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Mineral resources in life cycle impact assessment: part Ⅱ - recommendations on application-dependent use of existing methods and on future method development needs

机译:生命周期影响评估中的矿产资源:第三部分 - 关于应用依赖性使用现有方法以及未来方法开发需求的建议

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Purpose Assessing impacts of abiotic resource use has been a topic of persistent debate among life cycle impact assessment (LCIA) method developers and a source of confusion for life cycle assessment (LCA) practitioners considering the different interpretations of the safeguard subject for mineral resources and the resulting variety of LCIA methods to choose from. Based on the review and assessment of 27 existing LCIA methods, accomplished in the first part of this paper series (Sonderegger et al. 2020), this paper provides recommendations regarding the application-dependent use of existing methods and areas for future method development. Method Within the "global guidance for LCIA indicators and methods" project of the Life Cycle Initiative hosted by UN Environment, 62 members of the "task force mineral resources" representing different stakeholders discussed the strengths and limitations of existing LCIA methods and developed initial conclusions. These were used by a subgroup of eight members at the Pellston Workshop (R) held in Valencia, Spain, to derive recommendations on the application-dependent use and future development of impact assessment methods. Results and discussion First, the safeguard subject for mineral resources within the area of protection (AoP) natural resources was defined. Subsequently, seven key questions regarding the consequences of mineral resource use were formulated, grouped into "inside-out" related questions (i.e., current resource use leading to changes in opportunities for future users to use resources) and "outside-in" related questions (i.e., potential restrictions of resource availability for current resource users). Existing LCIA methods were assigned to these questions, and seven methods (ADP(ultimate reserves), SOPURR, LIME2(endpoint), CEENE, ADP(economic reserves), ESSENZ, and GeoPolRisk) are recommended for use in current LCA studies at different levels of recommendation. All 27 identified LCIA methods were tested on an LCA case study of an electric vehicle, and yielded divergent results due to their modeling of impact mechanisms that address different questions related to mineral resource use. Besides method-specific recommendations, we recommend that all methods increase the number of minerals covered, regularly update their characterization factors, and consider the inclusion of secondary resources and anthropogenic stocks. Furthermore, the concept of dissipative resource use should be defined and integrated in future method developments. Conclusion In an international consensus-finding process, the current challenges of assessing impacts of resource use in LCA have been addressed by defining the safeguard subject for mineral resources, formulating key questions related to this safeguard subject, recommending existing LCIA methods in relation to these questions, and highlighting areas for future method development.
机译:目的评估非生物资源使用的影响是生命周期影响评估(LCIA)方法开发人员之间持续辩论的主题,以及考虑对矿产资源的保障科目的不同解释和生命周期评估(LCA)从业者的混乱来源导致各种LCIA方法可供选择。根据本文系列第一部分(Sonderegger等人,2020)的审查和评估,在本文的第一部分完成(Sonderegger等,2020),为未来方法开发的现有方法和领域的应用依赖性使用提供了建议。在“全球LCIA指标和方法指导”中的方法中,联合国环境所举办的生命周期倡议的项目,讨论了不同利益相关者的“工作队矿产资源”的62名成员讨论了现有LCIA方法的优势和局限性,并开发了最初的结论。这些八名成员的亚组用于西班牙瓦伦西亚举行的Pellston Workshop(R)的子群体,以推导出关于申请依赖性使用和影响评估方法的未来发展的建议。结果与讨论首先,定义了保护(AOP)自然资源内的矿产资源的保障审查。随后,制定了关于矿产资源使用后果的七个关键问题,分为“内外”相关问题(即,当前的资源,导致未来用户使用资源的机会的变化)和“外部”相关问题(即,对当前资源用户的资源可用性的潜在限制)。已将现有的LCIA方法分配给这些问题,并建议使用七种方法(ADP(终极储备),索s,石灰(经济储备),CEEEE,ADP(经济储备),ESSENSEN和地域),以用于不同级别的当前LCA研究推荐。所有27种确定的LCIA方法都在电动车辆的LCA案例研究中进行了测试,并且由于它们对与矿产资源使用相关的不同问题的影响机制的建模而产生了不同的结果。除了具体的方法,我们建议所有方法增加矿产的数量,定期更新其特征因素,并考虑纳入二级资源和人为股。此外,应在将来的方法开发中定义和整合耗散资源使用的概念。结论在国际共识发现过程中,通过定义矿产资源的保障机构,制定与本保障主题有关的关键问题,推荐与这些问题有关的关键问题,已经解决了评估LCA对LCA的影响的当前挑战。并突出显示未来方法开发的领域。

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