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Daily concentrations of trace metals in aerosols in Beijing, China, determined by using inductively coupled plasma mass spectrometry equipped with laser ablation analysis, and source identification of aerosols

机译:使用配备激光烧蚀分析的电感耦合等离子体质谱法和气溶胶的来源识别,确定中国北京气溶胶中痕量金属的每日浓度

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This paper describes the daily concentrations of trace metals and ionic constituents in the aerosol of Beijing, China from March 2001 to August 2003. Daily PM10 concentrations were also measured from September 2001 to August 2003. The daily average PM,, concentration at Beijing, China from September 2001 to August 2003 was 171 +/- 117 mug m(-3) (n=673), which is 5-fold higher than at Yokohama, Japan. Trace metal concentrations were analyzed by using inductively coupled plasma mass spectrometry equipped with a laser ablation sample introduction (LA/ICPMS), which is a rapid and simultaneous method for multi-element analysis. The daily average metal concentrations in TSP in Beijing from March 2001 to August 2003 were: Al: 3.5+/-2.4 (n=727), Ti: 0.47+/-0.35 (n=720), V:0.013+/-0.010 (n=716), Cr: 0.019+/-0.015 (n=618), Mn: 0.24+/-0.16 (n=730), Fe: 5.5+/-3.9 (n=728), Co: 0.0046+/-0.0055 (n = 629), Ni: 0.022+/-0.024 (n = 680), Cu: 0.11+/-0.11 (n = 660), Zn: 0.77+/-0.60 (n = 726), As: 0.048+/-0.047 (n=731), Se: 0.010+/-0.010 (n=550), Cd: 0.0068+/-0.0082 (n=709), Sb: 0.033+/-0.036 (n=687), and Ph: 0.43+/-0.50 (n = 728) (unit, mug M-3). All the metal concentrations in TSP in Beijing, China were 1.7-21.8 times higher than those in TSP in the center of Tokyo, Japan. Notably, As concentrations in TSP in Beijing were 20-fold higher than those in Tokyo. Source identification of aerosols in Beijing was carried out by using the chemical mass balance (CMB) receptor model, with the daily concentration of metals in the aerosol. The major primary sources of the aerosol of Beijing were considered to be soil dust and coal combustion. Vehicle exhaust contribution tended to increase. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文描述了2001年3月至2003年8月北京地区气溶胶中痕量金属和离子成分的日浓度。还测量了2001年9月至2003年8月日间PM10的浓度。北京日均PM浓度从2001年9月到2003年8月为171 +/- 117马克杯m(-3)(n = 673),比日本横滨高出5倍。使用配备激光烧蚀样品引入装置(LA / ICPMS)的电感耦合等离子体质谱仪分析痕量金属浓度,这是一种快速,同步的多元素分析方法。 2001年3月至2003年8月北京地区TSP的日平均金属浓度为:Al:3.5 +/- 2.4(n = 727),Ti:0.47 +/- 0.35(n = 720),V:0.013 +/- 0.010 (n = 716),Cr:0.019 +/- 0.015(n = 618),Mn:0.24 +/- 0.16(n = 730),Fe:5.5 +/- 3.9(n = 728),Co:0.0046 + / -0.0055(n = 629),Ni:0.022 +/- 0.024(n = 680),Cu:0.11 +/- 0.11(n = 660),Zn:0.77 +/- 0.60(n = 726),As:0.048 +/- 0.047(n = 731),Se:0.010 +/- 0.010(n = 550),Cd:0.0068 +/- 0.0082(n = 709),Sb:0.033 +/- 0.036(n = 687)和Ph:0.43 +/- 0.50(n = 728)(单位,杯子M-3)。中国北京的TSP中的所有金属浓度比日本东京市中心的TSP中的金属浓度高1.7-21.8倍。值得注意的是,北京地区TSP中的As浓度比东京高20倍。使用化学物质平衡(CMB)受体模型对北京的气溶胶来源进行了识别,并确定了气溶胶中金属的日浓度。北京气溶胶的主要主要来源被认为是土壤粉尘和煤炭燃烧。车辆尾气的贡献趋于增加。 (C)2004 Elsevier B.V.保留所有权利。

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