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End-of-life LCA allocation methods: open loop recycling impacts on robustness of material selection decisions

机译:寿命结束LCA分配方法:开环回收对材料选择决策的鲁棒性的影响

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Materials selection decisions exhibit great influence on the environmental performance of firms through their impact on processing technology, product form, and supply chain configuration. Consequently, materials dictate a product's environmental profile via the burden associated with extraction and refining, transformation from material to product, product performance characteristics during use, and potential recovery at end-of-life (EOL). While lifecycle assessment (LCA) methods provide quantitative input to a product designer's materials selection decision, LCA implementations are evolving and disparate. This work explores several analytical variations of LCA related to the allocation of recycling impacts at product EOL and the implications of these variants across a range of contexts. Stylized analyses across a range of materials are presented, focusing on materials with varying primary and secondary materials production burdens. This work illustrates that a) the application of distinct EOL allocation methods give different values of cumulative environmental impact for the same material, b) these impacts change at differing rates between the various methods, and c) these disparities can result in different rank ordering of materials preference. Characterizing this behavior over a range of parameters illustrates the potential trends in allocation method bias for or against particular materials classes.
机译:材料选择决策对公司的环境绩效产生了很大影响,通过对加工技术,产品形式和供应链配置的影响。因此,材料通过与提取和精炼的负担,从材料转化为产品,在使用期间的产品性能特征以及寿命结束时(EOL)的潜在恢复来规定了产品的环境概况。虽然生命周期评估(LCA)方法为产品设计器的材料选择决策提供定量输入,但LCA实现正在不断发展和不同。这项工作探讨了与产品EOL中的回收影响分配有关的LCA的几种分析变化以及这些变体在一系列背景下的影响。展示了各种材料的程式化分析,专注于具有不同初级和二级材料生产负担的材料。这项工作说明了A)不同的EOL分配方法的应用给出了相同材料的累积环境影响的不同值,B)这些影响在各种方法和C之间的不同速率变化,C)这些差异可能导致不同的等级排序材料偏好。在一系列参数上表征该行为示出了用于特定材料类的分配方法偏差的潜在趋势。

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