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Measuring particle size-dependent physicochemical structure in airborne single walled carbon nanotube agglomerates

机译:测量机载单壁碳纳米管团聚体中与粒度有关的理化结构

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As-produced single-walled carbon nanotube (SWCNT) material is a complex matrix of carbon nanotubes, bundles of nanotubes (nanoropes), non-tubular carbon and metal catalyst nanoparticles. The pulmonary toxicity of material released during manufacture and handling will depend on the partitioning and arrangement of these components within airborne particles. To probe the physicochemical structure of airborne SWCNT aggregates, a new technique was developed and applied to aerosolized as-produced material. Differential Mobility Analysis-classified aggregates were analyzed using an Aerosol Particle Mass Monitor, and a structural parameter Γ (proportional to the square of particle mobility diameter, divided by APM voltage) derived. Using information on the constituent components of the SWCNT, modal values of Γ were estimated for specific particle compositions and structures, and compared against measured values. Measured modal values of Γ for 150 nm mobility diameter aggregates suggested they were primarily composed of non-tubular carbon from one batch of material, and thin nanoropes from a second batch of material – these findings were confirmed using Transmission Electron Microscopy. Measured modal values of Γ for 31 nm mobility diameter aggregates indicated that they were comprised predominantly of thin carbon nanoropes with associated nanometer-diameter metal catalyst particles; there was no indication that either catalyst particles or non-tubular carbon particles were being preferentially released into the air. These results indicate that the physicochemistry of aerosol particles released while handling as-produced SWCNT may vary significantly by particle size and production batch, and that evaluations of potential health hazards need to account for this.
机译:刚生产的单壁碳纳米管(SWCNT)材料是碳纳米管,纳米管束(纳米管),非管状碳和金属催化剂纳米颗粒的复杂基质。在制造和处理过程中释放的材料的肺毒性将取决于这些成分在空气传播颗粒中的分配和排列。为了探测机载SWCNT聚集体的物理化学结构,开发了一种新技术,并将其应用于雾化的成品材料。使用气溶胶颗粒质量监控器分析了差分迁移率分析分类的聚集体,并得出了结构参数Γ(与颗粒迁移率直径的平方成正比,除以APM电压)。利用有关SWCNT组成成分的信息,可以估算出特定颗粒成分和结构的Γ模态值,并将其与测量值进行比较。对于150 nm迁移率直径聚集体的Γ模态值的测量表明,它们主要由一批材料中的非管状碳和另一批材料中的细纳米绳组成-这些发现已通过透射电子显微镜得到了证实。对于31 nm迁移率直径聚集体,测得的Γ模态值表明,它们主要由具有关联的纳米直径金属催化剂颗粒的薄碳纳米绳组成;没有迹象表明催化剂颗粒或非管状碳颗粒优先释放到空气中。这些结果表明,处理成批生产的SWCNT时释放的气溶胶颗粒的物理化学可能会因颗粒大小和生产批次而有很大差异,对潜在健康危害的评估需要考虑到这一点。

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