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首页> 外文期刊>Journal of occupational and environmental hygiene >Quantitative evaluation of carbon nanomaterial releases during electric heating wire cutting and sawing machine cutting of expanded polystyrene-based composites using thermal carbon analysis
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Quantitative evaluation of carbon nanomaterial releases during electric heating wire cutting and sawing machine cutting of expanded polystyrene-based composites using thermal carbon analysis

机译:热碳分析膨胀聚苯乙烯基复合材料电加热线切割和锯切机切割碳纳米材料释放的定量评价

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Field measurements were conducted at a facility where expanded polystyrene-based carbon nanomaterial composites, namely, carbon nanotube and carbon black composites, were cut with an electric heating wire cutter or a circular sawing machine. The aerosol particles released during the cutting of the composites were measured using real-time aerosol monitoring, gravimetric analysis, thermal carbon analysis, and scanning electron microscopic observations. This study had two major goals: (1) to quantitatively evaluate the concentrations of airborne carbon nanomaterials during the cutting of their composites; (2) to evaluate the capability of thermal carbon analysis to quantify airborne carbon nanomaterials in the presence of expanded polystyrene-derived particles. The results of thermal carbon analysis showed that the concentrations of elemental carbon (an indicator of carbon nanomaterials) for all the respirable dust samples in both cutting processes were less than the limit of detection (similar to 2 mu g/m(3)), which is nearly equivalent to or lower than the occupational exposure limits for carbon nanotubes (1 to 50 mu g/m(3)). For total dust, which includes particles larger than respirable size, although the elemental carbon concentrations during heating wire cutting were low (<3 mu g/m(3)), those during sawing machine cutting were up to 58 mu g/m(3). In scanning electron microscopic observations, micron-sized particles composed of or including carbon nanotubes were detected only in aerosol particles collected during the sawing machine cutting. Therefore, heating wire cutting is considered preferable. This study demonstrated that thermal carbon analysis can quantify airborne carbon nanomaterials in the presence of expanded polystyrene-derived particles.
机译:在膨胀的聚苯乙烯基碳纳米材料复合材料,即碳纳米管和炭黑复合材料的设施下进行现场测量,用电加热钢丝切割器或圆形锯机切割。使用实时气溶胶监测,重量分析,热碳分析和扫描电子显微镜观测测量复合材料期间释放的气溶胶颗粒。本研究有两个主要目标:(1)定量评价在切割复合材料期间空气碳纳米材料的浓度; (2)评价热碳分析能力在膨胀的聚苯乙烯衍生颗粒存在下量化空气碳纳米材料。热碳分析结果表明,切割过程中所有可吸入粉尘样品的元素碳(碳纳米材料的指示剂)的浓度小于检测限(类似于2μg/ m(3)),这几乎相当于或低于碳纳米管的职业暴露限值(1至50μg/ m(3))。对于总灰尘,包括大于可吸入尺寸的颗粒,尽管加热钢丝切割过程中的元素碳浓度低(<3μg/ m(3)),但锯切机切割期间的含量高达58μg/ m(3 )。在扫描电子显微镜观察中,仅在锯切机切割期间收集的气溶胶颗粒中检测由或包括碳纳米管组成的微米尺寸颗粒。因此,认为优选的加热线切切割。该研究表明,热碳分析可以在膨胀的聚苯乙烯衍生的颗粒存在下量化空气碳纳米材料。

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