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在工业喷涂过程中,使用不同气溶胶指标进行职业暴露评估的关键方面。

Critical aspects in occupational exposure assessment with different aerosol metrics in an industrial spray coating process.

机构信息

CNR-ISAC, National Research Council of Italy, Institute of Atmospheric Sciences and Climate, Via Gobetti 101, 40129 Bologna, Italy.

Air Pollution Management APM, Mattilanmäki 38, 33610 Tampere, Finland; Institute for Atmospheric and Earth System Research (INAR), University of Helsinki, PL 64, FI-00014 UHEL, Helsinki, Finland; ARCHE Consulting, Liefkensstraat 35D, Wondelgem B-9032, Belgium.

出版信息

NanoImpact. 2023 Apr;30:100459. doi: 10.1016/j.impact.2023.100459. Epub 2023 Mar 21.

Abstract

Engineered Nanomaterials (ENMs) have several uses in various industrial fields and are embedded in a myriad of consumer products. However, there is continued concern over the potential adverse health effects and environmental impacts of ENMs due to their unique physico-chemical characteristics. Currently, there are no specific international regulations for various ENMs. There are also no Occupational Exposure Limits (OEL) regulated by the European Union (EU) for nanomaterials in the form of nano-objects, their aggregates or agglomerates (NOAA). For ENMs the question of which metric to be used (i.e., mass, surface area, number concentrations) to determine the exposure is still not resolved. The aim of this work is to assess the worker exposure by inhalation in an industrial spray coating process by using all three metrics mentioned above. Two target ENMs (N-doped TiO, TiON and AgNPs capped with a quaternized hydroxyethyl-cellulose, AgHEC) generated for industrial-scale spraying processes were considered. Results showed that the averaged particle number concentration (10-100 nm) was below 2.7 10 cm for both materials. The Lung Deposited Surface Area (LDSA) was in the range between 73 and 98 μmcm and the particle mass concentration (obtained by means of ICP-EOS off-line analysis) resulted below 70 μg m and 0.4 μg m for TiO and Ag, respectively. Although, the airborne particles concentration compared well with the NIOSH Recommended Exposure Level (REL) limits the contribution to the background, according to EN 17058 (Annex E) was significant (particularly in the particle number and PM1 mass concentrations). We successfully evaluated the worker exposure by means of the different airborne particles' metrics (number, surface and mass concentrations). We concluded that worker exposure assessment involving ENMs is a complex procedure with requires both real time and off-line measurements and a deep investigation of the background.

摘要

工程纳米材料(ENMs)在各个工业领域有多种用途,并嵌入在无数的消费产品中。然而,由于其独特的物理化学特性,人们仍然对 ENMs 潜在的不良健康影响和环境影响感到担忧。目前,各种 ENMs 没有特定的国际法规。欧盟(EU)也没有针对纳米物体、它们的聚集体或团聚体(NOAA)形式的纳米材料制定职业接触限值(OEL)。对于 ENMs,用于确定暴露的度量标准(即质量、表面积、数量浓度)的问题仍未解决。这项工作的目的是使用上述三种度量标准来评估工业喷雾涂覆过程中通过吸入暴露的工人。考虑了两种目标 ENMs(用季铵化羟乙基纤维素封端的 N 掺杂 TiO2 和 TiON 以及 AgNPs),这些物质是为工业规模的喷雾工艺而生成的。结果表明,两种材料的平均粒径浓度(10-100nm)均低于 2.710cm。肺沉积表面积(LDSA)在 73 到 98μmcm 之间,通过 ICP-EOS 离线分析获得的颗粒质量浓度(TiO2 和 Ag 分别低于 70μg/m 和 0.4μg/m)。尽管空气传播颗粒浓度与 NIOSH 推荐的暴露水平(REL)限制相比,背景贡献显著(尤其是在颗粒数量和 PM1 质量浓度方面)。我们成功地通过不同的空气传播颗粒的度量标准(数量、表面和质量浓度)评估了工人的暴露情况。我们得出结论,涉及 ENMs 的工人暴露评估是一个复杂的过程,需要实时和离线测量,并对背景进行深入调查。

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