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From workplace air measurement results toward estimates of exposure? Development of a strategy to assess exposure to manufactured nano-objects

机译:从工作场所空气测量结果到暴露估计值?制定评估人造纳米物体暴露的策略

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摘要

In the past few years, an increasing number of studies on workplace air measurements on manufactured nano-materials and -objects have been published. Most of the studies had a more explorative character, so a direct interpretation to workers" exposure for a given exposure situation, activity, or process is not a straight-forward process. In general, the studies use a quite similar package of devices for near real-time monitoring of particle number- and mass concentration in size ranges < 100 nm up to 10 mu m, and the collection of samples for off-line characterization of air samples. Various approaches for addressing background concentrations and its use to indicate the potential for exposure to nano-objects could be observed. Within the EU-sponsored NANOSH project, a harmonized approach for measurement strategy, data analysis and reporting was developed. In addition to time/activity-concentration profiles as reported by most studies, this approach enables a first step to estimate the potential for exposure to manufactured nano-objects, more quantitatively. The NANOSH data will be collated into a base, which may form the starting point for a harmonized database facilitating overall analysis in near future, to derive estimates for exposure for several exposure situations.
机译:在过去的几年中,关于人造纳米材料和物体的工作场所空气测量的研究越来越多。大多数研究具有更具探索性的特征,因此,对于给定暴露情况,活动或过程,直接解释工人的暴露情况并非直截了当的过程。实时监测粒径范围小于100 nm的颗粒数和质量浓度,直至10μm,并收集样品以进行空气样品的离线表征。解决背景浓度的各种方法及其用于表明潜力的方法在欧盟资助的NANOSH项目中,开发了一种统一的测量策略,数据分析和报告方法,除了大多数研究报告的时间/活动浓度分布图之外,这种方法还可以第一步,以更定量的方式估算暴露于人造纳米物体的可能性。NANOSH数据将整理成一个基础,这可能形成起始点int建立一个统一的数据库,以便在不久的将来进行整体分析,从而得出几种暴露情况下的暴露估计。

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