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Workers’ Exposure to Nano-Objects with Different Dimensionalities in RD Laboratories: Measurement Strategy and Field Studies

机译:研发实验室中工人对不同尺寸纳米物体的接触:测量策略和现场研究

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摘要

With the increasing interest in the potential benefits of nanotechnologies, concern is still growing that they may present emerging risks for workers. Various strategies have been developed to assess the exposure to nano-objects and their agglomerates and aggregates (NOAA) in the workplace, integrating different aerosol measurement instruments and taking into account multiple parameters that may influence NOAA toxicity. The present study proposes a multi-metric approach for measuring and sampling NOAA in the workplace, applied to three case studies in laboratories each dedicated to materials with different shapes and dimensionalities: graphene, nanowires, and nanoparticles. The study is part of a larger project with the aim of improving risk management tools in nanomaterials research laboratories. The harmonized methodology proposed by the Organization for Economic Cooperation and Development (OECD) has been applied, including information gathering about materials and processes, measurements with easy-to-use and hand-held real-time devices, air sampling with personal samplers, and off-line analysis using scanning electron microscopy. Significant values beyond which an emission can be attributed to the NOAA production process were identified by comparison of the particle number concentration (PNC) time series and the corresponding background levels in the three laboratories. We explored the relations between background PNC and microclimatic parameters. Morphological and elemental analysis of sampled filters was done to identify possible emission sources of NOAA during the production processes: rare particles, spherical, with average diameter similar to the produced NOAA were identified in the nanoparticles laboratory, so further investigation is recommended to confirm the potential for worker exposure. In conclusion, the information obtained should provide a valuable basis for improving risk management strategies in the laboratory at work.
机译:随着人们对纳米技术潜在利益的兴趣日益浓厚,人们越来越担心纳米技术可能给工人带来新的风险。已经开发出各种策略来评估工作场所对纳米物体及其聚集体和聚集体(NOAA)的暴露,整合不同的气溶胶测量仪器并考虑到可能影响NOAA毒性的多个参数。本研究提出了一种用于测量和采样工作场所NOAA的多指标方法,并应用于实验室中的三个案例研究,每个案例研究的对象都是具有不同形状和尺寸的材料:石墨烯,纳米线和纳米粒子。该研究是一个大型项目的一部分,旨在改善纳米材料研究实验室的风险管理工具。应用了经济合作与发展组织(OECD)提出的统一方法,包括收集有关材料和过程的信息,使用易于使用和手持的实时设备进行的测量,使用个人采样器进行空气采样以及使用扫描电子显微镜进行离线分析。通过比较三个实验室中的颗粒数浓度(PNC)时间序列和相应的背景水平,确定了可归因于NOAA生产过程的显着值。我们探索了背景PNC和微气候参数之间的关系。已对采样过滤器进行了形态和元素分析,以确定在生产过程中可能产生的NOAA排放源:在纳米颗粒实验室中鉴定出了球形平均直径与所产生的NOAA相似的球形稀有颗粒,因此建议进行进一步研究以确认其潜力工人暴露。总之,所获得的信息应为改进实验室工作中的风险管理策略提供有价值的基础。

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