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Improved methods for elemental analysis of atmospheric aerosols for evaluating human health impacts of aerosols in East Asia

机译:用于评估东亚地区气溶胶对人类健康影响的大气气溶胶元素分析的改进方法

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This paper provides improved elemental analysis methods for the characterization of atmospheric particulate matter (PM) samples. With the aim of developing an approach for comprehensive trace element analysis of small mass of PM samples, we coupled an enhanced microwave-assisted acid digestion method with high-resolution magnetic sector inductively coupled plasma-mass spectrometry (SF-ICP-MS). We also propose a rapid and simple method using energy dispersive X-ray fluorescence spectrometry (EDXRF) that has secondary targets and three-dimensional polarization optics for screening elemental composition of PM. We obtained the concentrations of 44 elements ranged from 10~(-3) to 10~5 μg/g by SF-ICP-MS, and 16 elements ranged from 10~1 to 10~5 μg/g by EDXRF. The analytic results obtained by these two methods agreed well. Comprehensive analysis for a large set of elements was demonstrated by using the improved SF-ICP-MS method, while EDXRF coupled with fundamental parameter (FP) quantification method can analyze several selected elements as fast as 900 s (15 min) per sample with only minimal sample pretreatment. We provide two possible choices of analysis methods for elucidating elemental composition of PM according to the number of samples, target elements, sample amounts, time and cost for analysis required.
机译:本文为表征大气颗粒物(PM)样品提供了改进的元素分析方法。为了开发一种对少量PM样品进行全面痕量元素分析的方法,我们将增强型微波辅助酸消解方法与高分辨率磁区电感耦合等离子体质谱(SF-ICP-MS)结合在一起。我们还提出了一种使用能量色散X射线荧光光谱法(EDXRF)的快速简便的方法,该方法具有次级目标和三维偏振光学器件,用于筛查PM的元素组成。通过SF-ICP-MS获得的44种元素的浓度范围为10〜(-3)至10〜5μg/ g,通过EDXRF获得的16种元素的浓度范围为10〜1至10〜5μg/ g。通过这两种方法获得的分析结果吻合良好。通过使用改进的SF-ICP-MS方法,可以对大量元素进行全面分析,而EDXRF与基本参数(FP)定量方法相结合,可以在每个样品中快速分析900个样品(15分钟)中的几种元素最少的样品预处理。根据样品数量,目标元素,样品量,所需的分析时间和成本,我们提供两种可能的分析方法来阐明PM的元素组成。

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