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Development and Evaluation of an Aerosol Generation and Supplying System for Inhalation Experiments of Manufactured Nanoparticles

机译:制备的纳米颗粒吸入​​实验的气溶胶生成和供应系统的开发和评估

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摘要

Risk assessment of nanoparticles by inhalation experiments is of great importance since inhalation is considered the most significant route of exposure to nanoparticles suspended in air. However, there have been few inhalation experiments using manufactured nanoparticles, mainly because of the difficulty in stably dispersing the nanoparticles in air for a long period of time. In this study, we report for the first time the development of a rational system for stably and continuously dispersing and supplying manufactured nanoparticles for inhalation experiments. The system was developed using a spray-drying technique, in which a nebulizer was used to atomize nickel oxide (NiO) and fullerene (C_(60)) nanoparticle suspensions, and the resulting droplets were dried to generate aerosol nanoparticles. The size, concentration and morphology of the aerosol particles were evaluated by in-line measurements using an aerosol measuring device and off-line measurements based on the collection of the aerosol particles. After examining the effects of the conditions for the suspensions and the aerosol generation, we were able to obtain NiO and C_(60) aerosol nanoparticles with average diameters of 53-64 and 88-98rnnm, respectively. By feeding these aerosols into a whole-body exposure chamber for rats, a stable supply of the aerosol nanoparticles could be achieved for long hourly durations (6 h per day) as well as for long terms (5 days per week for 4 weeks).
机译:通过吸入实验对纳米颗粒进行风险评估非常重要,因为吸入被认为是暴露于悬浮在空气中的纳米颗粒的最重要途径。然而,几乎没有使用制造的纳米颗粒的吸入实验,这主要是因为难以将纳米颗粒长时间稳定地分散在空气中。在这项研究中,我们首次报告了合理的系统的发展,该系统可稳定,连续地分散和供应用于吸入实验的人造纳米颗粒。该系统是使用喷雾干燥技术开发的,其中使用雾化器雾化氧化镍(NiO)和富勒烯(C_(60))纳米颗粒悬浮液,然后干燥所得的液滴以生成气溶胶纳米颗粒。气溶胶颗粒的大小,浓度和形态通过使用气溶胶测量装置的在线测量和基于气溶胶颗粒收集的离线测量进行评估。在检查了悬浮液条件和气溶胶产生的影响后,我们能够获得平均直径分别为53-64和88-98nmnm的NiO和C_(60)气溶胶纳米颗粒。通过将这些气溶胶喂入大鼠的全身暴露室,可以长时间(每天6小时)以及长期(每周5天,共4周)获得稳定的气溶胶纳米颗粒供应。

著录项

  • 来源
    《Environmental Science & Technology》 |2009年第14期|5529-5534|共6页
  • 作者单位

    Department of Chemical Engineering, Graduate School of Engineering, Hiroshima University, Higashi-Hiroshima, Japan;

    Department of Chemical Engineering, Graduate School of Engineering, Hiroshima University, Higashi-Hiroshima, Japan;

    Department of Chemical Engineering, Graduate School of Engineering, Hiroshima University, Higashi-Hiroshima, Japan;

    Institute of Industrial Ecological Sciences, University of Occupational and Environmental Health, Kitakyushu, Japan;

    Institute of Industrial Ecological Sciences, University of Occupational and Environmental Health, Kitakyushu, Japan;

    Department of Chemical Engineering, Graduate School of Engineering, Hiroshima University, Higashi-Hiroshima, Japan;

    Institute of Industrial Ecological Sciences, University of Occupational and Environmental Health, Kitakyushu, Japan;

    Research Institute for Environmental Management Technology, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan;

    Research Institute for Environmental Management Technology, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan;

    National Metrology Institute of Japan, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan;

    National Metrology Institute of Japan, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan;

    Research Institute of Instrumentation Frontier, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan;

    Research Institute of Science for Safety and Sustainability, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:04:45

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