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固定化铁基道路尘埃及其特征,以及与人体组织中检测到的可能关联。

Settled iron-based road dust and its characteristics and possible association with detection in human tissues.

机构信息

Center for Advanced Innovation Technologies, VŠB-Technical University of Ostrava,, 70800, Ostrava, Czech Republic.

Department of Physics, VŠB-Technical University of Ostrava, 70800, Ostrava, Czech Republic.

出版信息

Environ Sci Pollut Res Int. 2019 Jan;26(3):2950-2959. doi: 10.1007/s11356-018-3841-x. Epub 2018 Nov 30.

Abstract

Settled road dust was examined to detect the presence of non-airborne submicron and nano-sized iron-based particles and to characterize these particles. Samples were collected from a road surface near a busy road junction in the city of Ostrava, Czech Republic, once a month from March to October. The eight collected samples were subjected to a combination of experimental techniques including elemental analysis, Raman microspectroscopy, scanning electron microscopy (SEM) analysis, and magnetometry. The data thereby obtained confirmed the presence of non-agglomerated spherical nano-sized iron-based particles, with average sizes ranging from 2 down to 490 nm. There are several sources in road traffic which generate road dust particles, including exhaust and non-exhaust processes. Some of them (e.g., brake wear) produce iron as the dominant metallic element. Raman microspectroscopy revealed forms of iron (mainly as oxides, FeO, and mixtures of FeO and FeO). Moreover, FeO was also detected in samples of human tissues from the upper and lower respiratory tract. In view of the fact that no agglomeration of those particles was found by SEM, it is supposed that these particles may be easily resuspended and represent a risk to human health due to inhalation exposure, as proved by the detection of particles with similar morphology and phase composition in human tissues.

摘要

已沉降道路灰尘被检测到存在非空气传播的亚微米和纳米级铁基颗粒,并对这些颗粒进行了特征描述。这些样本是从捷克共和国奥斯特拉瓦市一个繁忙的道路交叉口附近的道路表面每月收集一次,从 3 月到 10 月共收集了 8 个样本。收集的 8 个样本采用了包括元素分析、拉曼微光谱分析、扫描电子显微镜(SEM)分析和磁测量在内的一系列实验技术。由此获得的数据证实了非团聚的球形纳米级铁基颗粒的存在,平均粒径范围从 2 纳米到 490 纳米。道路交通中有几个来源会产生道路灰尘颗粒,包括废气和非废气过程。其中一些(例如,刹车磨损)会产生铁作为主要的金属元素。拉曼微光谱分析显示了铁的存在形式(主要是氧化物,FeO 和 FeO 和 FeO 的混合物)。此外,在呼吸道上部和下部的人体组织样本中也检测到了 FeO。鉴于 SEM 未发现这些颗粒的团聚,据推测这些颗粒可能很容易再次悬浮,并因吸入暴露而对人体健康构成风险,因为在人体组织中检测到了具有相似形态和相组成的颗粒。

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