林 津,朱 影,王鸣秋,彭青枝,周陶鸿,黄传峰.电感耦合等离子体-原子发射光谱法测定食品中二氧化钛测定的不确定度评定[J].食品安全质量检测学报,2020,11(3):804-809
电感耦合等离子体-原子发射光谱法测定食品中二氧化钛测定的不确定度评定
Uncertainty evaluation for the determination of titanium dioxide in food by inductively coupled plasma-atomic emission spectrometry
投稿时间:2019-10-26  修订日期:2020-01-14
DOI:
中文关键词:  二氧化钛  不确定度  电感耦合等离子体-原子发射光谱法  食品
英文关键词:titanium dioxide  uncertainty  inductively coupled plasma-atomic emission spectrometry  food
基金项目:国家重点研发计划专项(2018YFC1604000)
作者单位
林 津 湖北省食品质量安全监督检验研究院 
朱 影 湖北省食品质量安全监督检验研究院 
王鸣秋 湖北省食品质量安全监督检验研究院 
彭青枝 湖北省食品质量安全监督检验研究院 
周陶鸿 湖北省食品质量安全监督检验研究院 
黄传峰 中国食品药品检定研究院 
AuthorInstitution
LIN Jin Hubei Provincial Institute for Food Supervision and Test 
ZHU Ying Hubei Provincial Institute for Food Supervision and Test 
WANG Ming-Qiu Hubei Provincial Institute for Food Supervision and Test 
PENG Qing-Zhi Hubei Provincial Institute for Food Supervision and Test 
ZHOU Tao-Hong Hubei Provincial Institute for Food Supervision and Test 
HUANG Chuan-Feng National Institues for Food and Drug Control 
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中文摘要:
      目的 评定电感耦合等离子体-原子发射光谱法测定食品中二氧化钛含量的不确定度。方法 建立电感耦合等离子体-原子发射光谱法测定食品中二氧化钛含量的数学评价模型, 对测定过程的主要不确定度进行了合理的评定, 主要包括样品称量、样液定容、样液测量以及测量的重复性, 将各不确定度分量进行合成, 计算合成标准不确定度及扩展不确定度。结果 在95%的置信区间下, 当样品中二氧化钛含量为54.0 mg/kg时, 其测量结果为(54.0±1.4) mg/kg, k=2。结论 主要的不确定度来自样品溶液浓度测量和测量的重复性, 样品的称量和样液的定容影响较小。在检验过程中, 可以通过相关控制措施来减少不确定度。
英文摘要:
      Objective To evaluate the uncertainty of the determination of titanium dioxide in food by inductively coupled plasma-atomic emission spectrometry. Methods A mathematical evaluation model for the determination of titanium dioxide in food by inductively coupled plasma-atomic emission spectrometry was established. The main uncertainty of the measurement process was reasonably assessed, including sample weighing, sample volume adjustment, sample liquid measurement, and measurement repeatability. Each uncertainty component was synthesized to calculate synthetic standard uncertainty and extended uncertainty. Results Under the 95% confidence interval, when the titanium dioxide content in the sample was 54.0 mg/kg, the measurement result was (54.0±1.4) mg/kg, k=2. Conclusion The main uncertainty comes from the measurement and repeatability of the concentration of the sample solution. The weighing of the sample and the constant volume of the sample solution have little effect. During the inspection process, relevant control measures can be used to reduce uncertainty.
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