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Characterization of size-resolved aerosol components using proton induced X-ray emission, inductively coupled plasma optical emission spectrometry and ion chromatography

机译:使用质子诱导的X射线发射,电感耦合等离子体发射光谱和离子色谱法表征尺寸分辨的气溶胶成分

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摘要

Size-resolved aerosol monitoring for PM10, PM2.5, and PM1.0 was performed to qualify and quantify the elements and ions by using proton induced X-ray emission (PIXE), inductively coupled plasma optical emission spectrometry (ICP-OES), and ion chromatography (IC) analysis. Time-resolved aerosol samplings based on 2-hour and 14-hour intervals were carried out during daytime and nighttime, respectively. Physical and chemical properties of size-resolved aerosols were investigated to characterize air quality in the national park area of Gyeongju, Korea. The PIXE and ICPOES methods made elemental mass of Al, Si, S, K, Ca, Ti, Cr, Fe, Sr, and Pb. And ions of Na+, NH4 +, Ca2+, Cl−, NO 3 − , and SO 4 2− were analyzed by the IC method. The mass concentrations of Si, S, Ti, and Pb determined by PIXE showed relatively good correlation with those determined by ICP-OES. But Fe and Sr had worse correlations with an average R2 of 0.4703 and 0.4825, respectively. The PIXE method was a good alternative to measure chemical species of Al, Si, S, K, Ca, Ti, Cr, and Pb for size-resolved aerosols except Fe and Sr in this study. The average relative errors of sizeresolved elements for 2-hour and 14-hour interval collections were 10.1±5.7% (0.1–28.3%) and 9.9±7.7% (1.3–38.4%). Ammonium sulfates (AS), mineral dust (MD), and sea salt (SS) aerosols were reconstructed from the elements determined by PIXE and ICP-OES and ions obtained by IC. The mass concentration of MD was calculated with crustal elements of Al, Si, Ca, Ti, and Fe, which are associated with soil erosion. The average relative error of MD was the lowest value of 0.8% in the PM10 regime and the highest value of 10.0% in the PM1.0 regime. The average relative errors of AS for PM10, PM2.5, and PM1.0 determined by PIXE, ICP-OES, and IC showed relatively lower values of 0.8–5.7%, 1.7–5.9%, and 3.3–8.3%, respectively. The average mass concentrations of AS, MD, and SS of PM10, PM2.5, and PM1.0 except submicron SS determined by PIXE were comparable to those determined by ICP-OES and IC within the acceptable relative errors.
机译:使用质子诱导的X射线发射(PIXE),电感耦合等离子体发射光谱(ICP-OES)对PM10,PM2.5和PM1.0进行了大小分辨的气溶胶监测,以鉴定和定量元素和离子,和离子色谱(IC)分析。在白天和夜间分别进行了基于2小时和14小时间隔的时间分辨气溶胶采样。调查了大小分辨的气溶胶的物理和化学性质,以表征韩国庆州国家公园地区的空气质量。 PIXE和ICPOES方法使元素质量为Al,Si,S,K,Ca,Ti,Cr,Fe,Sr和Pb。通过离子色谱法分析了Na +,NH4 +,Ca2 +,Cl-,NO 3-和SO 4 2-的离子。 PIXE测定的Si,S,Ti和Pb的质量浓度与ICP-OES测定的质量浓度显示出相对较好的相关性。但是,Fe和Sr的相关性更差,平均R2分别为0.4703和0.4825。在本研究中,PIXE方法是测量尺寸分辨的气溶胶中除Fe和Sr以外的Al,Si,S,K,Ca,Ti,Cr和Pb的化学种类的良好替代方法。 2小时和14小时间隔收集的尺寸分辨元素的平均相对误差为10.1±5.7%(0.1-28.3%)和9.9±7.7%(1.3-38.4%)。硫酸铵(AS),矿物粉尘(MD)和海盐(SS)气雾剂是由PIXE和ICP-OES测定的元素以及IC获得的离子重建而成的。 MD的质量浓度是由与土壤侵蚀有关的Al,Si,Ca,Ti和Fe地壳元素计算得出的。 MD的平均相对误差在PM10模式下为最低值0.8%,在PM1.0模式下为最高值10.0%。由PIXE,ICP-OES和IC确定的PM10,PM2.5和PM1.0的AS的平均相对误差分别相对较低,分别为0.8-5.7%,1.7-5.9%和3.3-8.3%。在可接受的相对误差范围内,PM10,PM2.5和PM1.0的AS,MD和SS的平均质量浓度(通过PIXE测定的亚微米SS除外)与ICP-OES和IC测定的相当。

著录项

  • 来源
    《Korean Journal of Chemical Engineering》 |2013年第7期|1436-1442|共7页
  • 作者

    Kyung Won Kim;

  • 作者单位

    Department of Environment and Energy Science Gyeongju University">(159);

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:01:26

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