首页> 外文期刊>International journal of occupational and environmental health : >Insight into the behavior of engineered aerosolized nanoparticles: a method for understanding their fate from an aerosol release in the workplace environment.
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Insight into the behavior of engineered aerosolized nanoparticles: a method for understanding their fate from an aerosol release in the workplace environment.

机译:洞察工程化雾化纳米颗粒的行为:一种从工作场所环境中的烟雾释放中了解其命运的方法。

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摘要

We present a method to assess the behavior of aerosol nanoparticles as a function of time and of selected aerosol chamber and environmental conditions upon exposure to polydisperse silicon dioxide (SiO2) aerosol nanoparticles (NPs). Through synthesis of SiO2 aerosol NPs, a well-controlled, stable source of aerosol NPs was used to probe aerosol behavior in an enclosed aerosol chamber. This paper describes a procedure to interface an aerosol chamber downstream of a SiO2 aerosol NP reactor that is capable of synthesizing SiO2 NPs with particle diameters from 10 to 100 nm at particle concentrations of approximately 10(4) to 10(7) particles/cm3. This paper also describes the relative impact on aerosol and aerosol chamber variables, such as chamber volume, the entering aerosol NP size distribution, and environmental parameters, such as relative humidity and ambient particle concentrations, on the observed changes in aerosol NPs over time under unmixed conditions. These findings provide insights into aerosol NP behavior under ideal, well-controlled conditions which can be further refined to include more occupationally relevant conditions that would be important for establishing guidance on suitable workplace containment and controls.
机译:我们提出一种方法来评估暴露于多分散二氧化硅(SiO2)气溶胶纳米颗粒(NPs)时,气溶胶纳米颗粒的行为随时间变化以及所选气溶胶室和环境条件的变化。通过SiO2气溶胶NP的合成,一个受控良好的稳定气溶胶NPs的来源被用于探测封闭气溶胶室内的气溶胶行为。本文介绍了在SiO2气溶胶NP反应器下游连接气溶胶室的程序,该反应器能够以约10(4)至10(7)粒子/ cm3的颗粒浓度合成粒径为10至100 nm的SiO2 NP。本文还描述了对气溶胶和气溶胶腔变量的相对影响,例如腔室容积,进入的气溶胶NP尺寸分布,以及环境参数(例如相对湿度和环境颗粒浓度),对在未混合状态下观察到的气溶胶NPs随时间的变化条件。这些发现提供了在理想的,良好控制的条件下气溶胶NP行为的见解,可以进一步完善以包括更多与职业有关的条件,这些条件对于建立合适的工作场所隔离和控制指南至关重要。

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