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首页> 外文期刊>International Journal of Environmental Research and Public Health >Characterization and Cytotoxic Assessment of Ballistic Aerosol Particulates for Tungsten Alloy Penetrators into Steel Target Plates
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Characterization and Cytotoxic Assessment of Ballistic Aerosol Particulates for Tungsten Alloy Penetrators into Steel Target Plates

机译:钨合金渗透器中钨极气溶胶颗粒的特征及细胞毒性评估钢靶板

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摘要

The nature and constituents of ballistic aerosol created by kinetic energy penetrator rods of tungsten heavy alloys (W-Fe-Ni and W-Fe-Co) perforating steel target plates was characterized by scanning and transmission electron microscopy. These aerosol regimes, which can occur in closed, armored military vehicle penetration, are of concern for potential health effects, especially as a consequence of being inhaled. In a controlled volume containing 10 equispaced steel target plates, particulates were systematically collected onto special filters. Filter collections were examined by scanning and transmission electron microscopy (SEM and TEM) which included energy-dispersive (X-ray) spectrometry (EDS). Dark-field TEM identified a significant nanoparticle concentration while EDS in the SEM identified the propensity of mass fraction particulates to consist of Fe and FeO, representing target erosion and formation of an accumulating debris field. Direct exposure of human epithelial cells (A549), a model for lung tissue, to particulates (especially nanoparticulates) collected on individual filters demonstrated induction of rapid and global cell death to the extent that production of inflammatory cytokines was entirely inhibited. These observations along with comparisons of a wide range of other nanoparticulate species exhibiting cell death in A549 culture may suggest severe human toxicity potential for inhaled ballistic aerosol, but the complexity of the aerosol (particulate) mix has not yet allowed any particular chemical composition to be identified.
机译:通过扫描和透射电子显微镜表征由钨重金属动能渗透器(W-Fe-Fe-Fe-Fe-Co)穿孔钢靶板产生的弹性气溶胶的性质和成分。这些气溶胶制度可能发生在封闭的装甲军车渗透,对潜在的健康效果有关,特别是由于吸入的结果。在含有10个等级钢靶板的受控体积中,系统地收集到特殊过滤器上的颗粒。通过扫描和透射电子显微镜(SEM和TEM)检查过滤器采集,包括能量分散(X射线)光谱(EDS)。暗场TEM鉴定出显着的纳米颗粒浓度,而SEM中的EDS鉴定了质量分数颗粒的倾向,该颗粒由Fe和FeO组成,代表靶腐蚀和形成积聚碎片场。直接暴露于人上皮细胞(A549),肺组织的模型,对单个过滤器收集的颗粒(特别是纳米颗粒)表现出快速和全球性细胞死亡的诱导,在炎性细胞因子的产生完全抑制的程度上。这些观察结果以及在A549培养中表现出细胞死亡的各种其他纳米颗粒物种的比较可能表明吸入弹道气溶胶的严重人类毒性潜力,但气溶胶(颗粒)混合物的复杂性尚未允许任何特定的化学组成确定。

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