ReCiPe2016: a harmonised life cycle impact assessment method at midpoint and endpoint level

影响评估 生命周期评估 环境科学 环境资源管理 环境影响评价 比例(比率) 资源(消歧) 基线(sea) 环境经济学 环境规划 计算机科学 地理 生态学 经济 计算机网络 海洋学 地图学 公共行政 生产(经济) 生物 地质学 政治学 宏观经济学
作者
Mark A. J. Huijbregts,Zoran J. N. Steinmann,Pieter M. F. Elshout,Gea Stam,Francesca Verones,Marisa Vieira,Michiel C. Zijp,Anne Hollander,Rosalie van Zelm
出处
期刊:International Journal of Life Cycle Assessment [Springer Nature]
卷期号:22 (2): 138-147 被引量:2686
标识
DOI:10.1007/s11367-016-1246-y
摘要

Life cycle impact assessment (LCIA) translates emissions and resource extractions into a limited number of environmental impact scores by means of so-called characterisation factors. There are two mainstream ways to derive characterisation factors, i.e. at midpoint level and at endpoint level. To further progress LCIA method development, we updated the ReCiPe2008 method to its version of 2016. This paper provides an overview of the key elements of the ReCiPe2016 method. We implemented human health, ecosystem quality and resource scarcity as three areas of protection. Endpoint characterisation factors, directly related to the areas of protection, were derived from midpoint characterisation factors with a constant mid-to-endpoint factor per impact category. We included 17 midpoint impact categories. The update of ReCiPe provides characterisation factors that are representative for the global scale instead of the European scale, while maintaining the possibility for a number of impact categories to implement characterisation factors at a country and continental scale. We also expanded the number of environmental interventions and added impacts of water use on human health, impacts of water use and climate change on freshwater ecosystems and impacts of water use and tropospheric ozone formation on terrestrial ecosystems as novel damage pathways. Although significant effort has been put into the update of ReCiPe, there is still major improvement potential in the way impact pathways are modelled. Further improvements relate to a regionalisation of more impact categories, moving from local to global species extinction and adding more impact pathways. Life cycle impact assessment is a fast evolving field of research. ReCiPe2016 provides a state-of-the-art method to convert life cycle inventories to a limited number of life cycle impact scores on midpoint and endpoint level.
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