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Field Application of a Newly Developed Personal Nanoparticle Sampler to Selected Metalworking Operations

机译:新开发的个人纳米粒子采样器在某些金属加工作业中的现场应用

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A personal nanoparticle sampler (PENS) that simultaneously collects respirable particles (< 4 μm) and nanoparticles (< 0.1 μm) has recently been developed and calibrated in the laboratory. This study aims to evaluate the performance of the PENS in the workplace, and to determine the exposure characteristics during selected metalworking operations. Metal polishing/buffing, spot welding, and milling operations were selected to represent sources of solid metal particles, fume aggregates and metalworking fluid mists, respectively. In each operation, personal samples of a side-by-side PENS and SKC respirable dust aluminum cyclone were taken concurrently with ambient particle number size distribution measurements. The PENS-measured respirable particle mass concentrations (PM4) showed remarkable accuracy with respect to the reference SKC cyclone, regardless of particle type. The PENS-derived nanoparticle effective densities agreed reasonably well with the bulk densities expected for the substrate and materials in use. During the metalworking operations, the nanoparticle mass concentrations (PM0.1) were poorly associated with the PM4 but strongly correlated with the ambient nanoparticle number concentrations (PN0.1), due to the persistent, elevated levels of nanoparticles formed during the operations. Overall, these results suggest that the PENS is applicable for use in the workplace to assess respirable and nanoparticle personal exposure, and that metal polishing/buffing, welding and milling generate a considerable amount of nanoparticles.
机译:最近已开发并在实验室中校准了同时收集可吸入颗粒(<4μm)和纳米颗粒(<0.1μm)的个人纳米颗粒采样器(PENS)。这项研究旨在评估PENS在工作场所的性能,并确定所选金属加工操作中的暴露特性。选择金属抛光/抛光,点焊和铣削操作分别代表固体金属颗粒,烟气聚集体和金属加工液雾的来源。在每次操作中,同时采集并排PENS和SKC可吸入粉尘铝旋风分离器的个人样品,并进行环境粒径分布测量。 PENS测量的可吸入颗粒物质量浓度(PM4)相对于参考SKC旋风分离器显示出显着的准确性,而与颗粒类型无关。 PENS衍生的纳米粒子的有效密度与所用基材和材料的预期堆积密度相当吻合。在金属加工操作过程中,由于操作过程中形成的纳米颗粒水平持续升高,因此纳米颗粒质量浓度(PM0.1)与PM4关联性很差,但与周围纳米颗粒数量浓度(PN0.1)密切相关。总体而言,这些结果表明,PENS适用于工作场所,以评估可吸入和纳米粒子的个人暴露,并且金属抛光/抛光,焊接和研磨会产生大量的纳米粒子。

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