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Composition of Metallic Elements and Size Distribution of Fine and Ultrafine Particles in a Steelmaking Factory

机译:炼钢厂金属元素组成及细超细颗粒尺寸分布

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摘要

Background: The characteristics of aerosol, in particular particle size and chemical composition, can have an impact on human health. Particle size distribution and chemical composition is a necessary parameter in occupational exposure assessment conducted in order to understand possible health effects. The aim of this study was to characterize workplace airborne particulate matter in a metallurgical setting by synergistically using two different approaches; Methodology: Analysis of inhalable fraction concentrations through traditional sampling equipment and ultrafine particles (UFP) concentrations and size distribution was conducted by an Electric Low-Pressure Impactor (ELPI+™). The determination of metallic elements (ME) in particles was carried out by inductively coupled plasma mass spectrometry; Results: Inhalable fraction and ME concentrations were below the limits set by Italian legislation and the American Conference of Governmental Industrial Hygienists (ACGIH, 2017). The median of UFP was between 4.00 × 104 and 2.92 × 105 particles/cm3. ME concentrations determined in the particles collected by ELPI show differences in size range distribution; Conclusions: The adopted synergistic approach enabled a qualitative and quantitative assessment of the particles in steelmaking factories. The results could lead to a better knowledge of occupational exposure characterization, in turn affording a better understanding of occupational health issues due to metal fumes exposure.
机译:背景:气溶胶的特性,特别是粒径和化学成分,可能对人体健康产生影响。粒度分布和化学成分是进行职业接触评估以了解可能的健康影响的必要参数。这项研究的目的是通过协同使用两种不同的方法来表征冶金环境中的工作场所空气中的颗粒物。方法:通过电动低压撞击器(ELPI +™)对通过传统采样设备可吸入的分数浓度以及超细颗粒(UFP)浓度和尺寸分布进行了分析。颗粒中金属元素(ME)的测定通过电感耦合等离子体质谱法进行;结果:可吸入部分和ME浓度低于意大利立法和美国政府工业卫生学家会议(ACGIH,2017)设定的限值。 UFP的中位数介于4.00×10 4 和2.92×10 5 粒子/ cm 3 。通过ELPI收集的颗粒中确定的ME浓度显示出尺寸范围分布的差异;结论:采用的协同方法可以对炼钢厂中的颗粒进行定性和定量评估。结果可能会导致人们更好地了解职业暴露特征,进而更好地理解由于金属烟雾暴露引起的职业健康问题。

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