史 方,唐慧骥,李传民,张亚斌,李 轲.微生物法测定乳粉中叶酸的不确定度评定[J].食品安全质量检测学报,2021,12(3):968-974
微生物法测定乳粉中叶酸的不确定度评定
Uncertainty evaluation for the determination of folic acid in milk powder by microbiological methods
投稿时间:2020-08-19  修订日期:2021-01-11
DOI:
中文关键词:  叶酸  乳粉  微生物法  不确定度
英文关键词:folic acid  milk powder  microbiological method  uncertainty
基金项目:
作者单位
史 方 安阳海关 
唐慧骥 郑州海关 
李传民 河南捷信检测认证有限公司 
张亚斌 河南捷信检测认证有限公司 
李 轲 郑州海关 
AuthorInstitution
SHI Fang Anyang Customs 
TANG Hui-Ji Zhengzhou Customs 
LI Chuan-Min Henan Jiexin Testing and Certification Co., Ltd 
ZHANG Ya-Bin Henan Jiexin Testing and Certification Co., Ltd 
LI Ke Zhengzhou Customs 
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中文摘要:
      目的 评定微生物法测定乳粉中叶酸的不确定度。方法 按照GB 5009.211—2014《食品安全国家标准 食品中叶酸的测定》规定的微生物法对婴儿配方乳粉中叶酸含量进行测定, 根据CNAS-CL01-G003:2019要求, 依据GB/Z 22553—2010和JJF 1059.1—2012, 分析测定过程中影响检验结果的因素主要包括测量重复性、试样前处理(称量、稀释)、标准物质、标准溶液配制(称量、稀释)、实验温度、拟合标准曲线、紫外分光光度计, 通过对各个不确定度分量进行分析、评估, 计算合成得出被测样品中叶酸含量测量结果的标准不确定度, 得出扩展不确定度。结果 经测定, 婴儿配方乳粉中叶酸含量为(80.2±4.28) μg/100 g, k=2。结论 微生物因素对测量不确定度具有显著影响, 由标准曲线拟合和重复测量体现。
英文摘要:
      Objective To evaluate the uncertainty for the determination of folic acid in milk powder by microbiological methods. Methods The folic acid content in infant formula milk powder was determined by microbial method according to GB 5009.211—2014 National food safety standard-Determination of folic acid in foods. According to the requirements of CNAS-CL01-G003: 2019, GB/Z 22553—2010 and JJF 1059.1—2012, the factors influencing the test results in the analysis and determination process mainly included measurement repeatability, sample pretreatment (weighing and dilution), reference materials, standard solution preparation (weighing and dilution), experimental temperature, standard curve fitting and UV spectrophotometer, through the analysis and evaluation of each uncertainty component, the standard uncertainty of measurement results of folic acid content in the tested sample was calculated and synthesized, and the expanded uncertainty was obtained. Results The content of folic acid in infant formula milk powder was (80.2±4.28) μg/100 g, k=2. Conclusion Microbial factors have significant influence on measurement uncertainty, which is reflected by standard curve fitting and repeated measurement.
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