首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Analysis of current research addressing complementary use of life-cycle assessment and risk assessment for engineered nanomaterials: Have lessons been learned from previous experience with chemicals?
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Analysis of current research addressing complementary use of life-cycle assessment and risk assessment for engineered nanomaterials: Have lessons been learned from previous experience with chemicals?

机译:分析针对生命周期评估和风险评估对工程纳米材料的互补使用的当前研究的分析:是否从以前的化学经验中吸取了教训?

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While it is generally agreed that successful strategies to address the health and environmental impacts of engineered nanomaterials (NM) should consider the well-established frameworks for conducting life-cycle assessment (LCA) and risk assessment (RA), scientific research, and specific guidance on how to practically apply these methods are still very much under development. This paper evaluates how research efforts have applied LCA and RA together for NM, particularly reflecting on previous experiences with applying these methods to chemicals. Through a literature review and a separate analysis of research focused on applying LCA and RA together for NM, it appears that current research efforts have taken into account some key "lessons learned" from previous experience with chemicals while many key challenges remain for practically applying these methods to NM. We identified two main approaches for using these methods together for NM: "LC-based RA" (traditional RA applied in a life-cycle perspective) and "RA-complemented LCA" (conventional LCA supplemented by RA in specific life-cycle steps). Hence, the latter is the only identified approach which genuinely combines LC- and RA-based methods for NM-risk research efforts to date as the former is rather a continuation of normal RA according to standard assessment procedures (e.g., REACH). Both these approaches along with recommendations for using LCA and RA together for NM are similar to those made previously for chemicals, and thus, there does not appear to be much progress made specific for NM. We have identified one issue in particular that may be specific for NM when applying LCA and RA at this time: the need to establish proper dose metrics within both methods.
机译:虽然人们普遍认为,解决工程化纳米材料(NM)对健康和环境影响的成功策略应考虑进行生命周期评估(LCA)和风险评估(RA)的完善框架,科学研究和具体指南关于如何实际应用这些方法的研究仍非常多。本文评估了研究工作如何将LCA和RA一起应用于NM,特别是回顾了以前将这些方法应用于化学药品的经验。通过文献综述和针对将LCA和RA一起应用于NM的研究的单独分析,看来当前的研究工作已经考虑到了从以前的化学经验中获得的一些关键“经验教训”,而实际应用这些过程中仍然存在许多关键挑战NM的方法。我们确定了将这些方法一起用于NM的两种主要方法:“基于LC的RA”(在生命周期中应用的传统RA)和“ RA补充的LCA”(在特定的生命周期步骤中由RA补充的常规LCA) 。因此,后者是迄今为止唯一能够真正将基于LC和RA的方法结合起来用于NM风险研究工作的方法,因为根据标准评估程序(例如REACH),前者是正常RA的延续。这两种方法以及将LCA和RA一起用于NM的建议与以前对化学药品的建议相似,因此,针对NM的进展似乎并不多。我们已经确定了一个问题,尤其是在此时应用LCA和RA时,可能特定于NM:在两种方法中都需要建立适当的剂量指标。

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