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Addressment of Uncertainty and Variability in Attributional Environmental Life Cycle Assessment.

机译:解决归因环境生命周期评估中的不确定性和可变性。

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摘要

'Attributional' Life Cycle Assessment (LCA) quantitatively tracks the potential environmental impacts of international value chains, in retrospective, while ensuring that burden shifting is avoided. Despite the growing popularity of LCA as a decision-support tool, there are numerous concerns relating to uncertainty and variability in LCA that affects its reliability and credibility. It is pertinent that some part of future research in LCA be guided towards increasing reliability and credibility for decision-making, while utilizing the LCA framework established by ISO 14040.;In this dissertation, I have synthesized the present state of knowledge and application of uncertainty and variability in 'attributional' LCA, and contribute to its quantitative assessment.;Firstly, the present state of addressment of uncertainty and variability in LCA is consolidated and reviewed. It is evident that sources of uncertainty and variability exist in the following areas: ISO standards, supplementary guides, software tools, life cycle inventory (LCI) databases, all four methodological phases of LCA, and use of LCA information. One source of uncertainty and variability, each, is identified, selected, quantified, and its implications discussed.;The use of surrogate LCI data in lieu of missing dataset(s) or data-gaps is a source of uncertainty. Despite the widespread use of surrogate data, there has been no effort to (1) establish any form of guidance for the appropriate selection of surrogate data and, (2) estimate the uncertainty associated with the choice and use of surrogate data. A formal expert elicitation-based methodology to select the most appropriate surrogates and to quantify the associated uncertainty was proposed and implemented.;Product-evolution in a non-uniform manner is a source of temporal variability that is presently not considered in LCA modeling. The resulting use of outdated LCA information will lead to misguided decisions affecting the issue at concern and eventually the environment. In order to demonstrate product-evolution within the scope of ISO 14044, and given that variability cannot be reduced, the sources of product-evolution were identified, generalized, analyzed and their implications (individual and coupled) on LCA results are quantified.;Finally, recommendations were provided for the advancement of robustness of 'attributional' LCA, with respect to uncertainty and variability.
机译:追溯性的“归因”生命周期评估(LCA)定量跟踪国际价值链的潜在环境影响,同时确保避免负担转移。尽管LCA作为决策支持工具越来越受欢迎,但仍存在许多与LCA的不确定性和可变性相关的问题,这些问题会影响LCA的可靠性和可信度。与此相关的是,在利用ISO 14040建立的LCA框架的同时,LCA的未来研究的某些部分将被引导用于提高决策的可靠性和可信度。在本文中,我综合了知识的现状和不确定性的应用“归因” LCA中的不确定性和可变性,并有助于其定量评估。首先,对LCA中不确定性和可变性的解决现状进行了评估。显然,不确定性和可变性的来源存在于以下领域:ISO标准,补充指南,软件工具,生命周期清单(LCI)数据库,LCA的所有四个方法学阶段以及LCA信息的使用。确定,选择,量化每个不确定性和可变性的来源,并讨论其含义。使用替代LCI数据代替丢失的数据集或数据空白是不确定性的来源。尽管替代数据的广泛使用,但没有做出任何努力(1)为适当选择替代数据建立任何形式的指导,以及(2)估计与替代数据的选择和使用相关的不确定性。提出并实施了一种基于专家启发的形式化方法,以选择最合适的替代物并量化相关的不确定性。非均匀方式的产品演化是时间变异性的来源,目前在LCA建模中并未考虑。过时的LCA信息的使用结果将导致错误的决策,从而影响所关注的问题,并最终影响环境。为了证明产品演化在ISO 14044的范围内,并且鉴于无法减少变异性,对产品演化的来源进行了识别,概括,分析,并对它们对LCA结果的影响(单独和耦合)进行了量化。在不确定性和可变性方面,提供了一些建议以提高“归因” LCA的鲁棒性。

著录项

  • 作者

    Subramanian, Vairavan.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Sustainability.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 295 p.
  • 总页数 295
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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