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Modeling of occupational exposure to accidentally released manufactured nanomaterials in a production facility and calculation of internal doses by inhalation

机译:在生产设施中对意外释放的人造纳米材料的职业暴露模型和通过吸入计算内部剂量

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摘要

Background: Occupational exposure to manufactured nanomaterials (MNMs) and its potential health impacts are of scientific and practical interest, as previous epidemiological studies associate exposure to nanoparticles with health effects, including increased morbidity of the respiratory and the circulatory system. \ud\udObjectives: To estimate the occupational exposure and effective internal doses in a real production facility of TiO2 MNMs during hypothetical scenarios of accidental release. \ud\udMethods: Commercial software for geometry and mesh generation, as well as fluid flow and particle dispersion calculation, were used to estimate occupational exposure to MNMs. The results were introduced to in-house software to calculate internal doses in the human respiratory tract by inhalation. \ud\udResults: Depending on the accidental scenario, different areas of the production facility were affected by the released MNMs, with a higher dose exposure among individuals closer to the particles source. \ud\udConclusions: Granted that the study of the accidental release of particles can only be performed by chance, this numerical approach provides valuable information regarding occupational exposure and contributes to better protection of personnel. The methodology can be used to identify occupational settings where the exposure to MNMs would be high during accidents, providing insight to health and safety officials.
机译:背景:由于先前的流行病学研究将纳米颗粒的暴露与健康影响(包括呼吸道和循环系统发病率增加)联系起来,因此,对人造纳米材料(MNM)的职业暴露及其潜在的健康影响具有科学和实践意义。 \ ud \ ud目的:估算假想释放情况下TiO2 MNM实际生产设施中的职业暴露量和有效内部剂量。 \ ud \ ud方法:使用用于生成几何和网格的商业软件以及流体流量和颗粒扩散计算来估算MNM的职业暴露。将结果引入内部软件,通过吸入计算人体呼吸道的内部剂量。 \ ud \ ud结果:根据意外情况,生产设施的不同区域会受到释放的MNM的影响,靠近颗粒物源的个体暴露的剂量更高。 \ ud \ ud结论:可以偶然地研究颗粒的意外释放,因此,这种数值方法可提供有关职业接触的有价值的信息,并有助于更好地保护人员。该方法可用于识别在事故期间高暴露于MNM的职业环境,从而为卫生和安全官员提供见识。

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