Direct Determination of Pb in Cosmetics by Graphite Furnace Atomic Absorption Spectrometry with Suspension Sampling

There have been many difficulties surrounding cumbersome digestion processes and explosive boiling when attempting to detect metal elements in cosmetics. It is difficult to control the pretreatment process and it is necessary to use a lot of reagents, which easily leads to the high reagent blank. Co...

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Main Authors: LIN Li, YAO Ji-jun, YANG Ren-kang, SUN Ji-hong
Format: Article
Language:English
Published: Science Press, PR China 2013-07-01
Series:Yankuang ceshi
Subjects:
Online Access:http://www.ykcs.ac.cn/en/article/id/54006dd7-9e87-4bfd-98c3-ffcf484b17e3
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author LIN Li
YAO Ji-jun
YANG Ren-kang
SUN Ji-hong
author_facet LIN Li
YAO Ji-jun
YANG Ren-kang
SUN Ji-hong
author_sort LIN Li
collection DOAJ
description There have been many difficulties surrounding cumbersome digestion processes and explosive boiling when attempting to detect metal elements in cosmetics. It is difficult to control the pretreatment process and it is necessary to use a lot of reagents, which easily leads to the high reagent blank. Content of lead (Pb) in cosmetics is far below the national limits (≤40 mg/kg), which cannot accurately be determined by flame atomic absorption spectrometric. In this paper a method is described for direct determination of Pb in cosmetics by Graphite Furnace Atomic Absorption Spectrometry with suspension sampling. Sample digestion was not required as the cosmetics samples to be determined were directly placed into the Graphite Furnace Atomic Absorption Spectrometer after suspension by 0.2% nitric acid and 0.1% Triton X-100. The instrument conditions were optimized and high pure argon was added to the drying compressed air in the graphite furnace ashing process, in order to eliminate the carbon residue when the number of samples was over 50, and to ensure the stability for long-term analysis. The matrix modifier was palladium nitrate. Palladium and Pb can form a stable palladium Pb metal compound, and significantly improve the atomic temperature. Standard addition method was conducted to eliminate the matrix interference. The detection limit of this method was 0.003 mg/kg.The recovery of Pb was in the range of 91.6%-106.8%, precision was in the range of 1.5%-2.1% (n=6). National standard reference materials GBW (E) 090028 (cream) and GBW(E) 090027 (powder) were determined by using this method and the results were consistent with the standard value. Compared with the results using the national standard method for detection, the results showed no significant difference. This method has low detection limit, can meet the testing requirements of trace Pb in cosmetics.
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spelling doaj.art-a0a6df6dd8cc44148d76fb1320ca5f042023-02-10T01:31:35ZengScience Press, PR ChinaYankuang ceshi0254-53572013-07-01324644648ykcs-32-4-644Direct Determination of Pb in Cosmetics by Graphite Furnace Atomic Absorption Spectrometry with Suspension SamplingLIN Li0YAO Ji-jun1YANG Ren-kang2SUN Ji-hong3Beijing University of Technology, Beijing 100022, ChinaPerkin Elmer Instruments (Shanghai) Co., LTD, Shanghai 201203, ChinaPerkin Elmer Instruments (Shanghai) Co., LTD, Shanghai 201203, ChinaBeijing University of Technology, Beijing 100022, ChinaThere have been many difficulties surrounding cumbersome digestion processes and explosive boiling when attempting to detect metal elements in cosmetics. It is difficult to control the pretreatment process and it is necessary to use a lot of reagents, which easily leads to the high reagent blank. Content of lead (Pb) in cosmetics is far below the national limits (≤40 mg/kg), which cannot accurately be determined by flame atomic absorption spectrometric. In this paper a method is described for direct determination of Pb in cosmetics by Graphite Furnace Atomic Absorption Spectrometry with suspension sampling. Sample digestion was not required as the cosmetics samples to be determined were directly placed into the Graphite Furnace Atomic Absorption Spectrometer after suspension by 0.2% nitric acid and 0.1% Triton X-100. The instrument conditions were optimized and high pure argon was added to the drying compressed air in the graphite furnace ashing process, in order to eliminate the carbon residue when the number of samples was over 50, and to ensure the stability for long-term analysis. The matrix modifier was palladium nitrate. Palladium and Pb can form a stable palladium Pb metal compound, and significantly improve the atomic temperature. Standard addition method was conducted to eliminate the matrix interference. The detection limit of this method was 0.003 mg/kg.The recovery of Pb was in the range of 91.6%-106.8%, precision was in the range of 1.5%-2.1% (n=6). National standard reference materials GBW (E) 090028 (cream) and GBW(E) 090027 (powder) were determined by using this method and the results were consistent with the standard value. Compared with the results using the national standard method for detection, the results showed no significant difference. This method has low detection limit, can meet the testing requirements of trace Pb in cosmetics.http://www.ykcs.ac.cn/en/article/id/54006dd7-9e87-4bfd-98c3-ffcf484b17e3cosmeticsleadgraphite furnace atomic absorption spectrometrytriton x-100suspension samplingstandard addition method
spellingShingle LIN Li
YAO Ji-jun
YANG Ren-kang
SUN Ji-hong
Direct Determination of Pb in Cosmetics by Graphite Furnace Atomic Absorption Spectrometry with Suspension Sampling
Yankuang ceshi
cosmetics
lead
graphite furnace atomic absorption spectrometry
triton x-100
suspension sampling
standard addition method
title Direct Determination of Pb in Cosmetics by Graphite Furnace Atomic Absorption Spectrometry with Suspension Sampling
title_full Direct Determination of Pb in Cosmetics by Graphite Furnace Atomic Absorption Spectrometry with Suspension Sampling
title_fullStr Direct Determination of Pb in Cosmetics by Graphite Furnace Atomic Absorption Spectrometry with Suspension Sampling
title_full_unstemmed Direct Determination of Pb in Cosmetics by Graphite Furnace Atomic Absorption Spectrometry with Suspension Sampling
title_short Direct Determination of Pb in Cosmetics by Graphite Furnace Atomic Absorption Spectrometry with Suspension Sampling
title_sort direct determination of pb in cosmetics by graphite furnace atomic absorption spectrometry with suspension sampling
topic cosmetics
lead
graphite furnace atomic absorption spectrometry
triton x-100
suspension sampling
standard addition method
url http://www.ykcs.ac.cn/en/article/id/54006dd7-9e87-4bfd-98c3-ffcf484b17e3
work_keys_str_mv AT linli directdeterminationofpbincosmeticsbygraphitefurnaceatomicabsorptionspectrometrywithsuspensionsampling
AT yaojijun directdeterminationofpbincosmeticsbygraphitefurnaceatomicabsorptionspectrometrywithsuspensionsampling
AT yangrenkang directdeterminationofpbincosmeticsbygraphitefurnaceatomicabsorptionspectrometrywithsuspensionsampling
AT sunjihong directdeterminationofpbincosmeticsbygraphitefurnaceatomicabsorptionspectrometrywithsuspensionsampling