估(LCA)是用于量化产品,过程或服务的整体环境影响的有用工具。科学的范围和边界定义对于确保LCA结果的准确性非常重要。在LCA中定义边界是困难的,并且还没有公认的科学方法。这项研究的目的是对LCA中的系统边界进行全面的讨论,并开发一种合适的边界定界方法。方法产品系统分为主系统和相关子系统。通过引入与流程和流程相关的干预措施,可以明确流程与流程的层次关系。建立了LCA的系统边界曲线模型,提出了判断系统边界是否满足研究要求的阈值规则。提出了从环境,技术,地理和时间维度的定量标准,以限制LCA的范围。开发了一种算法,通过搜索过程树并评估将每个过程添加到所研究系统中时对环境的影响来确定合适的边界。结果与讨论介绍了有限系统和理论上完整的系统之间的区别。在彩色电视机上进行了案例研究,以演示和验证边界识别方法。结果表明,在考虑了一定数量的过程后,总体环境影响指标显示出缓慢的增长,并且拟合曲线的斜率逐渐趋于零。根据阈值规则,可以获得相对准确的系统边界。结论从这项研究中发现,系统边界曲线描述了随着过程的增加,生命周期影响评估(LCIA)结果的增长。提出的两种阈值规则和识别方法可用于识别LCA的系统边界。案例研究表明,本文提出的方法是边界识别的有效工具。

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    School of Mechanical Engineering, Dalian University of Technology, No. Linggong Road, Ganjingzi District, Dalian, Liaoning 116023, People's Republic of China;

    School of Mechanical Engineering, Dalian University of Technology, No. Linggong Road, Ganjingzi District, Dalian, Liaoning 116023, People's Republic of China,Department of Industrial Engineering, Texas Tech University, Lubbock, TX, USA;

    School of Mechanical Engineering, Dalian University of Technology, No. Linggong Road, Ganjingzi District, Dalian, Liaoning 116023, People's Republic of China;

    School of Mechanical and Automotive Engineering, Hefei University of Technology, Hefei, Anhui, China;

    Department of Manufacturing Engineering and Management, Technical University of Denmark, Copenhagen, Denmark;

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  • 正文语种 eng
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  • 关键词

    Life cycle assessment; Process tree; Search algorithm; System boundary; Threshold rule;

    机译:生命周期评估;流程树;搜索算法;系统边界;阈值规则;

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