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干法消化-原子荧光光谱法同时测定化妆品中砷和铋 被引量:1

Synchronous Determination of Arsenic and Bismuth in Cosmetics Using Dry Digestion and Atomic Fluorescence Spectrometry
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摘要 [目的]建立干法消化和氢化物发生一原子荧光光谱法同时测定化妆品中砷和铋的方法。[方法]样品先在灰化助剂保护下进行干法消化,再加入预还原剂,优化仪器条件,考察常见干扰离子对测定的影响,比较原子荧光光谱法同时测定和单独测定化妆品中砷和铋的统计学差异。[结果]采用本方法测定,砷的线性范围为0.26.10.00μg/L,相关系数y=O.9997,最低检测限=0.050μg/L,回收率为92.2%~105.0%,精密度为2.47%~5.07%;铋的线性范围为0.25~10.00μg/L,γ=0.9997,最低检测限=O.050μg/L,回收率为94.0%~107.O%,精密度为2.86%~5.11%。双元素同时测定法-9单元素分别测定法比较,差异无统计学意义。[结论]测定结果准确度高,精密度好。测定方法简单,虽然样品消化时间长,但对人员操控能力要求较低,且污染小,适用于化妆品中砷和铋的同时测定。 [ Objective ] To establish a method for synchronous determination of arsenic (As) and bismuth (Bi) in cosmetics using dry digestion and atomic fluorescence spectrometry (AFS). [ Methods ] The cosmetics samples were pre-treated with ashing auxiliaries by dry digestion, then pre-reducers were added in the samples, and instrument conditions were optimized. The influence of interfering ions on determination results was evaluated. The results of synchronous determination and separate determinations of As and (or) Bi in cosmetics by hydride generator atomic fluorescence spectrometry were compared. [ Results ] The linear calibration curve for As was within the range of 0.26-10.00 μg/L, with a correlation coefficient (7) of 0.999 7, and that for Bi was 0.25-10.00μg/L, with 7=0.9997. The detection limits were 0.50 μg/L for both As and Bi. The recovery rates for As and Bi were in the range of 92.2%-105.0% and 94.0%-107.0%, respectively. The relative standard deviations (RSDs) were 2.47%-5.07% for As and 2.86%-5.11% for Bi. No significant differences were seen between the results by simultaneous determination and individual determination. [ Conclusion ] The method is simple, precise, and accurate enough for the synchronous determination of As and Bi in cosmetics. It also produces less pollution and requires less manual control by operators.
出处 《环境与职业医学》 CAS 北大核心 2014年第6期479-481,共3页 Journal of Environmental and Occupational Medicine
基金 南京市医学科技发展资金项目(编号:QRX11129)
关键词 原子荧光法 干法消化 化妆品 atomic fluorescence spectrometry dry digestion arsenic bismuth cosmetics
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