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首页> 外文期刊>The International Journal of Life Cycle Assessment >Usetox-the Unep-setac Toxicity Model: Recommended Characterisation Factors For Human Toxicity And Freshwater Ecotoxicity In Life Cycle Impact Assessment
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Usetox-the Unep-setac Toxicity Model: Recommended Characterisation Factors For Human Toxicity And Freshwater Ecotoxicity In Life Cycle Impact Assessment

机译:Usetox-unep-setac毒性模型:生命周期影响评估中人类毒性和淡水生态毒性的推荐特征因子

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Materials and methods A chemical test set of 45 organics covering a wide range of property combinations was selected for this purpose. All models used this set. In three workshops, the model comparison participants identified key fate, exposure and effect issues via comparison of the final characterisation factors and selected intermediate outputs for fate, human exposure and toxic effects for the test set applied to all models. Results Through this process, we were able to reduce inter-model variation from an initial range of up to 13 orders of magnitude down to no more than two orders of magnitude for any substance. This led to the development of USEtox, a scientific consensus model that contains only the most influential model elements. These were, for example, process formulations accounting for intermittent rain, defining a closed or open system environment or nesting an urban box in a continental box. Discussion The precision of the new characterisation factors (CFs) is within a factor of 100-1,000 for human health and 10-100 for freshwater ecotoxicity of all other models compared to 12 orders of magnitude variation between the CFs of each model, respectively. The achieved reduction of inter-model variability by up to 11 orders of magnitude is a significant improvement. Conclusions USEtox provides a parsimonious and transparent tool for human health and ecosystem CF estimates. Based on a referenced database, it has now been used to calculate CFs for several thousand substances and forms the basis of the recommendations from UNEP-SETAC's Life Cycle Initiative regarding characterisation of toxic impacts in life cycle assessment. Recommendations and perspectives We provide both recommended and interim (not recommended and to be used with caution) characterisation factors for human health and freshwater ecotoxicity impacts. After a process of consensus building among stakeholders on a broad scale as well as several improvements regarding a wider and easier applicability of the model, USEtox will become available to practitioners for the calculation of further CFs.
机译:材料和方法为此目的,选择了涵盖广泛性能组合的45种有机物化学测试套件。所有型号均使用此套件。在三个研讨会上,模型比较参与者通过比较最终特征因子以及为所有模型所适用的测试集选择的命运,人体暴露和毒性影响的最终特征因子进行比较,确定了关键的命运,暴露和影响问题。结果通过此过程,我们能够将模型间的变化从初始范围的13个数量级降低到任何物质的不超过两个数量级。这导致了USEtox的发展,这是一种科学共识模型,仅包含最具影响力的模型元素。例如,这些是考虑间歇性降雨,定义封闭或开放系统环境或将城市箱体嵌套在大陆箱中的过程公式。讨论对于所有其他模型,新特征因子(CF)的精度对于人类健康而言均在100-1,000的范围内,对于淡水生态毒性而言,其精度在10-100之间,而每个模型之间的CFs的差异分别为12个数量级。可以将模型间可变性降低多达11个数量级,这是一项重大改进。结论USEtox为人类健康和生态系统CF估算提供了一种简约而透明的工具。现在基于参考数据库,已将其用于计算数千种物质的CF,并构成了UNEP-SETAC的生命周期计划中有关表征生命周期评估中的有害影响的建议的基础。建议和观点我们提供了建议和中期(不建议使用,请谨慎使用)表征人体健康和淡水生态毒性的因素。在利益相关者之间建立了广泛共识并在模型更广泛,更容易应用方面进行了一些改进之后,USEtox将可供从业人员使用,以计算进一步的CF。

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