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Evaluation of Quantitative Exposure Assessment Method for Nanomaterials in Mixed Dust Environments: Application in Tire Manufacturing Facilities

机译:混合粉尘环境中纳米材料定量暴露评估方法的评估:在轮胎制造设施中的应用

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Current recommendations for nanomaterial-specific exposure assessment require adaptation in order to be applied to complicated manufacturing settings, where a variety of particle types may contribute to the potential exposure. The purpose of this work was to evaluate a method that would allow for exposure assessment of nanostructured materials by chemical composition and size in a mixed dust setting, using carbon black (CB) and amorphous silica (AS) from tire manufacturing as an example. This method combined air sampling with a low pressure cascade impactor with analysis of elemental composition by size to quantitatively assess potential exposures in the workplace. This method was first pilot-tested in one tire manufacturing facility; air samples were collected with a Dekati Low Pressure Impactor (DLPI) during mixing where either CB or AS were used as the primary filler. Air samples were analyzed via scanning transmission electron microscopy (STEM) coupled with energy dispersive spectroscopy (EDS) to identify what fraction of particles were CB, AS, or 'other'. From this pilot study, it was determined that -95% of all nanoscale particles were identified as CB or AS.
机译:当前针对纳米材料特定暴露评估的建议需要进行调整,以便应用于复杂的制造环境,在该环境中,各种类型的颗粒可能会导致潜在的暴露。这项工作的目的是评估一种方法,该方法可以在混合粉尘环境中通过化学成分和尺寸对纳米结构材料进行暴露评估,以轮胎制造中的炭黑(CB)和无定形二氧化硅(AS)为例。该方法将空气采样与低压级联撞击器结合,并按尺寸分析元素组成,以定量评估工作场所中的潜在暴露量。此方法首先在一个轮胎制造厂进行了先导测试;混合期间,使用Dekati低压冲击器(DLPI)收集空气样品,其中CB或AS用作主要填料。空气样品通过扫描透射电子显微镜(STEM)和能量色散光谱仪(EDS)进行分析,以鉴定哪些颗粒是CB,AS或“其他”颗粒。根据该初步研究,确定所有纳米级颗粒的-95%被鉴定为CB或AS。

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