Ostraat Michele L, Swain Keith A, Krajewski James J
DuPont Engineering Research and Technology, Experimental Station, Wilmington, Delaware, USA.
J Occup Environ Hyg. 2008 Jun;5(6):390-8. doi: 10.1080/15459620802071646.
Important questions are emerging about potential occupational safety, toxicological, and ecotoxicological effects and occupational inhalation exposure risks to engineered aerosol nanoparticles. Although multiple avenues are available to synthesize nanoparticles, few tools are accessible to industrial hygienists and inhalation toxicologists to produce well-characterized aerosols of known aerosol size distribution and particle number concentration that are stable, simple, and robust to operate. This article describes a SiO(2) aerosol nanoparticle reactor that has been developed as a tool for the study of the safety, health, and environmental consequences of exposure to nanoparticle synthesis and processing. The SiO(2) aerosol nanoparticle reactor is capable of stable, long-term synthesis of amorphous SiO(2) aerosol nanoparticles from d(50) = 10-70 nm at particle concentrations approximately 10(4)-10(7)particles/cm(3) that does not produce halogen-containing byproducts and does not require daily monitoring of the particle size distribution. This reactor is designed to produce a well-characterized aerosol to enable subsequent testing with a continuous, stable supply of aerosol nanoparticles (i) to facilitate inhalation toxicology studies, (ii) to measure explosion characteristics of aerosol nanoparticles, (iii) to determine the barrier efficacy for respirator filtration, bag house exhaust, and personal protective garment media challenged with diverse aerosol nanoparticles, and (iv) to develop airborne monitoring technologies for verifying workplace safety protocols. This article details reactor design, synthesis parameters, and instruments available to characterize the resulting aerosol nanoparticle size distributions.
关于工程气溶胶纳米颗粒的潜在职业安全、毒理学、生态毒理学影响以及职业吸入暴露风险,一些重要问题正在浮现。尽管有多种途径可用于合成纳米颗粒,但工业卫生学家和吸入毒理学家能够使用的工具却很少,这些工具要能产生具有良好特性的气溶胶,其气溶胶尺寸分布和颗粒数浓度已知,并且操作稳定、简单且可靠。本文介绍了一种二氧化硅气溶胶纳米颗粒反应器,它已被开发用作研究纳米颗粒合成与加工暴露对安全、健康和环境影响的工具。该二氧化硅气溶胶纳米颗粒反应器能够稳定、长期地合成粒径分布中值(d(50))为10 - 70纳米的无定形二氧化硅气溶胶纳米颗粒,颗粒浓度约为10⁴ - 10⁷个颗粒/立方厘米,不会产生含卤副产物,也无需每日监测粒径分布。该反应器旨在产生具有良好特性的气溶胶,以便通过持续、稳定地供应气溶胶纳米颗粒进行后续测试:(i)促进吸入毒理学研究;(ii)测量气溶胶纳米颗粒的爆炸特性;(iii)确定不同气溶胶纳米颗粒对呼吸器过滤、布袋除尘器排气和个人防护服装介质的阻隔效果;(iv)开发用于验证工作场所安全规程的空气监测技术。本文详细介绍了反应器设计、合成参数以及用于表征所得气溶胶纳米颗粒粒径分布的可用仪器。