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Physicochemical characteristics of colloidal nanomaterial suspensions and aerosolized particulates from nano-enabled consumer spray products

机译:颈型纳米材料悬架的物理化学特征及纳米消费喷雾产品的雾化颗粒

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摘要

Physicochemical properties between colloidal engineered nanomaterials (ENMs) and aerosols released from consumer spray products were characterized. A dynamic light scattering (DLS), transmission electron microscopy (TEM), and inductively coupled plasma mass spectrometer (ICP-MS) were used to evaluate the suspended ENMs in the products. Direct-reading instruments, TEM, and ICP-MS were used to characterize the properties of aerosolized ENMs. The aerosolized organic compounds with ENMs were assumed to be vaporized for a short time after spraying. The median diameter of ENMs in product solutions measured by DLS was about 200-350 nm, while individual particle was confirmed from 3 to 50 nm by TEM. The size of aerosolized ENMs was ranged from 7 to 44 nm, and their aggregates were about 100-1000 nm in near distance. Some inorganic substances including raw nanomaterials were also found in the aerosol. The particles released from the propellant sprays were identified in far distance, while they were not found in far distance when pump sprays were used. The number concentration from the propellant sprays increased up to 6000 particles/cm3/g at near distance and dispersed to far distance, while the most of droplets emitted from pump sprays were settled down near sprayer's location. We found other metals besides labeled ENMs are included in each product and the characteristics of the particles are different when they are sprayed.
机译:表征了胶体工程纳米材料(蜗牛)和消费者喷雾产品中释放的气溶胶之间的物理化学性质。使用动态光散射(DLS),透射电子显微镜(TEM)和电感耦合等离子体质谱仪(ICP-MS)来评估产品中的悬浮烯。直接读书仪器,TEM和ICP-MS用于表征雾化蜗牛的性质。假设用蜗牛的雾化有机化合物在喷射后短时间蒸发。通过DL测量的产物溶液中enms的中值直径约为200-350nm,而通过TEM从3至50nm确认单个颗粒。雾化蜗牛的尺寸范围为7至44nm,近距离的聚集体约为100-1000nm。在气溶胶中也发现了一些包括原料纳米材料的无机物质。在远处识别出从推进剂喷雾中释放的颗粒,而使用泵喷雾时未发现它们在远处距离。推进剂喷雾的数量浓度在接近距离上增加至6000个颗粒/ cm3 / g并分散在远处,而泵喷雾的大部分液滴在喷雾器的位置邻近。我们发现除标记的eNM之外的其他金属包括在每个产品中,并且在喷射时颗粒的特性不同。

著录项

  • 来源
    《Indoor Air》 |2020年第5期|925-941|共17页
  • 作者单位

    Environmental Safety Group Korea Institute of Science and Technology (KIST) Europe Forschungsgesellschaft mbH Saarbruecken Germany Department of Environmental Health Sciences Institute of Health and Environment Graduate School of Public Health Seoul National University Seoul Republic of Korea;

    Department of Occupational and Environmental Medicine College of Medicine Gachon University Incheon Republic of Korea;

    Department of Environmental Health Sciences Institute of Health and Environment Graduate School of Public Health Seoul National University Seoul Republic of Korea;

    Occupational Safety and Health Research Institute Korea Occupational Safety and Health Agency Ulsan Republic of Korea;

    Northern Seoul Regional Office Korea Occupational Safety and Health Agency Seoul Republic of Korea;

    Department of Environmental Health Sciences Institute of Health and Environment Graduate School of Public Health Seoul National University Seoul Republic of Korea;

    Department of Environmental Health Korea National Open University Seoul Republic of Korea;

    Department of Environmental Health Sciences Institute of Health and Environment Graduate School of Public Health Seoul National University Seoul Republic of Korea;

    Risk Assessment Division Environmental Health Research Department National Institute of Environmental Research Incheon Republic of Korea;

    Risk Assessment Division Environmental Health Research Department National Institute of Environmental Research Incheon Republic of Korea;

    Department of Environmental Health Sciences Institute of Health and Environment Graduate School of Public Health Seoul National University Seoul Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aerosol; dispersion; exposure; nanoparticle; size distribution; suspension;

    机译:气雾剂;分散;接触;纳米粒子;尺寸分布;暂停;

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