期刊文献+

Uncertainty Estimation for the Determination of Trace Heavy Metals in Human Hair by Flame and Electrothermal Atomic Absorption Spectrometry

Uncertainty Estimation for the Determination of Trace Heavy Metals in Human Hair by Flame and Electrothermal Atomic Absorption Spectrometry
下载PDF
导出
摘要 Trace element analysis on hair samples has been widely used to assess wildlife and human exposure to different contaminants present in the environment or at the workplace. Pollutants due to the presence of toxic metals in environment not only enter the body by breading, water, and foodstuff accumulates in hair, but they could be adsorbed directly on the hair from environment. In order to remove adsorbed elements and thus determine the internally bound elements correctly, hair sample must be washed. In the present work, we propose uncertainty estimation for the analytical results that are obtained from determination of cadmium, lead, copper, iron, manganese and nickel in human hair by flame and electrothermal atomic absorption spectrometry (FAAS and ETAAS). To estimate the uncertainty of analytical result obtained, two types of bias are calculated in the assessment of trueness: a proportional bias and a constant bias. Nested design was applied for calculating proportional bias and Youden method to calculate the constant bias. The results we obtained for proportional bias are calculated from spiked samples. In this case, the concentration found is plotted against the concentration added and the slop of standard addition curve is an estimate of the method recovery. Estimated method of average recovery in human hair is: (1.019 ±0.026), (0.918 ±0.014), (1.073±0.016), (1.0597± 0.017), (1.073± 0.020) and (0.934± 0.117) for Cd, Pb, Mn, Ni, Fe and Cu respectively.
出处 《Journal of Chemistry and Chemical Engineering》 2010年第8期26-34,共9页 化学与化工(英文版)
关键词 UNCERTAINTY hair analysis trace elements atomic absorption spectrometry. 火焰原子吸收光谱法 电热原子吸收光谱法 估计方法 微量元素 不确定度 人发 测定 重金属
  • 相关文献

参考文献15

  • 1M. Schuhmacher, M. Belles, A. Rico, J.I. Domingo, J. Corbella, Impact of reduction of lead in gasoline on the blood and hair lead levels in the population of Tarragona Province, Spain, 1990-1995, The Science of the Total Environment 184(1996) 203-209.
  • 2R. Wenning, Potential problems with the interpretation of hair analysis results. Forensic Science International 107 (2000) 5-12.
  • 3M. Frisch, B.S. Schwartz, The pitfalls of hair analysis for toxicants in clinical practice: three case reports, Environment on Health Perspective 110 (2002) 433-436.
  • 4R. Pereira, R. Ribeir, F. Goncalves, Scalp hair analysis as a tool in assessing human exposure to heavy metals, The Science of the Total Environment 327 (2004) 81-92.
  • 5P. Borella, A. Bargellini, E. Caselgrandi, L. Piccinini, Observations on the use of plasma, hair and tissue to evaluate trace element status in cancer, Journal of Trace Elements in Medicine and Biology 11 (1997) 162-165.
  • 6J. Morton, V.A. Carolan, P.E. Gardiner, Removal of exogenously bound elements from human hair by various washing procedures and determination by inductively coupled plasma mass spectrometry. Analytica Chimica Acta 455 (2002) 23-34.
  • 7R. Boque, A. Maroto, J. Riu, F.X. Rius, Validation of analytical methods, Grasasy Aceites 53 (2002)128-143.
  • 8A. Maroto, R. Boque, J. Riu, F.X. Rius, Estimating uncertainties of analytical results using information from the validation process, Analytica Chimica Acta 391 (1999) 173-185.
  • 9A. Maroto, R. Boque, J. Riu, F.X. Rius, Evaluating uncertainty in routine analysis, Trends in Analytical Chemistry 18 (1999) 577-584.
  • 10A. Maroto, R. Boque, J. Riu, F.X. Rius, Measurement uncertainty in analytical methods in which trueness is assessed from recovery assays, Analytical Chimica Acta 440 (2001) 171-184.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部