王晓媛,王彦兵,胡永亮,李守岭,刘小琼,李庆聪.石墨炉原子吸收光谱法测定猫须草中铅、镉的不确定度评定[J].食品安全质量检测学报,2018,9(20):5393-5398
石墨炉原子吸收光谱法测定猫须草中铅、镉的不确定度评定
Uncertainty evaluation of determination of lead and cadmium in orthosiphon stamineus by graphite furnace atomic absorption spectrometry
投稿时间:2018-07-20  修订日期:2018-08-27
DOI:
中文关键词:  猫须草  石墨炉原子吸收光谱法  不确定度    
英文关键词:Orthosiphon stamineus  graphite furnace atomic absorption spectrometery  uncertainty  lead  cadmium
基金项目:云南省科技计划项目(2016DC045)
作者单位
王晓媛 云南省德宏热带农业科学研究所 
王彦兵 云南省德宏热带农业科学研究所 
胡永亮 云南省德宏热带农业科学研究所 
李守岭 云南省德宏热带农业科学研究所 
刘小琼 云南省德宏热带农业科学研究所 
李庆聪 云南省德宏热带农业科学研究所 
AuthorInstitution
WANG Xiao-Yuan Dehong Tropical Agriculture Institute of Yunnan,Ruili 
WANG Yan-Bing Dehong Tropical Agriculture Institute of Yunnan,Ruili 
HU Yong-Liang Dehong Tropical Agriculture Institute of Yunnan,Ruili 
LI Shou-Ling Dehong Tropical Agriculture Institute of Yunnan,Ruili 
LIU Xiao-Qiong Dehong Tropical Agriculture Institute of Yunnan,Ruili 
LI Qing-Cong Dehong Tropical Agriculture Institute of Yunnan,Ruili 
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中文摘要:
      目的 评定石墨炉原子吸收光谱法测定猫须草中铅、镉不确定度。方法 依据GNAS-GL06:2006《化学分析中不确定度的评估指南》, 综合测量结果数学模型和实验过程, 分析不确定度来源, 量化各不确定度分量, 计算合成不确定度, 最终得到铅、镉含量测定的扩展不确定度。结果 在95%的置信区间下, 猫须草中铅含量2.28×(1±0.149) mg/kg(k=2); 镉含量0.0204×(1±0.0558) mg/kg(k=2)。评定结果表明, 实验过程的不确定度主要来源于标准曲线拟合和加标回收率。结论 通过建立测量数学模型, 可对测定方法的不确定度进行合理的评定, 为测定中药材、食材中重金属含量的不确定度分析提供参考。
英文摘要:
      Objective To evaluate the uncertainty of determination of lead and cadmium content in Orthosiphon stamineus by graphite furnace atomic absorption spectrometry. Methods According to GNAS-GL06:2006 Evaluation guide for uncertainty in chemical analysis, measurement results mathematical model and experimental process were synthesized, the sources of uncertainty were analyzed, the uncertainties of components were quantified, and the synthetic uncertainty was calculated. Finally, the extended uncertainties of lead and cadmium content determination were obtained. Results Under the 95% confidence interval, the lead content in Orthosiphon stamineus was 2.28×(1±0.149) mg/kg, (k=2), and the content of cadmium was 0.0204×(1±0.0558) mg/kg, (k=2). The evaluation results showed that the uncertainties of the experiment were mainly derived from curve fitting and adding standard recovery. Conclusion Through the establishment of the mathematical model of the measurement, the uncertainty of the measurement method can be reasonably assessed, which provides a reference for the uncertainty analysis of the determination of heavy metals in Chinese medicinal materials and food materials.
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