Bao Liang-Man, Lei Qian-Tao, Tan Ming-Guang, Li Xiao-Lin, Zhang Gui-Lin, Liu Wei, Li Yan
Huan Jing Ke Xue. 2014 Jun;35(6):2052-9.
PM10 and PM2.5 aerosol particle samples were collected at a subway station in Shanghai and their morphology, chemical composition and transition metal species were studied. The mass concentrations of PM10 and PM2.5 inside the subway station were significantly higher than those measured in aboveground ambient air. The PM levels inside subway were much higher than the state control limit. The aerosol composition in the metro station was quite different from that of the aboveground urban particles. Concentrations of Fe, Mn and Cr were higher than the averages of aboveground urban air particles by factors of 8, 2, and 2, respectively, showing a substantial enrichment in subway. Scanning electron microscope (SEM) analysis showed that the subway particles had flat surfaces in combination with parallel scratches and sharp edges and looked like metal sheets or flakes. Furthermore, analysis of the atomic composition of typical subway particles by energy dispersive X-Ray (EDX) spectroscopy showed that oxygen and iron dominated the mass of the particles. The X-ray absorption near-edge structure (XANES) spectroscopy results showed that a fraction (> 26%) of the total iron in the PM10 was in the form of pure Fe, while in the street particles Fe(III) was shown to be a significant fraction of the total iron. The work demonstrated that the underground subway stations in Shanghai were an important microenvironment for exposure to transition metal aerosol for the people taking subway train for commuting every day and those who work in the subway stations, and the metal particle exposure for people in the subway station should not be ignored.
在上海的一个地铁站采集了PM10和PM2.5气溶胶颗粒样本,并对其形态、化学成分和过渡金属种类进行了研究。地铁站内PM10和PM2.5的质量浓度显著高于地面环境空气中测得的浓度。地铁内的颗粒物水平远高于国家控制限值。地铁站内的气溶胶成分与地面城市颗粒物有很大不同。铁、锰和铬的浓度分别比地面城市空气颗粒物的平均值高出8倍、2倍和2倍,表明在地铁中有大量富集。扫描电子显微镜(SEM)分析表明,地铁颗粒物表面平整,有平行划痕和尖锐边缘,看起来像金属片或薄片。此外,通过能量色散X射线(EDX)光谱对典型地铁颗粒物的原子组成进行分析表明,氧和铁在颗粒物质量中占主导地位。X射线吸收近边结构(XANES)光谱结果表明,PM10中总铁的一部分(>26%)以纯铁的形式存在,而在街道颗粒物中,Fe(III)是总铁的重要组成部分。这项工作表明,上海的地下地铁站对于每天乘坐地铁通勤的人和在地铁站工作的人来说,是接触过渡金属气溶胶的一个重要微环境,地铁站内人员的金属颗粒物暴露不容忽视。