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在暴露舱研究中,使用实时样本和重量法样本比较可吸入颗粒物、可吸入粉尘和总粉尘部分。

Comparing PM, respirable dust, and total dust fractions using real-time and gravimetric samples in an exposure chamber study.

作者信息

Moazami Therese Nitter, Svendsen Kristin V Hirsch, Buhagen Morten, Jørgensen Rikke Bramming

机构信息

Department of Industrial Economics and Technology Management (IØT), Norwegian University of Science and Technology (NTNU), 7491, Trondheim, Norway.

Department of Occupational Medicine, St. Olav's University Hospital, 7006, Trondheim, Norway.

出版信息

Heliyon. 2023 May 23;9(6):e16127. doi: 10.1016/j.heliyon.2023.e16127. eCollection 2023 Jun.

Abstract

Using an exposure chamber, we investigate the precision of the DustTrak DRX monitor by comparing its results to those obtained from taking traditional gravimetric samples of two stone minerals commonly used in asphalt and lactose powder. We also discuss the possibility of using real-time monitors such as DustTrak DRX for occupational exposure monitoring purposes. The results are based on 19 days of experiment, each day with measurements collected over 4 h. Compared to the gravimetric samples, the DustTrak DRX overestimated the PM and respirable dust concentrations, while it underestimated the total dust concentration by a factor of nearly two. However, the ratios, being done for more than one material, between the DustTrak DRX and the gravimetric sample readings varied daily and across the different exposure materials. Real-time sensors have the potential to excel at identifying exposure sources, evaluating the measured control efficiency, visualizing variations in exposure to motivate workers, and contributing to the identification of measures to be implemented to reduce exposure. For total dust, a correction factor of at should be used to bring its readings up to those for the corresponding gravimetric samples. Also, if the DustTrak DRX is used in the initial profiling of occupational exposure, the exposure could be considered acceptable if the readings are well below the occupational exposure limit (OELs) after correction. If the DustTrak DRX readings, after correction, is close to, or above, the accepted exposure concentrations, more thorough approaches would be required to validate the exposure.

摘要

我们使用一个暴露室,通过将DustTrak DRX监测仪的结果与从两种常用于沥青和乳糖粉的石材矿物的传统重量法采样结果进行比较,来研究其精度。我们还讨论了使用DustTrak DRX等实时监测仪进行职业暴露监测的可能性。结果基于19天的实验,每天测量4小时。与重量法采样相比,DustTrak DRX高估了颗粒物和可吸入粉尘浓度,而低估了总粉尘浓度近两倍。然而,针对多种材料计算的DustTrak DRX与重量法采样读数之间的比率每天以及在不同的暴露材料之间都有所变化。实时传感器有潜力在识别暴露源、评估测量的控制效率、直观显示暴露变化以激励工人以及协助确定为减少暴露而应采取的措施方面表现出色。对于总粉尘,应使用一个校正因子将其读数提高到与相应重量法采样的读数一致。此外,如果在职业暴露的初始概况分析中使用DustTrak DRX,在校正后读数远低于职业暴露限值(OELs)时,可认为暴露是可接受的。如果校正后的DustTrak DRX读数接近或高于可接受的暴露浓度,则需要更全面的方法来验证暴露情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ec5/10238574/f375e5da9d09/gr1.jpg

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