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Analysis of currently available data for characterising the risk of engineered nanomaterials to the environment and human health-Lessons learned from four case studies

机译:分析当前可用数据以表征工程纳米材料对环境和人类健康的风险-从四个案例研究中学到的经验教训

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摘要

Production volumes and the use of engineered nanomaterials in many innovative products are continuously increasing, however little is known about their potential risk for the environment and human health. We have reviewed publicly available hazard and exposure data for both, the environment and human health and attempted to carry out a basic risk assessment appraisal for four types of nanomaterials: fullerenes, carbon nanotubes, metals, and metal oxides (ENRHES project 2009~1). This paper presents a summary of the results of the basic environmental and human health risk assessments of these case studies, highlighting the cross cutting issues and conclusions about fate and behaviour, exposure, hazard and methodological considerations.The risk assessment methodology being the basis for our case studies was that of a regulatory risk assessment under REACH (ECHA, 2008~2), with modifications to adapt to the limited available data. If possible, environmental no-effect concentrations and human no-effect levels were established from relevant studies by applying assessment factors in line with the REACH guidance and compared to available exposure data to discuss possible risks. When the data did not allow a quantitative assessment, the risk was assessed qualitatively, e.g. for the environment by evaluating the information in the literature to describe the potential to enter the environment and to reach the potential ecological targets.Results indicate that the main risk for the environment is expected from metals and metal oxides, especially for algae and Daphnia, due to exposure to both, particles and ions. The main risks for human health may arise from chronic occupational inhalation exposure, especially during the activities of high particle release and uncontrolled exposure. The information on consumer and environmental exposure of humans is too scarce to attempt a quantitative risk characterisation.It is recognised that the currently available database for both, hazard and exposure is limited and there are high uncertainties in any conclusion on a possible risk. The results should therefore not be used for any regulatory decision making. Likewise, it is recognised that the REACH guidance was developed without considering the specific behaviour and the mode of action of nanomaterials and further work in the generation of data but also in the development of methodologies is required.
机译:产量不断增长,工程纳米材料在许多创新产品中的使用正在不断增加,但是人们对其潜在的环境和人类健康风险知之甚少。我们已经审查了有关环境和人类健康的公开危害和暴露数据,并尝试对四种类型的纳米材料进行了基本的风险评估评估:富勒烯,碳纳米管,金属和金属氧化物(ENRHES项目2009〜1) 。本文对这些案例研究的基本环境和人类健康风险评估结果进行了总结,重点介绍了关于命运和行为,接触,危害和方法学考虑的跨领域问题和结论。风险评估方法是我们研究的基础案例研究是根据REACH(ECHA,2008〜2)进行的监管风险评估,并进行了修改以适应有限的可用数据。如果可能,根据相关研究通过应用符合REACH指南的评估因子来确定环境无影响浓度和人类无影响水平,并与可用的暴露数据进行比较以讨论可能的风险。如果数据不允许进行定量评估,则对风险进行定性评估,例如通过评估文献中描述进入环境和实现潜在生态目标的信息来评估环境危害。结果表明,金属和金属氧化物(尤其是藻类和水蚤)对环境的主要风险是可预期的暴露于粒子和离子中长期职业吸入暴露可能对人类健康构成主要风险,尤其是在高颗粒释放和不受控制的暴露活动中。关于人类的消费者和环境暴露的信息太少而无法进行定量的风险表征。人们认识到,关于危害和暴露的当前可用数据库是有限的,并且在任何可能的风险结论中都存在很高的不确定性。因此,结果不应用于任何监管决策。同样,公认的是,REACH指南是在未考虑纳米材料的特定行为和作用方式的情况下制定的,因此需要在数据生成以及方法开发中进一步开展工作。

著录项

  • 来源
    《Environment international》 |2011年第6期|p.1143-1156|共14页
  • 作者单位

    European Commission, Joint Research Centre (]RC), Institute for Health and Consumer Protection (1HCP), Via E. Fermi, 2749,1-21027 Ispra, Italy;

    European Commission, Joint Research Centre (]RC), Institute for Health and Consumer Protection (1HCP), Via E. Fermi, 2749,1-21027 Ispra, Italy;

    European Commission, Joint Research Centre (]RC), Institute for Health and Consumer Protection (1HCP), Via E. Fermi, 2749,1-21027 Ispra, Italy;

    European Commission, Joint Research Centre (]RC), Institute for Health and Consumer Protection (1HCP), Via E. Fermi, 2749,1-21027 Ispra, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nanomaterials toxicity environment exposure hazard risk;

    机译:纳米材料毒性环境暴露危害风险;

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