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纳米涂层木材表面打磨过程中人造纳米物体的潜在释放。

Potential Release of Manufactured Nano Objects During Sanding of Nano-Coated Wood Surfaces.

作者信息

Fransman Wouter, Bekker Cindy, Tromp Peter, Duis Willem B

机构信息

1.TNO, PO Box 360, Zeist, The Netherlands;

1.TNO, PO Box 360, Zeist, The Netherlands; 1.TNO, PO Box 360, Zeist, The Netherlands;

出版信息

Ann Occup Hyg. 2016 Aug;60(7):875-84. doi: 10.1093/annhyg/mew031. Epub 2016 May 27.

Abstract

Increasing production and applications of manufactured nano objects (MNOs) have become a source for human exposure and therefore raise concerns and questions about the possible health effects. In this study, the potential release of nano objects, their agglomerates, and aggregates (NOAA) as a result of sanding of hardwood treated with MNOs-containing coating was examined. Two types of MNO-containing coating were compared with untreated hardwood that allowed the evaluation of the influence of the chemical composition on the release of particles. Furthermore, the rotation speed of the sander and the grit size of the sanding paper were varied in order to assess their influence on the release of particles.Measurements were conducted in a gas-tight chamber with a volume of 19.5 m(3) in which ventilation was minimized during experiments. Particle size distributions were assessed by scanning mobility particle sizer , aerodynamic particle sizer, and electrical low pressure impactor. Furthermore, aerosol number concentrations (Nanotracer), active surface area (LQ1), and fractionated mass (Cascade Impactor) were measured before, during, and after sanding. Scanning electron microscope/energy dispersive X-ray (SEM/EDX) analysis was performed to adequately characterize the morphology, size, and chemical composition of released particles.SEM/EDX analysis indicated that sanding surfaces treated with MNO-containing coating did not release the designated MNO as free primary particles. In both coatings, clusters of MNO were perceived embedded in and attached to micro-sized wood and/or coating particles created by sanding the coated surface. Real-time measurements indicated a lower release of micro-sized particles from sanding of surfaces treated with Coating I than from sanding untreated surfaces or surfaces treated with Coating II. A substantial increase in nanosized and a slight increase in micro-sized particles was perceived as the rotation speed of the sander increased. However, most nanosized particles were most likely emitted by the sanding machine. No effect of the grit size on the release of particles was detected.

摘要

人造纳米物体(MNOs)产量和应用的不断增加已成为人类接触的一个来源,因此引发了对其可能的健康影响的担忧和疑问。在本研究中,研究了用含MNOs涂层处理的硬木打磨后纳米物体、其团聚体和聚集体(NOAA)的潜在释放情况。将两种含MNOs的涂层与未处理的硬木进行比较,以评估化学成分对颗粒释放的影响。此外,改变砂光机的转速和砂纸的粒度,以评估它们对颗粒释放的影响。在一个容积为19.5立方米的气密室内进行测量,实验期间通风降至最低。通过扫描迁移率粒径分析仪、气动力学粒径分析仪和低压电冲击器评估粒径分布。此外,在打磨前、打磨期间和打磨后测量气溶胶数浓度(纳米示踪剂)、活性表面积(LQ1)和分级质量(级联冲击器)。进行扫描电子显微镜/能量色散X射线(SEM/EDX)分析,以充分表征释放颗粒的形态、尺寸和化学成分。SEM/EDX分析表明,用含MNOs涂层处理的打磨表面没有释放出指定的作为游离初级颗粒的MNO。在两种涂层中,都观察到MNO簇嵌入并附着在通过打磨涂层表面产生的微米级木材和/或涂层颗粒上。实时测量表明,用涂层I处理的表面打磨产生的微米级颗粒释放量低于未处理表面或用涂层II处理的表面打磨产生的颗粒释放量。随着砂光机转速的增加,纳米级颗粒大量增加,微米级颗粒略有增加。然而,大多数纳米级颗粒很可能是由砂光机排放的。未检测到砂纸粒度对颗粒释放的影响。

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