Occupational Exposure to Nano-Objects and Their Agglomerates and Aggregates Across Various Life Cycle Stages; A Broad-Scale Exposure Study.

Annals of Occupational Hygiene Pub Date : 2015-07-01 Epub Date: 2015-04-06 DOI:10.1093/annhyg/mev023
Cindy Bekker, Eelco Kuijpers, Derk H Brouwer, Roel Vermeulen, Wouter Fransman
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引用次数: 39

Abstract

Background: Occupational exposure to manufactured nano-objects and their agglomerates, and aggregates (NOAA) has been described in several workplace air monitoring studies. However, data pooling for general conclusions and exposure estimates are hampered by limited exposure data across the occupational life cycle of NOAA and a lack in comparability between the methods of collecting and analysing the data. By applying a consistent method of collecting and analysing the workplace exposure data, this study aimed to provide information about the occupational NOAA exposure levels across various life cycle stages of NOAA in the Netherlands which can also be used for multi-purpose use.

Methods: Personal/near field task-based exposure data was collected using a multi-source exposure assessment method collecting real time particle number concentration, particle size distribution (PSD), filter-based samples for morphological, and elemental analysis and detailed contextual information. A decision logic was followed allowing a consistent and objective way of analysing the exposure data.

Results: In total, 46 measurement surveys were conducted at 15 companies covering 18 different exposure situations across various occupational life cycle stages of NOAA. Highest activity-effect levels were found during replacement of big bags (<1000-76000 # cm(-3)), mixing/dumping of powders manually (<1000-52000 # cm(-3)) and mechanically (<1000-100000 # cm(-3)), and spraying of liquid (2000-800000 # cm(-3)) showing a high variability between and within the various exposure situations. In general, a limited change in PSD was found during the activity compared to the background.

Conclusions: This broad-scale exposure study gives a comprehensive overview of the NOAA exposure situations in the Netherlands and an indication of the levels of occupational exposure to NOAA across various life cycle of NOAA. The collected workplace exposure data and contextual information will serve as basis for future pooling of data and modelling of worker exposure.

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不同生命周期阶段纳米物体的职业暴露及其聚集体一项大范围暴露研究。
背景:几项工作场所空气监测研究描述了职业性暴露于人造纳米物体及其聚集体和聚集体(NOAA)。然而,由于NOAA整个职业生命周期的暴露数据有限,以及数据收集和分析方法之间缺乏可比性,妨碍了汇总一般性结论和暴露估计的数据。通过采用一致的方法收集和分析工作场所暴露数据,本研究旨在提供有关荷兰NOAA各个生命周期阶段的职业NOAA暴露水平的信息,这些信息也可用于多种用途。方法:采用多源暴露评估方法收集基于个人/近场任务的暴露数据,收集实时颗粒数浓度、粒径分布(PSD)、基于过滤器的形态学和元素分析样本以及详细的上下文信息。遵循决策逻辑,以一致和客观的方式分析暴露数据。结果:共在15家公司进行了46项测量调查,涵盖了NOAA不同职业生命周期阶段的18种不同暴露情况。在更换大袋子期间发现了最高的活动影响水平(结论:这项大范围的暴露研究全面概述了荷兰的NOAA暴露情况,并指出了在NOAA的各个生命周期中职业性暴露于NOAA的水平。收集到的工作场所暴露数据和背景信息将作为未来汇集数据和建立工人暴露模型的基础。
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