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A study on trace elemental composition of atmospheric aerosols at a semi-arid urban site using ICP-MS technique

机译:ICP-MS技术研究半干旱城市地区大气气溶胶的微量元素组成

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A study has been carried out on trace elemental composition of atmospheric aerosols (PM_(10)) over a 1-year period i.e. from October 2001 to September 2002 at a semi-arid urban site, Tirupati, southern peninsular India. The samples were collected on paliflex filters with a frequency once a week using Mini-Partisol air sampler equipped with PM_(10) inlet. Aerosol loaded filters were extracted by the hot extraction method and the elemental concentrations were determined using inductively coupled plasma mass spectrometry (ICP-MS). Detection limits were found to be in a sub-ppt range and the precision about < 5% RSD with comparable levels of accuracy. ICP-MS results are in good agreement with the certified data (< 20% RSD). Elemental composition of PM_(10) showed a higher contribution of Fe followed by Mn and the lowest contribution of Be. Multivariate receptor model results (PC matrix) demonstrated that the trace elemental components of atmospheric aerosol were largely contributed from crustal material and road dust (69.41%), followed by metallurgical and other industrial processes (11.76%) and fuel oil combustion (6.52%). Regression models suggested the significant impact of meteorological factors on elemental concentration, which ranged between 14% and 53.6%. ANOVA results showed a clear trend of atmospheric levels of elements with variation in climatological conditions.
机译:在1年期间,即2001年10月至2002年9月,在印度南部半岛蒂鲁帕蒂的半干旱城市地区,对大气气溶胶(PM_(10))的微量元素组成进行了研究。使用配备PM_(10)入口的Mini-Partisol空气采样器,每周一次在paliflex过滤器上收集样品。通过热提取方法提取装有气溶胶的过滤器,并使用电感耦合等离子体质谱法(ICP-MS)测定元素浓度。发现检出限在亚ppt范围内,并且精密度约为<5%RSD,具有相当的准确度。 ICP-MS结果与认证数据非常吻合(RSD <20%)。 PM_(10)的元素组成显示,Fe的贡献较大,其次是Mn,Be的贡献最低。多元受体模型结果(PC矩阵)表明,大气气溶胶的微量元素主要来自地壳材料和道路扬尘(69.41%),其次是冶金和其他工业过程(11.76%)和燃油燃烧(6.52%) 。回归模型表明,气象因素对元素浓度的显着影响在14%至53.6%之间。方差分析结果显示,随着气候条件的变化,大气中元素水平呈明显趋势。

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