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首页> 外文期刊>Journal of occupational and environmental hygiene >Generating nano-aerosols from TiO? (5 nm) nanoparticles showing different agglomeration states. Application to toxicological studies.
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Generating nano-aerosols from TiO? (5 nm) nanoparticles showing different agglomeration states. Application to toxicological studies.

机译:从TiO生成纳米气溶胶? (5 nm)纳米粒子显示出不同的团聚状态。在毒理学研究中的应用。

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Agglomeration of nanoparticles (NP) is a key factor in the generation of aerosols from nano-powders and may represent an important parameter to consider in toxicological studies. For this reason, the characterization of NP aerosols (e.g., concentration, size, and structure of agglomerates) is a critical step in the determination of the relationship between exposure and effects. The aim of this study was to generate and characterize aerosols composed of TiO? (5 nm) NP showing different agglomeration states. Two concentrations were tested: 2 and 7 mg/m3. Stable mass concentrations over 6 hr were successfully generated by a wet method using Collison and Delavan nebulizers that resulted in aerosols composed of smaller agglomerates (<100 nm), while aerosols composed of larger agglomerates (>100 nm) were obtained by dry generation techniques using either a Palas dust feeder or a Fluidized Bed. Particle size distributions in the aerosols were determined by an electrical low pressure impactor. Median number aerodynamic diameters corresponding to the aerosol with smaller and larger agglomerates were 30 and 185 nm, respectively, for the 2 mg/m3 concentration, and 31 and 194 nm for the 7 mg/m3 experiment. Image analysis by transmission electron microscopy showed the presence of compact or agglomerates with void spaces in the different nano-aerosols. These characterized nano-aerosols will be used in further experiments to study the influence of agglomerate size on NP toxicity.
机译:纳米颗粒(NP)的团聚是从纳米粉末产生气溶胶的关键因素,可能代表毒理学研究中要考虑的重要参数。因此,NP气溶胶的表征(例如,凝聚物的浓度,大小和结构)是确定暴露与效应之间关系的关键步骤。这项研究的目的是生成和表征由TiO2组成的气溶胶。 (5 nm)NP显示不同的聚集状态。测试了两个浓度:2和7 mg / m3。使用Collison和Delavan雾化器通过湿法成功产生了超过6小时的稳定质量浓度,从而产生了由较小附聚物(<100 nm)组成的气溶胶,而由较大附聚物(> 100 nm)组成的气溶胶通过干法生成使用Palas除尘器或流化床。气溶胶中的粒度分布由低压电冲击器确定。对于2 mg / m3的浓度,与较小和较大的附聚物形成的气溶胶相对应的中位数空气动力学直径分别为30和185 nm,对于7 mg / m3的实验分别为31和194 nm。通过透射电子显微镜的图像分析显示在不同的纳米气溶胶中存在具有空隙空间的致密物或附聚物。这些表征的纳米气溶胶将用于进一步的实验中,以研究团聚体尺寸对NP毒性的影响。

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