LBE, INRA, Montpellier SupAgro, Univ Montpellier, 102 avenue des Etangs, 11100 Narbonne, France; Elsa Research Group, 34060 Montpellier, France.
LBE, INRA, Montpellier SupAgro, Univ Montpellier, 102 avenue des Etangs, 11100 Narbonne, France.
Sci Total Environ. 2018 Apr 15;621:1264-1271. doi: 10.1016/j.scitotenv.2017.10.102. Epub 2017 Oct 19.
Life Cycle Assessment (LCA) characterises all the exchanges between human driven activities and the environment, thus representing a powerful approach for tackling the environmental impact of a production system. However, LCA practitioners must still choose the appropriate Life Cycle Impact Assessment (LCIA) method to use and are expected to justify this choice: impacts should be relevant facing the concerns of the study and misrepresentations should be avoided. This work aids practitioners in evaluating the adequacy between the assessed environmental issues and studied production system. Based on a geometrical standpoint of LCA framework, Life Cycle Inventories (LCIs) and LCIA methods were localized in the vector space spanned by elementary flows. A proximity measurement, the Representativeness Index (RI), is proposed to explore the relationship between those datasets (LCIs and LCIA methods) through an angular distance. RIs highlight LCIA methods that measure issues for which the LCI can be particularly harmful. A high RI indicates a close proximity between a LCI and a LCIA method, and highlights a better representation of the elementary flows by the LCIA method. To illustrate the benefits of the proposed approach, representativeness of LCIA methods regarding four electricity mix production LCIs from the ecoinvent database are presented. RIs for 18 LCIA methods (accounting for a total of 232 impact categories) were calculated on these LCIs and the relevance of the methods are discussed. RIs prove to be a criterion for distinguishing the different LCIA methods and could thus be employed by practitioners for deeper interpretations of LCIA results.
生命周期评估 (LCA) 描述了人类活动与环境之间的所有交换,因此是解决生产系统环境影响的有力方法。然而,LCA 从业者仍必须选择适当的生命周期影响评估 (LCIA) 方法,并期望证明这种选择的合理性:影响应该与研究的关注点相关,避免出现错误表示。这项工作帮助从业者评估评估的环境问题与研究的生产系统之间的充分性。基于 LCA 框架的几何观点,生命周期清单 (LCIs) 和 LCIA 方法在基本流所构成的向量空间中定位。提出了一个接近度度量,即代表性指数 (RI),通过角度距离来探索这些数据集 (LCIs 和 LCIA 方法) 之间的关系。RI 突出了那些测量 LCIs 可能特别有害的问题的 LCIA 方法。高 RI 表示 LCI 和 LCIA 方法之间的接近度,并且突出了 LCIA 方法对基本流的更好表示。为了说明所提出方法的优势,本文展示了针对 ecoinvent 数据库中四个电力混合生产 LCIs 的 LCIA 方法的代表性。对这些 LCIs 计算了 18 种 LCIA 方法(总共涵盖 232 个影响类别)的 RI,并讨论了这些方法的相关性。RI 被证明是区分不同 LCIA 方法的标准,因此从业者可以使用 RI 来更深入地解释 LCIA 结果。