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首页> 外文期刊>The International Journal of Life Cycle Assessment >Top-down characterization of resource use in LCA: from problem definition of resource use to operational characterization factors for dissipation of elements to the environment
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Top-down characterization of resource use in LCA: from problem definition of resource use to operational characterization factors for dissipation of elements to the environment

机译:LCA中资源使用的自上而下表征:从资源使用的问题定义来运行表征因子,以消散元素到环境

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Purpose The methods for assessing the impact of using abiotic resources in life cycle assessment (LCA) have always been heavily debated. One of the main reasons for this is the lack of a common understanding of the problem related to resource use. This article reports the results of an effort to reach such common understanding between different stakeholder groups and the LCA community. For this, a top-down approach was applied. Methods To guide the process, a four-level top-down framework was used to (1) demarcate the problem that needs to be assessed, (2) translate this into a modeling concept, (3) derive mathematical equations and fill these with data necessary to calculate the characterization factors, and (4) align the system boundaries and assumptions that are made in the life cycle impact assessment (LCIA) model and the life cycle inventory (LCI) model. Results We started from the followingdefinition of the problemof using resources: the decrease of accessibility on a global level of primary and/or secondary elements over the very long term or short term due to thenetresult of compromising actions. Thesystem modeldistinguishes accessible and inaccessible stocks in both the environment and the technosphere. Human actions can compromise the accessible stock through environmental dissipation, technosphere hibernation, and occupation in use or through exploration. As abasis for impact assessment, we propose two parameters: the global change in accessible stock as a net result of the compromising actions and the global amount of the accessible stock. We propose three impact categories for the use of elements: environmental dissipation, technosphere hibernation, and occupation in use, with associated characterization equations for two different time horizons. Finally, preliminary characterization factors are derived and applied in a simple illustrative case study for environmental dissipation. Conclusions Due to data constraints, at this moment, only characterization factors for "dissipation to the environment" over a very-long-term time horizon could be elaborated. The case study shows that the calculation of impact scores might be hampered by insufficient LCI data. Most presently available LCI databases are far from complete in registering the flows necessary to assess the impacts on the accessibility of elements. While applying the framework, various choices are made that could plausibly be made differently. We invite our peers to also use this top-down framework when challenging our choices and elaborate that into a consistent set of choices and assumptions when developing LCIA methods.
机译:目的,评估使用生命周期评估中非生物资源的影响的方法一直争论。其中一个主要原因之一是缺乏对与资源使用相关的问题的共同理解。本文报告了努力在不同利益相关者团体和LCA社区之间达到这种共识的结果。为此,应用了自上而下的方法。指导过程的方法,使用四级自上而下的框架(1)划分需要评估的问题,(2)将其转换为建模概念,(3)派生数学方程并用数据填充这些问题计算表征因子的必要条件,(4)对齐在生命周期影响评估(LCIA)模型和生命周期库存(LCI)模型中进行的系统边界和假设。结果我们开始使用资源的问题的以下内容:由于损害行动的损失,在非常长期或短期内的全球初级和/或次要元素水平的可访问性降低。在环境和技术层面的系统和技术层面都有可访问和无法访问的股票。人类行为可以通过环境耗散,技术休眠和职业或通过探索来损害可访问的库存。作为影响评估的ABASIS,我们提出了两个参数:可访问库存的全球变化为妥协行动的净导致和全球可访问股票。我们提出了三种影响因素,用于使用元素:环境耗散,技术圈冬眠和使用职业,具有两个不同时间视野的相关表征方程。最后,初步表征因子是衍生和应用的环境耗散的简单说明性研究。结论由于数据限制,此时,只有在一个非常长期的时间范围内,只能阐述“耗散环境”的表征因素。案例研究表明,撞击分数的计算可能因LCI数据不足而受到阻碍。最具目前的LCI数据库远非完全在注册评估对元素可访问性的影响所需的流程中。在应用框架的同时,使各种选择可以符合不同的选择。我们邀请我们的同行在挑战我们的选择并在开发LCIA方法时将其详细阐述为一系列一致的选择和假设时,我们的同行也可以使用这种自上而下的框架。

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