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›› 2016, Vol. 38 ›› Issue (5): 402-408.

• 论文与报告 • 上一篇    下一篇

液相色谱法测定水产品中恩诺沙星残留量的不确定度评定

牛曰华   

  1. 福建省海洋环境与渔业资源监测中心
  • 收稿日期:2016-07-12 修回日期:2016-07-28 出版日期:2016-10-25 发布日期:2016-10-17
  • 通讯作者: 牛曰华

Uncertainty evaluation for determination of enrofloxacin residue in aquatic products by liquid chromatography

  • Received:2016-07-12 Revised:2016-07-28 Online:2016-10-25 Published:2016-10-17

摘要: 当水产品中恩诺沙星残留量接近最高残留限量时,为准确判断产品是否符合要求,开展测量不确定度评定便十分重要。基于此,本文建立了液相色谱法测定水产品中恩诺沙星残留量的不确定度分析和评定方法。依据JJF 1059.1—2012《测量不确定度评定与表示》和CNAS—GL06: 2006《化学分析中不确定度的评估指南》规定的基本方法和程序,建立恩诺沙星残留量的测量不确定度数学模型,分析不确定度的来源,对主要不确定度分量进行计算和合成,最终得到扩展不确定度。当样品中恩诺沙星测量值为97.1 μg/kg时,其扩展不确定度为5.6 μg/kg。分析结果表明,测定结果的不确定度主要来源于样品前处理和标准溶液。

关键词: 液相色谱法, 水产品, 恩诺沙星, 不确定度评定, liquid chromatography, aquatic products, enrofloxacin, uncertainty evaluation

Abstract: When enrofloxacin residue is close to the maximum residue limit in aquatic products, it is very important to carry out evaluation of measurement uncertainty to accurately determine whether the products meet the quality standards. So a method of uncertainty evaluation for the determination of enrofloxacin residue in aquatic products by liquid chromatography was established. According to Evaluation and Expression of Uncertainty in Measurement (JJF 1059.1— 2012) and Guidance on Evaluating the Uncertainty in Chemical Analysis (CNAS—GL06: 2006), a mathematical model was constructed and the uncertainty sources were analyzed, and then the main components of uncertainty were quantified and combined. Finally the expanded uncertainty was achieved. When the measured value of enrofloxacin residue in aquatic products was 97.1 μg/kg, its expanded uncertainty was 5.6 μg/kg. The results showed that the major factors of uncertainty were sample pre-treatment and standard solution. The uncertainties of sample pretreatment and standard solution accounted for more than 50% and 22% of the total uncertainties, respectively.

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