Thorat D D, Mahadevan T N, Ghosh D K
Beryllium Machining Facility, Bhabha Atomic Research Centre, Vashi Complex, Navi Mumbai, India 400705.
AIHA J (Fairfax, Va). 2003 Jul-Aug;64(4):522-7. doi: 10.1202/369.1.
The mass size distribution of beryllium aerosols generated in the various operational areas of a typical extraction and processing plant was studied using an eight-stage impactor sampler. The total concentration of beryllium in the plant was found to be well below the threshold limit value. The mean value of mass median aerodynamic diameter of beryllium particles observed for various operations ranged from 5.0-9.5 microm. The alveolar deposition for various operational areas was estimated to be 3-5% for nasal breathing and 9-13% for oral breathing based on the International Commission on Radiological Protection (ICRP) human respiratory tract model. Deposition during oral breathing was higher than during nasal breathing by approximately a factor of two to three. This study on exposure characterization was useful for reducing the respirable fraction of beryllium aerosol by optimizing the capture velocity and improving the quality of other control measures.
使用八级冲击式采样器研究了典型提取和加工厂各个操作区域产生的铍气溶胶的质量粒径分布。发现该厂铍的总浓度远低于阈限值。在各种操作中观察到的铍颗粒质量中值空气动力学直径的平均值在5.0至9.5微米之间。根据国际放射防护委员会(ICRP)的人体呼吸道模型,各个操作区域的肺泡沉积率在鼻呼吸时估计为3-5%,在口呼吸时为9-13%。口呼吸时的沉积率比鼻呼吸时高约两到三倍。这项关于暴露特征的研究有助于通过优化捕获速度和提高其他控制措施的质量来降低铍气溶胶的可吸入部分。